Enhancement of virucidal activity of benzoic acid in feed

By using benzoic acid enhanced with essential oils like thymol and eugenol, ASFV inactivation in feed is achieved quickly and cost-effectively, addressing the inefficiencies of existing methods.

JP7728342B2Active Publication Date: 2025-08-22DSM IP ASSETS BV
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Patent Information

Application Number
JP2023526519
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-11-26
Filing Date
2021-11-24
Publication Date
2025-08-22
Estimated Expiration
2041-11-24

AI Technical Summary

Technical Problem

Existing methods for reducing viral pathogens in feed, such as African Swine Fever Virus (ASFV), are either costly, require long holding times, or use additives like formaldehyde that are undesirable, and none effectively reduce the holding time sufficiently.

Method used

Enhancing the virucidal activity of benzoic acid in feed with essential oils, particularly thymol and eugenol, to quickly inactivate ASFV, allowing for reduced holding times and lower costs.

Benefits of technology

The combination of benzoic acid and essential oils effectively inactivates ASFV in feed within a few days, reducing holding times and operational costs while maintaining regulatory compliance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention makes it possible to reduce the retention time required to ensure viral degradation in feed. In feed, the virucidal activity of benzoic acid can be enhanced by essential oils. One embodiment of the present invention relates to a method for at least partially inactivating African swine fever virus in pig feed, characterized in that benzoic acid is added to the pig feed together with at least one essential oil. Preferred essential oils are thymol and eugenol.
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Description

Detailed Description of the Invention

[0001] [Technical field] The present invention addresses the threat of viral pathogens in feed, one example being African Swine Fever Virus (ASFV) contamination in pig feed.

[0002] [Background of the invention] Feed and feed ingredients have been proposed as contributing factors to the introduction of porcine epidemic diarrhea virus (PEDV) into commercial pig herds. This route of infection has been demonstrated to be feasible in experimental settings (Dee et al. “An evaluation of contaminated complete feed as a vehicle for porcine epidemic diarrhea virus infection of naive pigs following consumption via natural feeding behavior: proof of concept” BMC Veterinary Research, 2014;10:176).

[0003] The Swine Health Information Center (SHIC), National Pork Board, National Pork Producers Council, and American Association of Swine Veterinarians recommend adding more holding time to ensure viral degradation in feed. For conventional soybean meal, a holding time of 143 days at 4°C is recommended to ensure 99.99% degradation (Swine Health Information Center, "Research on viral transmission in feedstuffs yields, new information," published May 7, 2019).

[0004] Patricia de Leon et al. describe experimental methods for studying African swine fever virus (http: / / dx.doi.org / 10.1016 / j.virusres.2012.09.013, Virus Res., 2012).

[0005] The Examples in WO 2019 / 169256 disclose data on the inhibition of African swine fever virus in animal feed by the incorporation of medium-chain fatty acids into the feed. Preferred medium-chain fatty acids are caproic acid, caprylic acid, capric acid, and lauric acid.

[0006] The virucidal activity of organic acids has been known for a long time. According to Table 1 by Poli et al., the virucidal activity of benzoic acid is relatively low (Poli et al., "Virucidal activity of organic acids," Food Chemistry, Volume 4, Issue 4, October 1979, Pages 251-258). Poli et al. suggest that the virucidal activity of propionic acid is higher than that of benzoic acid.

[0007] WO 2020 / 149092 discloses a method for controlling African swine fever virus, comprising combining an effective amount of an aqueous solution of formaldehyde and propionic acid with animal feed.

[0008] Although the virucidal activity of propionic acid appears to be high, Poli et al. suggest that the virucidal activity of fumaric acid is even higher. In Example 1 of WO 2020 / 100077, a blend of fumaric acid, benzoic acid, and calcium 2-hydroxy-4-(methylthio)butanoate (HMTBA) was used to reduce the risk of infection after consuming feed contaminated with PRRSV, PEDV, and SVA.

[0009] None of the prior art solutions is satisfactory. For many buyers, feeding formaldehyde to pigs is no longer acceptable. On the other hand, HMTBA and its salts are relatively expensive. Most importantly, none of the prior art solutions sufficiently reduces the required holding time. In most cases, a holding time of several weeks is still necessary to ensure viral degradation in the feed. The holding time could potentially be reduced by increasing the amount of propionic acid, fumaric acid, HMTBA, or formaldehyde added. However, adding large amounts of feed additives is not acceptable, as this would prohibitively increase costs. In addition, thresholds set by regulatory authorities must be adhered to.

[0010] The threat of viral pathogens in feed needs to be addressed more effectively and / or more cost-effectively. Adding formaldehyde to samples should be avoided where possible. More specifically, the holding time of swine feed potentially contaminated with African swine fever virus (ASFV) needs to be further reduced.

