Bifidobacterium adolescentis for reducing the release of proinflammatory cytokines

CN122121885APending Publication Date: 2026-05-29CHR HANSEN AS

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHR HANSEN AS
Filing Date
2024-11-05
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing technologies are insufficient to effectively reduce stress and anxiety symptoms, especially by lowering the levels of related pro-inflammatory cytokines such as IL-6, TNF-α, IL-1β, and IFN-γ, thereby alleviating the associated inflammatory response.

Method used

Bifidobacterium adolescentis Bif-038 (DSM29103) and its composition, comprising Lactobacillus rhamnosus GG and Bifidobacterium animalis subsp. lactis, were used as a probiotic preparation and administered orally to reduce the levels of IL-6, TNF-α, IL-1β and IFN-γ in subjects.

Benefits of technology

It significantly reduced the levels of IL-6, TNF-α, IL-1β and IFN-γ in the subjects, alleviated the inflammatory response, improved stress and anxiety symptoms, and enhanced quality of life.

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Abstract

The present disclosure relates generally to probiotics for reducing pro-inflammatory cytokine release. In particular, the present disclosure provides a Bifidobacterium adolescentis that can reduce overall pro-inflammatory cytokines, such as interleukin-6 (IL-6), in a subject. The present disclosure provides a method for preventing, reducing, or ameliorating stress and / or anxiety symptoms in a subject in need thereof with a Bifidobacterium adolescentis strain (Bif038) deposited as DSM 29103.
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Description

Technical Field

[0001] This disclosure generally relates to probiotics for reducing the release of pro-inflammatory cytokines. In particular, this disclosure provides a Bifidobacterium adolescentis that can reduce overall pro-inflammatory cytokines, such as interleukin-6 (IL-6), in a subject. Background Technology

[0002] Bifidobacteria are naturally occurring colonizing bacteria in the gastrointestinal tract, possessing genetic adaptations that enable them to colonize this harsh and complex environment. Bifidobacteria interact with key elements of intestinal function and contribute to maintaining homeostasis. Recent scientific advances have shown that, through strain-dependent interactions with the host, Bifidobacteria can reduce mucosal antigen load, improve the intestinal barrier, and induce the regulation of local and systemic immune responses. Furthermore, studies have indicated that certain Bifidobacteria may have effects on conditions such as ulcerative colitis, obesity, liver disease, multiple sclerosis, rheumatoid arthritis, major depressive disorder, mood disorders, and anxiety (WO 2016 / 030504).

[0003] Bifidobacteria are used as probiotics because of their recognized health benefits to humans. Probiotics are defined as "live microorganisms that, when administered in adequate amounts, provide a health benefit to the host" (FAO / WHO, 2001). About a dozen clinically proven Bifidobacterium strains are commercially available. Half of these are *Bifidobacterium animalis* subsp. lactis, and the remainder are *Bifidobacterium longum* subsp. longum, *Bifidobacterium longum* subsp. infantis, or *Bifidobacterium breve* strains. *Bifidobacterium adolescentis* strain (ATCC15703T) was isolated from the adult gut (Reuter, 1971). *Bifidobacterium adolescentis* strains are frequently detected in the adult gut (Turroni et al., 2009).

[0004] Both stress and anxiety are normal emotional responses. Stress is typically caused by external triggers, which can be short-term or long-term. Individuals under stress experience mental and physical symptoms such as irritability, anger, fatigue, muscle pain, digestive problems, and difficulty sleeping. Anxiety is defined as persistent, excessive worry that does not disappear even in the absence of a stressor. Anxiety can cause symptoms similar to stress: insomnia, difficulty concentrating, fatigue, muscle tension, and irritability. Both mild stress and mild anxiety usually respond well to similar coping mechanisms, such as physical activity, a nutritious diet, and good sleep hygiene.

[0005] Anxiety disorders differ from short-term anxiety in severity and duration: anxiety typically lasts for months and negatively impacts mood and function. Some anxiety disorders, such as agoraphobia (fear of public places or open spaces), may cause individuals to avoid pleasant activities or make it difficult to maintain a job. According to the latest data from the National Institute of Mental Health, 31% of Americans will experience an anxiety disorder in their lifetime. One of the most common anxiety disorders is generalized anxiety disorder. To diagnose generalized anxiety disorder, clinicians will screen for related symptoms, such as excessive, uncontrollable worry on most days over a six-month period. Generalized anxiety disorder may also be accompanied by physical symptoms of anxiety.