[0011] [Summary of the Invention] The present invention is based on the use of benzoic acid, the choice of which is surprising given that some feed additives (e.g., fumaric acid) appear to have higher virucidal activity than benzoic acid.

[0012] The problem underlying the present invention is solved by enhancing the relatively low virucidal activity of benzoic acid with one or more essential oils. Surprisingly, enhancing the virucidal activity of benzoic acid with essential oils is more successful in feed than in liquids. For example, African swine fever virus in pig feed can be inactivated very quickly and / or at low cost by adding benzoic acid and at least one essential oil to the contaminated pig feed.

[0013] Very fast inactivation allows for reduced holding time of the feed, which reduces costs and / or complexity of the feed supply chain.

[0014] One embodiment of the present invention relates to a method for reducing the risk of infection after ingestion of feed contaminated with at least one virus, wherein benzoic acid and at least one essential oil are added to the feed. A preferred embodiment of the present invention relates to a method for at least partially inactivating African swine virus in pig feed, wherein benzoic acid and at least one essential oil are added to pig feed.

[0015] The present invention also relates to a pig feed comprising an inactivated African swine fever virus, benzoic acid, and at least one essential oil, wherein the inactivated African swine fever virus can be detected by PCR methods, but does not undergo hemadsorption in a hemadsorption assay.

[0016] A further embodiment of the present invention relates to the use of benzoic acid and at least one essential oil, or a composition or mixture preferably comprising benzoic acid and at least one essential oil, for at least partially inactivating African swine fever virus, preferably in feed, or the use of at least one essential oil for enhancing the virucidal activity of benzoic acid in feed. Preferred essential oils are thymol and eugenol. Most preferably, the virucidal activity of benzoic acid is enhanced by a mixture of thymol and eugenol.

[0017] Benzoic acid and at least one essential oil can be added to the feed separately. Alternatively, a mixture of benzoic acid and at least one essential oil is added to the feed. When benzoic acid flakes are used, it is particularly easy to mix the feed with benzoic acid. Other forms of benzoic acid (such as benzoic acid granules) are less preferred. When a powder containing at least one essential oil is used, it is particularly easy to mix the feed with one or more essential oils. Other forms of essential oils (such as liquids) are less preferred. A powder containing a mixture of eugenol and thymol is particularly preferred. Such a powder can be easily mixed with benzoic acid flakes and / or feed.

[0018] Therefore, the present invention also relates to the use of a powder comprising a mixture of eugenol and thymol, preferably for enhancing the virucidal activity of benzoic acid flakes in a feed, preferably for enhancing the ability of benzoic acid flakes to inactivate African swine fever virus in a pig feed. A preferred embodiment of the present invention also relates to a pig feed comprising inactivated African swine fever virus, benzoic acid flakes and a powder, said powder comprising a mixture of eugenol and thymol. [Brief explanation of the drawings]

[0019] [Figure 1] 1 shows an explanatory diagram of the in vitro assay carried out in Example 1. FIG. [Figure 2] 1 is an illustration of the assay of Example 2. A comparison of Figures 1 and 2 reveals that the assays of the two examples are similar. However, the assay of Example 1 was carried out in a phosphate buffered saline (PBS) solution, whereas the assay of Example 2 used a sample feed matrix. Surprisingly, the enhancing effect of essential oils on the virucidal activity of benzoic acid is significantly higher in the feed matrix than in solution.

[0020] [Detailed Description of the Invention] A preferred method of the present invention is a method for reducing the risk of infection after ingestion of feed contaminated with African swine fever virus (AFSV). Pigs are hosts of AFSV, and therefore a preferred feed of the present invention is a pig feed. In this regard, the term "pig feed" should be understood in a broad sense. Preferably, the pig feed of the present invention is suitable for boars, pigs, piglets, sows and / or wild boars.

[0021] The present invention relates to a viricide. In this context, the terms "viricide" and "antiviral agent" are used synonymously. In the context of the present invention, a viricide is a compound or mixture of compounds that at least partially inactivates or destroys at least one virus. The terms "inactivation" and "inactivation" are also used synonymously.

[0022] Typically, inactivation means that viral remains can still be detected by qPCR, RT-PCR, or another suitable PCR method. In healthy animals, such inactivated viral remains are in most cases harmless. Therefore, it is more important to evaluate the sample for its ability to produce infectious virus. The characteristic of ASFV-infected swine monocytes, which produce rosettes of erythrocytes around infected cells, is the basis of the classical "hemadsorption" assay, which is widely used both for diagnostic purposes and for virus titration (see Enjuanes, L. et al., 1976a Titration of African swine fever (ASF) virus. Journal of General Virology 32(3), 471-477 (cited in Leon et al., section 4.1)).

[0023] The preferred virucide of the present invention is benzoic acid. According to the present invention, the virucidal activity of benzoic acid is enhanced by at least one essential oil or, preferably, a mixture of essential oils. This does not exclude that an essential oil or a mixture of essential oils is itself a virucide. In the context of the present invention, "enhancement" should be understood in a broad sense. However, enhancement should preferably be understood as increasing the rate at which viruses are inactivated or destroyed. This increase in rate allows for a reduction in the retention time of potentially contaminated feed. PCR methods are not suitable for determining rate, since they generally cannot distinguish between harmful viruses and harmless inactivated virus remnants. Therefore, biological methods, such as hemadsorption, are required to determine the number of days required to inactivate or destroy viruses in contaminated feed.

[0024] The present invention relates to a method, a use, a feed and a process. The following preferences apply to all four of them, namely the method, the use, the feed and also the process of the present invention.

[0025] Benzoic acid flakes are the preferred benzoic acid of the present invention. Other types of benzoic acid, such as benzoic acid granules, are less preferred but are not excluded. Benzoic acid flakes are commercially available from DSM® Nutritional Products (Switzerland).

[0026] Essential oils that may be used in connection with the present invention include agar oil, ajowan oil, angelica oil, anise oil, asafoetida, balsam of Peru, basil oil, bay oil, bergamot oil, black pepper, buchu oil, birch, camphor, cannabis flower essential oil, caraway oil, cardamom seed oil, carrot seed oil, cedarwood oil, chamomile oil, calamus root, cinnamon oil, Cistus, citron, citronella oil, clary sage, clove oil, coffee, coriander, costmary oil (bible leaf oil), costus root, cubeba, cumin / black seed oil, cypress , Cypriol, Curry Leaf, Davana Oil, Dill Oil, Eulemum, Eucalyptus Oil, Fennel Seed Oil, Fenugreek Oil, Fir, Frankincense Oil, Galangal, Galbanum, Geranium Oil, Ginger Oil, Goldenrod, Grapefruit Oil, Henna Oil, Helichrysum, Hyssop, Idaho Tansy, Jasmine Oil, Juniper Berry Oil, Lavender Oil, Ledum, Lemon Oil, Lemongrass, Lime, Litsea Cubeba Oil, Linaloe, Mandarin, Marjoram, Melaleuca Alternifolia, Tea Tree Oil, Melissa Oil (Lemon Balm), Mentha Arvensis arvensis) / mint oil, moringa oil, mountain savory, mugwort oil, mustard oil (essential oil), myrrh oil, myrtle, neem oil or neem tree oil, neroli, nutmeg, orange oil, oregano oil, orris oil, palo santo, parsley oil, patchouli oil, perilla essential oil, pennyroyal oil, peppermint oil, petitgrain, pine oil, ravensara, red cedar, roman chamomile, rose oil, rosehip oil, rose These include mary oil, rosewood oil, sage oil, sandalwood oil, sassafras oil, savory oil, schisandra oil, spearmint oil, spikenard, spruce, star anise oil, spice oil, tangerine oil, tarragon oil, tea tree oil, thyme oil, Tsuga, turmeric, valerian, vetiver oil (kuss oil), Western red cedar, wintergreen, yarrow oil, ylang ylang and zedoary. In the context of the present invention, the expression "essential oil" should be understood in a broad sense and also includes components that have the aroma from essential oils, such as thymol and eugenol.Thymol and eugenol are preferred essential oils of the present invention. In this regard, it does not matter whether thymol and eugenol are synthetically produced, extracted from plants, or obtained by any other method. More preferably, the at least one essential oil of the present invention is a mixture of thymol and eugenol. Even more preferably, one or more powders containing at least one essential oil are used. Most preferably, a powder containing a mixture of thymol and eugenol is used. Such powders are commercially available from DSM® Nutritional Products (Switzerland) and can be easily mixed with benzoic acid flakes and / or feed. The most preferred powder of the present invention contains a mixture of thymol and eugenol and further contains at least one excipient, preferably 2-methoxyphenol, piperine, and / or curcumin, more preferably piperine.

[0027] The virucidal activity of the compounds may vary depending on the virus selected. The present invention preferably relates to African swine fever virus (AFSV).

[0028] [Method of Invention] The present invention relates to a method for inactivating viruses in feed. In this regard, inactivation can be partial or complete. In some cases, it may be known that the feed is actually contaminated with a particular virus. In other cases, it may only be suspected that the feed may be contaminated. Whether the feed is actually contaminated is not an issue when applying the method of the present invention, since the purpose of the method of the present invention is to reduce the risk of infection after ingestion of the feed. Therefore, laboratory analysis of the feed is not required before applying the method disclosed herein. Viruses that may be present in the feed are inactivated by the enhanced virucide of the present invention, and if there is no virus present in the feed, the risk of viral infection due to ingestion of the feed is low or nonexistent in any case.