[0006] Decreased circulating levels of IL-6 and cortisol, coupled with a trend toward a reduced overall pro-inflammatory cytokine profile (i.e., a combination of IL-6, tumor necrosis factor-α (TNFα), interleukin-1β (IL-1β), and interferon-γ (IFN-γ),) may alleviate adverse symptoms in psychiatric indications such as stress and anxiety. It has been reported that anxious and non-anxious participants differ in IL-6 levels, but not in high-sensitivity C-reactive protein (hs-CRP) (another inflammatory marker). Notably, the psychosomatic pathways determining stress-related IL-6 production may differ significantly from those leading to CRP production. For example, previous research has shown that, unlike CRP, IL-6 may be directly influenced by the neurological and hormonal responses to stress, supporting the view that negative emotional states and inflammation are specific at both psychological and biological levels. Regarding cortisol, while short-term stress may be adaptive, maladaptive responses to stressors may exacerbate cortisol secretion and lead to a hypersensitive physiological stress response that is easily activated. Ultimately, persistent or excessive stress responses may lead to chronic cortisol dysfunction and widespread inflammation. Furthermore, susceptibility to stress-induced inflammation is associated with dysfunction of the hypothalamic-pituitary-adrenal (HPA) axis, which involves IL-6 and cortisol. Summary of the Invention

[0007] This disclosure provides a method for preventing, alleviating, or improving stress and / or anxiety symptoms in subjects in need using Bifidobacterium adolescentis Bif-038 (DSM29103). Further, it provides Bifidobacterium adolescentis Bif-038 for use in preventing, alleviating, or improving stress and / or anxiety symptoms. Specifically, the Bifidobacterium adolescentis strain deposited as DSM29103 can be used to prevent, alleviate, or improve stress and / or anxiety symptoms in subjects in need, wherein said prevention, alleviation, or improvement of stress and / or anxiety symptoms includes reducing levels of IL-6, TNF-α (tumor necrosis factor-α), IL-1β, IFN-γ (interferon-γ), and / or cortisol, thereby reducing inflammation, for example, by reducing levels of interleukin-6 (IL-6). In one embodiment, the *Bifidobacterium adolescentis* strain deposited under DSM29103 can be used to prevent, alleviate, or improve stress and / or anxiety symptoms in subjects in need, wherein the prevention, alleviation, or improvement of stress and / or anxiety symptoms includes reducing levels of IL-6, TNF-α, IL-1β, and IFN-γ, thereby reducing inflammation. In another embodiment, the *Bifidobacterium adolescentis* strain deposited under DSM29103 can be used to prevent, alleviate, or improve stress and / or anxiety symptoms in subjects in need, wherein the prevention, alleviation, or improvement of stress and / or anxiety symptoms includes reducing levels of IL-6, TNF-α, and IL-1β, thereby reducing inflammation.

[0008] A further provided composition comprises *Bif-038*, a bifidobacterium adolescentis used for the prevention, relief, or improvement of stress and / or anxiety symptoms. The composition may further comprise one or more of *Lactobacillus rhamnosus* GG and / or *Bifidobacterium animalis* subsp. *lactobacter*, such as *Lactobacillus rhamnosus* GG (DSM 33156) having at least 99.00% identity with SEQ ID NO. 1 and / or a strain of *Bifidobacterium animalis* subsp. *lactobacter* deposited under DSM 15954.

[0009] This disclosure provides uses, methods, and compositions for improving the quality of life of subjects suffering from stress and / or anxiety. This disclosure also provides the use of a Bifidobacterium adolescentis strain deposited in DSM29103 as a dietary supplement for the prevention, reduction, or improvement of stress and / or anxiety symptoms in subjects in need.

[0010] Although the methods and uses described herein are particularly relevant to humans, animals (such as pets, such as cats, dogs and horses) are also included within the scope of this invention. Attached Figure Description

[0011] Figure 1The levels of the cytokine IL-6 in the blood at three time points were shown in the placebo group, the single probiotic strain (Bif-038) group, and the combined probiotic strain (LGG™ / BB-12™) group.

[0012] Figure 2 The changes in blood cytokine IL-6 relative to baseline at three time points are shown in the placebo group, the single probiotic strain (Bif-038) group, and the combined probiotic strain (LGG™ / BB-12™) group.

[0013] Figure 3 Blood cortisol levels were shown at three time points in the placebo group, the single probiotic strain (Bif-038) group, and the combined probiotic strain (LGG™ / BB-12™) group.

[0014] Figure 4 The changes in blood cortisol levels relative to baseline at three time points are shown in the placebo group, the single probiotic strain (Bif-038) group, and the combined probiotic strain (LGG™ / BB-12™) group. Detailed Implementation

[0015] This disclosure provides a method for preventing, alleviating, or improving stress and / or anxiety symptoms in a subject in need using Bifidobacterium adolescentis Bif-038 (DSM29103). It further provides Bifidobacterium adolescentis Bif-038 for use in preventing, alleviating, or improving stress and / or anxiety symptoms. It further provides a composition comprising Bifidobacterium adolescentis Bif-038 for use in preventing, alleviating, or improving stress and / or anxiety symptoms. This disclosure provides uses, methods, and compositions for improving the quality of life of subjects suffering from stress and / or anxiety.

[0016] The Bifidobacterium adolescentis probiotic used in this article is Bif-038 (available from Chr. Hansen A / S, Denmark) or a strain derived from DSM 29103, deposited on July 16, 2014 at DSMZ (German Center for Microbiology and Cell Culture Collection, 20 7B, Inhofenstrasse, Braunschweig, D-38124), characterized by its ability to reduce the levels of circulating IL-6 and / or blood cortisol in the subjects.

[0017] This disclosure provides a method for preventing, alleviating, or improving stress and / or anxiety symptoms in a subject in need using a composition comprising one or two of Bifidobacterium adolescentis Bif-038 (DSM29103), Lactobacillus rhamnosus GG (DSM 33156), and Bifidobacterium animalis subsp. lactis (DSM 15954). Further, such compositions for use in preventing, alleviating, or improving stress and / or anxiety symptoms are provided. This disclosure provides uses, methods, and compositions for improving the quality of life of subjects suffering from stress and / or anxiety.

[0018] Lactobacillus rhamnosus GG (DSM 33156) is available from Chr. Hansen, Denmark, under the trade name LGG™. Bifidobacterium animalis subsp. lactis is available from Chr. Hansen, Denmark, under the trade name BB-12™.

[0019] Preferably, the nucleotide sequence of *Lactobacillus rhamnosus* GG has at least 99.00% identity with SEQ ID NO. 1, more preferably at least 99.10%, at least 99.20%, at least 99.30%, at least 99.40%, at least 99.50%, at least 99.60%, at least 99.70%, or at least 99.80% identity with SEQ ID NO. 1, more preferably at least 99.90%, at least 99.92%, at least 99.93%, at least 99.94%, at least 99.95%, at least 99.96%, at least 99.97%, or at least 99.98% identity with SEQ ID NO. 1, and even more preferably at least 99.99% identity with SEQ ID NO. 1 or is identical to SEQ ID NO. 1.

[0020] In some embodiments, the composition comprises the probiotic *Lactobacillus rhamnosus* GG, and the nucleotide sequence of *Lactobacillus rhamnosus* GG differs from the nucleotide sequence of SEQ ID NO. 1 by 1, 2, 3, 4, 5, 6, 7, 8, 9, 10 or more nucleotides. Preferably, the nucleotide sequence of *Lactobacillus rhamnosus* GG differs from the nucleotide sequence of SEQ ID NO.1 by no more than 5000, 4000, 3000, 2750, 2500, 2250, 2000, 1750, 1500, 1250, 1000, 750, 500, 400, 300, 250, 200, 190, 180, 170, 160, 150, 140, 130, 120, 110, 100, 90, 80, 70, 60, 50, 40, 30, 20, 19, 18, 17, 16, or 15 nucleotides.

[0021] The nucleotide sequence of SEQ ID NO. 1 can be found in the ncbi database ( https: / / www.ncbi.nlm.nih.gov / The genome of *Lactobacillus rhamnosus* GG was obtained using reference number GCF_028475085.1 as ASM2847508v1. The reference database version was accessible on March 7, 2024.

[0022] In the context of two or more nucleotide sequences, the term "[certain]% sequence identity" refers to the relationship between two polynucleotide sequences determined through sequence comparison (alignment). As used herein, "sequence identity" is determined over the entire length of the sequence. "Sequence identity" means that two or more sequences have a given percentage of common nucleotides when compared and aligned. Identity measures the percentage of identical matches between the smaller of two or more sequences, where gap alignment (if any) is handled through a specific mathematical model, algorithm, or computer program.

[0023] The percentage of sequence identity of a nucleotide sequence can be readily calculated by any method known to those skilled in the art. In a preferred embodiment, the “percentage of identity” between two sequences (e.g., polynucleotide or amino acid sequences) is determined using the algorithm of Karlin and Altschul (Proc. Natl. Acad. Sci. USA [Proceedings of the National Academy of Sciences] 87:2264-68, 1990), a modified version of which is described in Karlin and Altschul Proc. Natl. Acad. Sci. USA [Proceedings of the National Academy of Sciences] 90:5873-77, 1993. Such an algorithm is incorporated into the NBLAST® and XBLAST® programs (version 2.0) of Altschul et al., J. Mol. Biol. [Journal of Molecular Biology] 215:403-10, 1990. In the presence of gaps between two sequences, Gapped BLAST® can be used, for example, as described in Altschul et al., Nucleic AcidsRes. [Nucleic Acid Research] 25(17):3389-3402, 1997. When using BLAST and Gapped BLAST® programs, the default parameters of the respective programs (e.g., XBLAST® and NBLAST®) can be used, or the parameters can be appropriately adjusted in a manner that can be understood by one of ordinary skill in the art.