[0029] A preferred embodiment of the present invention relates to a method for at least partially inactivating African swine fever virus in feed, preferably in pig feed. According to the present invention, African swine fever virus present in pig feed is at least partially inactivated by adding benzoic acid and at least one essential oil to the pig feed. Many essential oils are volatile liquids. Mixing volatile liquids with feed is difficult. Therefore, it is preferable to add one or more powders containing at least one essential oil together with benzoic acid. Therefore, a preferred embodiment of the present invention relates to a method for at least partially inactivating African swine fever virus in pig feed, characterized in that benzoic acid and at least a powder are added to the pig feed, the powder containing at least one essential oil and optionally further containing at least one excipient, preferably 2-methoxyphenol, piperine and / or curcumin, most preferably piperine.

[0030] Any essential oil may be used in the context of the present invention. However, preferred essential oils are eugenol and thymol, with a mixture of eugenol and thymol being even more preferred. In such a mixture, the weight ratio of eugenol to thymol is preferably 10:1 to 1:10, more preferably 5:1 to 1:5, and most preferably 3:1 to 1:3. A particularly preferred embodiment of the present invention relates to a method for at least partially inactivating African swine fever virus in pig feed, characterized in that benzoic acid flakes and at least a powder are added to the pig feed, the powder comprising a mixture of eugenol and thymol and optionally at least one excipient, the at least one optional excipient preferably being 2-methoxyphenol, piperine, and / or curcumin. With respect to eugenol, the weight ratio between the benzoic acid flakes and eugenol is preferably at least 500:1, more preferably at least 833:1, and preferably at most 2500:1. With respect to thymol, the weight ratio between benzoic acid flakes and thymol is preferably at least 250:1, more preferably at least 333:1, and preferably at most 500:1.

[0031] Benzoic acid and at least one essential oil can be added separately to feed, such as pig feed. Alternatively, a mixture of benzoic acid and at least one essential oil can be added to pig feed. Benzoic acid flakes are easy to mix with powder. Therefore, a particularly preferred embodiment of the present invention relates to a method for at least partially inactivating African swine virus in pig feed, characterized in that benzoic acid flakes and at least a powder are added to pig feed, the powder comprising at least one essential oil, and preferably thymol, eugenol, and optionally at least one excipient, the at least one optional excipient being preferably 2-methoxyphenol, piperine, and / or curcumin.

[0032] Benzoic acid, such as benzoic acid flakes, is preferably added in an amount of 0.25-0.5 wt.%, more preferably 0.25-0.475 wt.%, even more preferably 0.25-0.4 wt.%, and most preferably 0.25-0.39 wt.%, based on the total weight of the pig feed. In an alternative embodiment, the benzoic acid flakes are added in an amount of at least 0.5 wt.%, based on the total weight of the pig feed.

[0033] Although not preferred, further additives can be added to the pig feed. However, the addition of formaldehyde, medium-chain fatty acids, fumaric acid, propionic acid, 2-hydroxy-4-methylthio-butanoic acid and / or salts of 2-hydroxy-4-methylthio-butanoic acid (e.g., calcium 2-hydroxy-4-(methylthio)butanoate) to the pig feed of the present invention is neither necessary nor preferred. Further additives increase costs, and the supply of formaldehyde is not well recognized by purchasers.

[0034] [Use of the invention] The present invention also relates to a novel use of at least one essential oil. In this regard, the above-mentioned preferences apply. Thus, a preferred embodiment of the present invention relates to a novel use of eugenol, thymol or a mixture of eugenol and thymol. A particularly preferred embodiment of the present invention relates to a novel use of a powder comprising a mixture of eugenol and thymol, and optionally further comprising at least one excipient.

[0035] The use of the present invention preferably relates to enhancing the virucidal activity of benzoic acid flakes in feed. Accordingly, a preferred embodiment of the present invention relates to the use of a powder as described herein for enhancing the virucidal activity of benzoic acid flakes, preferably in feed. The virucidal activity of benzoic acid or benzoic acid flakes is particularly enhanced with respect to African swine fever virus. Accordingly, a preferred embodiment of the present invention relates to the use of at least one essential oil for enhancing the virucidal activity of benzoic acid in feed, characterized in that the at least one essential oil enhances the ability of benzoic acid to inactivate African swine fever virus in pig feed. A particularly preferred embodiment of the present invention relates to the use of a mixture of eugenol and thymol for enhancing the virucidal activity of benzoic acid or benzoic acid flakes in feed, characterized in that the mixture enhances the ability of benzoic acid flakes to inactivate African swine fever virus in pig feed. An even more preferred embodiment of the present invention relates to the use of a powder as described herein for enhancing the virucidal activity of benzoic acid (preferably benzoic acid flakes) in feed, characterized in that said mixture enhances the ability of benzoic acid (preferably benzoic acid flakes) to inactivate African swine fever virus in pig feed.

[0036] In this regard, the preferences mentioned above apply. Thus, the weight ratio between benzoic acid and eugenol is preferably at least 500:1, more preferably at least 833:1, and preferably at most 2500:1, while the weight ratio between benzoic acid and thymol is preferably at least 250:1, more preferably at least 333:1, and preferably at most 500:1. If benzoic acid flakes are used, the same weight ratios apply.

[0037] The present invention further relates to the use of a composition or mixture comprising benzoic acid and at least one essential oil, or preferably benzoic acid and at least one essential oil, for at least partially inactivating African swine fever virus, preferably in feed, more preferably in pig feed. The preferred benzoic acid, preferred at least one essential oil and / or preferred weight ratio between benzoic acid and at least one essential oil apply analogously as listed above in the section "Uses of the invention".

[0038] [Invention Feed] The feed of the present invention can be any type of feed, however, the preferred feed of the present invention is a pig feed, since pigs are the preferred host of the African swine fever virus.

[0039] Benzoic acid used in connection with the present invention typically does not completely destroy African swine fever virus. While fortified benzoic acid sufficiently inactivates African swine fever virus in pig feed, harmless remnants of the virus remain in the pig feed for a certain period of time after application of the method of the present invention. These harmless remnants can be detected by PCR methods such as qPCR. While harmless remnants of inactivated African swine fever virus can be detected by PCR methods, inactivated remnants of African swine fever virus do not undergo hemadsorption in hemadsorption assays. Biological methods such as hemadsorption can be used to demonstrate that remnants of inactivated African swine fever virus are indeed harmless.

[0040] Thus, when the method of the present invention is applied, pig feed containing inactivated African swine fever virus, benzoic acid, and at least one essential oil is obtained. If the virucidal activity of benzoic acid or benzoic acid flakes is enhanced as described herein, pig feed containing only inactivated African swine fever virus can be obtained, for example, on day 9, day 6, day 3, and / or day 1 after the method of the present invention is applied.

[0041] One embodiment of the present invention relates to a pig feed comprising an inactivated African swine virus, benzoic acid flakes, and an essential oil mixture, the pig feed being prepared less than 140 days in advance, preferably less than 100 days in advance, more preferably less than 50 days in advance, and most preferably less than 20 days in advance, even if prepared in a country where authorities have reported at least one outbreak of African swine fever within the past 12 months.

[0042] A preferred embodiment of the present invention relates to a pig feed comprising inactivated African swine virus, benzoic acid flakes and at least one powder, said powder comprising at least one essential oil and optionally at least one excipient, said at least one excipient being preferably 2-methoxyphenol, piperine and curcumin. The preferences disclosed herein apply with regard to the preferred essential oil, the preferred amount of essential oil and the preferred weight ratio of essential oil to benzoic acid.

[0043] A preferred embodiment of the present invention is a pig feed comprising inactivated African swine virus, benzoic acid flakes and at least one powder, - 0.25 to 0.5% by weight, preferably 0.25 to 0.475% by weight, more preferably 0.25 to 0.4% by weight, most preferably 0.25 to 0.39% by weight of benzoic acid flakes, based on the total weight of the pig feed; - 0.010 to 0.019% by weight of a powder, based on the total weight of the pig feed, comprising eugenol and thymol, and optionally further comprising at least one excipient as described herein. The present invention also relates to a pig feed comprising:

[0044] Although not preferred, the pig feed may contain further additives. However, the addition of formaldehyde, medium-chain fatty acids, fumaric acid, propionic acid, 2-hydroxy-4-methylthio-butanoic acid, and / or salts of 2-hydroxy-4-methylthio-butanoic acid (e.g., calcium 2-hydroxy-4-(methylthio)butanoate) to the pig feed of the present invention is neither necessary nor preferred. Preferably, the pig feed of the present invention is substantially free of formaldehyde, medium-chain fatty acids, fumaric acid, propionic acid, and / or salts of 2-hydroxy-4-methylthio-butane added to the pig feed. In this context, the term "substantially free" may refer to an amount of less than 0.2% by weight, preferably less than 0.1% by weight, even more preferably less than 0.01% by weight, and most preferably less than 0.001% by weight of each compound based on the total weight of the pig feed.

[0045] [Process for preparing the feed of the present invention] The feed of the present invention comprises inactivated African swine virus. Such feed can be prepared by inactivating African swine virus contained in contaminated feed ingredients. Such feed ingredients can be contaminated themselves or can become contaminated during processing at the feed mill. Feed mills located in countries where authorities have reported African swine fever outbreaks may be contaminated to some extent. Feed ingredients (such as corn, soybean meal, barley bran, and wheat bran) grown and / or purchased in such countries may also be somewhat contaminated. The risk of such potential contamination can be mitigated as described herein.

[0046] One embodiment of the present invention relates to a process for preparing pig feed in a country where authorities have reported at least one outbreak of African swine fever within the past 12 months, wherein benzoic acid flakes and powder are added to pig feed, said powder comprising at least one essential oil, and preferably a mixture of eugenol and thymol.

[0047] [Example] [Example 1] In Example 1, an in vitro assay was performed in phosphate buffered saline (PBS) solution, and a schematic of this assay is shown in Figure 1.

[0048] The in vitro assay of Example 1 was carried out as follows: Step 1: Dissolve the test products (VevoVitall® and VevoWin®, respectively) in PBS. Step 2: ASF virus [1mL 10 5.3 50% hemadsorption dose (HAD) 50 ) / ml] into a 20 mL solution and keep the contaminated solution for 1, 3, 6 and 9 days. Step 3: At the end of the incubation period, the live virus is harvested and inoculated into porcine alveolar macrophage (PAM) cells for incubation. Step 4: Add red blood cells (RBCs) to the infected PAM cells for the hemadsorption test.

[0049] The results of the hemadsorption test are shown in Table 1 below.

[0050] [Table 1]

[0051] Four replicates were performed for each test. *+* means hemadsorption, "-" means no hemadsorption. VevoVitall® is commercially available from DSM® Nutritional Products (Switzerland). It is a feed additive consisting essentially of benzoic acid (purity: approximately 99.9%). VevoVitall® is a benzoic acid flake. Such flakes can be produced in large quantities and at low cost. VevoWin® is a mixture of benzoic acid flakes and a powder containing a blend of essential oils. The main essential oils in the powder are thymol and eugenol.

[0052] Example 1 shows that a holding time of 9 days is not sufficient to inactivate the ASF virus when no additive ("test article") is added (see positive control). Example 1 also shows that the two test articles (VevoVitall® and VevoWin®) performed similarly in PBS solution. In neither case was the ASF virus completely inactivated before 9 days. Therefore, it appears difficult to enhance the virucidal activity of benzoic acid with essential oils in PBS solution.

[0053] [Example 2] In Example 2, the assay of Example 1 was repeated, however, this time feed matrix was used instead of the PBS solution.

[0054] The assay outline of Example 2 is shown in FIG.

[0055] In Example 2, four diet samples from the swine diet were individually mixed in a small blade mixer without the addition of any feed additive ("test article") for the negative control (NC) and positive control (PC) treatments, with a 0.5% by weight benzoic acid (Vevovital®) treatment, or with a combination of 0.5% by weight benzoic acid and 0.02% by weight essential oil (VevoWin®) based on the total weight of each feed sample. These treatment samples were challenged with 25 kGy of gamma radiation before further manipulation in a BSL-3 laboratory. Four 10-gram subsamples were weighed into centrifuge tubes. 1 mL of 10 ... 5.3 HAD 50The samples were inoculated with 1 mL of ASFV (ASFV / China / GZ201801). All sample tubes were continuously rotated at 1,200 rpm / min to prevent coagulation. Negative controls (NC) were not inoculated. On days 1, 3, 6, or 9 postinoculation (PI), each sample tube per treatment was collected for hemadsorption testing. After centrifugation, 10 mL of PBS was added to each sample for collection of the supernatant. 100-fold diluted supernatant was used to infect porcine alveolar macrophages in plate wells for 2 hours, after which RPMI 1640 medium was added. After 24 hours of incubation, red blood cells were added and hemadsorption testing was performed.

[0056] The results of the hemadsorption test of Example 2 are shown in Table 2 below.

[0057] [Table 2]

[0058] Again, four replicates were performed for each test. *+* means hemadsorption, "-" means no hemadsorption. In Example 2, the same products as in Example 1 were tested (VevoVitall® and VevoWin®, respectively).

[0059] The negative control sample was negative for hemadsorption. The positive control in Example 2 confirms that inoculation with ASF virus was successful. The positive control also confirms that a 9-day holding time is not sufficient to inactivate the ASF virus when no feed additive is added.

[0060] Comparison with Example 1 shows that the effect of VevoVitall® is slightly better in feed than in PBS solution, nevertheless, it still takes 6 days to completely inactivate the ASF virus in feed.

[0061] Surprisingly, when a combination of benzoic acid and essential oils (i.e., VevoWin®) is added instead of benzoic acid alone (i.e., VevoVitall®), the ASF virus is already completely inactivated at the end of day 1. Thus, in the feed, essential oils dramatically enhance the virucidal activity of benzoic acid, thereby reducing the retention time.

[0062] [Example 3] In Example 3, several batches of pig feed are prepared in a country where authorities have recently reported a serious outbreak of African swine fever.

[0063] Batches 1 and 2 are prepared in the same manner: a powder containing a mixture of benzoic acid flakes and essential oils is added to pig diet. The ingredients of the pig diet are the same for both batches, but each pig diet is from a different region: the pig diet for batch 1 is purchased in a faraway country that has been free of ASFV for a long time, while the pig diet for batch 2 is grown locally. The results of Example 3 are shown below.

[0064] Batch 1 is produced on day 1. After 20 days, Batch 1 contains no live African swine virus and no inactivated African swine virus. Therefore, Batch 1 is not contaminated and has never been contaminated with ASFV.

[0065] Batch 2 is produced on day 1. After 20 days, Batch 2 does not contain live African swine virus. However, Batch 2 contains inactivated African swine virus. Therefore, the pig feed of Batch 2 was contaminated. However, after a holding time of 20 days, Batch 2 was no longer harmful, and the mixture of benzoic acid and essential oils had successfully fulfilled their role.

[0066] Comparative Batch 3 contains only pig feed. The pig feed for Comparative Batch 3 is grown locally. No benzoic acid or essential oils are added. After 20 days, Comparative Batch 3 contains live African swine virus. After 140 days, Comparative Batch 3 still contains live African swine virus. After 500 days of holding time, Comparative Batch 3 is no longer harmful. The storage costs for those 500 days are over $1,000 USD. In addition, some of Batch 3 spoils and must be discharged. Further embodiments are as follows. [Embodiment 1] 1. A method for at least partially inactivating African swine fever virus in pig feed, wherein benzoic acid and at least one essential oil are added to the pig feed. [Embodiment 2] 2. The method of embodiment 1, wherein formaldehyde, medium chain fatty acids, fumaric acid, propionic acid, 2-hydroxy-4-methylthio-butanoic acid and / or salts of 2-hydroxy-4-methylthio-butanoic acid are not added to the feed. [Embodiment 3] 3. The method according to embodiment 1 or 2, wherein benzoic acid flakes are added to the sample, preferably in an amount of 0.25-0.5 wt.%, more preferably in an amount of 0.25-0.475 wt.%, even more preferably in an amount of 0.25-0.4 wt.%, and most preferably in an amount of 0.25-0.39 wt.%, based on the total weight of the pig feed. [Embodiment 4] 4. The method according to any one of embodiments 1 to 3, wherein the at least one essential oil is eugenol and / or thymol, and a powder comprising a mixture of eugenol and thymol is preferably added to the pig feed. [Embodiment 5] 5. The method according to embodiment 4, wherein the weight ratio between benzoic acid and eugenol is preferably at least 500:1, more preferably at least 833:1 and preferably at most 2500:1, and / or the weight ratio between benzoic acid and thymol is preferably at least 250:1, more preferably at least 333:1 and preferably at most 500:1. [Embodiment 6] 1. Use of benzoic acid and at least one essential oil for at least partially inactivating African swine fever virus in animal feed or use of at least one essential oil for enhancing the virucidal activity of benzoic acid in animal feed. [Embodiment 7] Use according to embodiment 6, wherein the at least one essential oil enhances the ability of benzoic acid to inactivate African swine fever virus in pig feed. [Embodiment 8] Use according to embodiment 6 or 7, characterized in that the at least one essential oil is eugenol and / or thymol, and the at least one essential oil is preferably a powder comprising a mixture of eugenol and thymol. [Embodiment 9] 1. A pig feed comprising an inactivated African swine fever virus, benzoic acid flakes and a powder, wherein the powder contains at least one essential oil. [Embodiment 10] 10. The pig feed of embodiment 9, wherein the inactivated African swine virus can be detected by PCR methods but does not cause hemadsorption in hemadsorption assays. [Embodiment 11] 11. Pig feed according to embodiment 9 or 10, characterized in that it has been prepared less than 140 days ago, preferably less than 100 days ago, more preferably less than 50 days ago, and most preferably less than 20 days ago. [Embodiment 12] 12. The pig feed of any one of embodiments 9 to 11, characterized in that it is prepared in a country where authorities have reported at least one outbreak of African swine fever within the past 12 months. [Embodiment 13] 13. The pig feed according to any one of embodiments 9 to 12, characterized in that it contains less than 0.2 wt. %, preferably less than 0.1 wt. %, even more preferably less than 0.01 wt. %, and most preferably less than 0.001 wt. % of formaldehyde, fumaric acid, propionic acid, 2-hydroxy-4-methylthio-butanoic acid and / or salts of 2-hydroxy-4-methylthio-butanoic acid, based on the total weight of the pig feed. [Embodiment 14] - 0.25 to 0.5% by weight, preferably 0.25 to 0.475% by weight, more preferably 0.25 to 0.4% by weight, most preferably 0.25 to 0.39% by weight of benzoic acid flakes, based on the total weight of the pig feed; and - 0.010 to 0.019% by weight of a powder containing eugenol and thymol based on the total weight of the feed 14. The pig feed according to any one of embodiments 9 to 13, comprising: [Embodiment 15] A process for preparing pig feed in a country where authorities have reported at least one outbreak of African swine fever within the past 12 months, wherein benzoic acid flakes and powder are added to the pig feed, and the powder includes at least one essential oil.

Claims

1. A method for at least partially inactivating African swine fever virus in swine feed by adding benzoic acid and at least one essential oil to the swine feed, comprising: the benzoic acid is added in an amount of 0.25 to 0.5 wt. % based on the total weight of the pig feed; the at least one essential oil comprises eugenol and thymol; The method of claim 1, wherein the at least one essential oil is added in an amount of 0.01 to 0.02% by weight based on the total weight of the pig feed.

2. 2. The method of claim 1, wherein formaldehyde, medium chain fatty acids, fumaric acid, propionic acid, 2-hydroxy-4-methylthio-butanoic acid and / or salts of 2-hydroxy-4-methylthio-butanoic acid are not added to the pig feed.

3. The method described in claim 1 or 2, wherein the benzoic acid is benzoic acid flakes.

4. 4. The method according to any one of claims 1 to 3, wherein the at least one essential oil is in powder form.

5. 5. The method according to claim 1, wherein the weight ratio between benzoic acid and eugenol is from 500:1 to 2500:1 and / or the weight ratio between benzoic acid and thymol is from 250:1 to 500:

1.

6. A virucide comprising benzoic acid and at least one essential oil for adding to swine feed to at least partially inactivate African swine fever virus in said swine feed, the benzoic acid is added in an amount of 0.25 to 0.5 wt. % based on the total weight of the pig feed; the at least one essential oil comprises eugenol and thymol; The at least one essential oil is added in an amount of 0.01 to 0.02% by weight based on the total weight of the pig feed.

7. A virucidal activity enhancer comprising at least one essential oil for adding to pig feed containing benzoic acid to enhance the ability of benzoic acid to inactivate African swine fever virus in the pig feed, The content of the benzoic acid is 0.25 to 0.5 wt % based on the total weight of the pig feed; the at least one essential oil comprises eugenol and thymol; The virucidal activity enhancer, wherein the at least one essential oil is added in an amount of 0.01 to 0.02% by weight based on the total weight of the pig feed.

8. The virucidal agent according to claim 6 or the virucidal activity enhancer according to claim 7, wherein the at least one essential oil is in the form of a powder.

9. A pig feed comprising benzoic acid flakes and a powder of at least one essential oil, The content of the benzoic acid flakes is 0.25 to 0.5 wt. % based on the total weight of the pig feed; the at least one essential oil comprises eugenol and thymol; the content of the at least one essential oil is 0.01 to 0.02 wt. % based on the total weight of the pig feed; The pig feed, wherein the African swine fever virus in the pig feed is inactivated.

10. The pig feed according to claim 9, comprising 0% by weight or more and less than 0.2% by weight of formaldehyde, fumaric acid, propionic acid, 2-hydroxy-4-methylthio-butanoic acid and / or a salt of 2-hydroxy-4-methylthio-butanoic acid, based on the total weight of the pig feed.

11. A process for preparing swine feed, comprising: adding benzoic acid flakes and powder to pig feed containing African swine fever virus; the benzoic acid flakes are added in an amount of 0.25 to 0.5 wt. % based on the total weight of the pig feed; the powder comprises at least one essential oil comprising eugenol and thymol; the powder is added in an amount of 0.01 to 0.02% by weight based on the total weight of the pig feed; The process, wherein the African swine fever virus in the pig feed prepared by said process is inactivated.

Citation Information

Patent Citations

  • Feed for sucking pig

    CN108771021A

  • Feed additive composition and use thereof

    JP2014057591A

  • Reducing the risk of viral infection due to viral contaminated feed

    US20200281227A1

  • Chemical mitigation of african swine fever virus and classical swine fever virus

    WO2019169256A1

  • Fast release benzoic acid in feed

    WO2020002595A1