[0024] Another local alignment technique that can be used is based on the Smith-Waterman algorithm (Smith, TF and Waterman, MS (1981) J. Mol. Biol. [Journal of Molecular Biology] 147:195-197). A general global alignment technique that can be used is based on the Needleman-Wunsch algorithm (Needleman, SB and Wunsch, CD (1970) J. Mol. Biol. [Journal of Molecular Biology] 48:443-453).

[0025] The software used to perform BLAST analysis is publicly available from the National Center for Biotechnology Information (http: / / www.ncbi.nlm.nih.gov / ).

[0026] As used in this article, a bacterial "strain" refers to a bacterium that remains genetically unchanged during growth or reproduction. This includes multiple identical strains. A "wild-type strain" refers to a non-mutated form of bacteria found in nature.

[0027] The term "derived strain" should be understood as a strain derived from a parent strain through, for example, genetic engineering, radiation and / or chemical treatment, and / or selection, adaptation, screening, etc. In certain embodiments, a derived strain is a functionally equivalent mutant, for example, a mutant having properties substantially the same as or improved upon the parent strain (e.g., probiotic properties). Such derived strains are part of this disclosure. The term "derived strain" includes strains obtained by subjecting the strains of this disclosure to any conventionally used mutagenesis treatment, including treatment with chemical mutagens (e.g., ethanemethanesulfonate (EMS) or N-methyl-N'-nitro-nitroguanidine (NTG)) or UV light.

[0028] The Bifidobacterium adolescentis probiotic of the present invention can be conveniently administered via a probiotic composition. The term "probiotic composition" means any composition containing probiotics. Probiotic compositions containing strains according to this disclosure can be administered in the form of food or dietary supplements. For example, Bifidobacterium adolescentis can be incorporated into dairy products (e.g., milk), and particularly fermented dairy products, optionally in combination with other lactic acid bacteria (e.g., yogurt starter cultures), or incorporated into other foods (e.g., snack bars) or beverages (e.g., fruit juices).

[0029] Probiotic compositions containing Bifidobacterium adolescentis may also be provided as dietary supplements in the form of powders, tablets (e.g., lozenges or effervescent tablets), soft lozenges, capsules, chewing gum, individual sachets, or as a component of more general compositions (e.g., oil drops, emulsions, or pastes) or any other suitable carrier that a person skilled in the art has determined to be an effective carrier of live microorganisms.

[0030] Probiotics are live microorganisms, which can present challenges during the formulation and storage of probiotic compositions. Probiotics are particularly sensitive to temperature, moisture content, oxygen, and other components in the formulation matrix. Preferably, the bacteria disclosed herein remain viable after prolonged storage so that they can exert their beneficial effects when the probiotic compositions of the present invention are administered to individuals in need.

[0031] The term "viable" means that the cells are alive and capable of forming colonies in a petri dish during pour or spread plating. The number of viable probiotics is determined by pour or spread plating after incubation under conditions suitable for the growth of the probiotic strain, and is expressed in colony-forming units (CFU). This method allows for the counting of cells capable of growth and colony formation. Unless the context otherwise requires, the figures given in this specification and claims should be understood as CFU / g. In some embodiments, the probiotic composition of the present invention contains at least 10 at the end of shelf life (EOS). 9 CFU / unit. The expiration date can be at least 3 months, such as at least 6 months, at least 9 months, at least 12 months, at least 18 months, or at least 24 months.

[0032] Using low water activity ensures better survival of probiotics during composition storage. Water activity (aw) is defined as the partial vapor pressure of water in a composition at a specific temperature divided by the standard state partial vapor pressure of water at the same temperature. Therefore, water activity can be used as a measure of the amount of free (i.e., unbound) water in a composition. It can be calculated as:

[0033] aw = P / P0

[0034] Where p is the partial vapor pressure of water in the composition, and P0 is the vapor pressure of pure water at the same temperature. In probiotic compositions, a water activity (aw) range of 0.1-0.2 is generally preferred. The probiotics used in the probiotic compositions of this invention are typically frozen or freeze-dried. To obtain high activity, the bacteria are mixed with a cryoprotectant before freezing or freeze-drying.

[0035] The term "cryoprotectant" refers to a substance that improves survival during freezing and / or drying and enhances the storage stability of bacteria. Cryoprotectants as used herein typically comprise sugars. Sugars can be monosaccharides, disaccharides, oligosaccharides, or polysaccharides, or mixtures of at least two sugars. Compositions can even contain three, four, or more sugars. In some embodiments, the composition comprises a mixture of at least one monosaccharide or disaccharide and at least one oligosaccharide. In other embodiments, the composition comprises a mixture of at least one monosaccharide or disaccharide and at least one polysaccharide.

[0036] Monosaccharides that can be used in the probiotic compositions disclosed herein include glucose (also known as dextrose), fructose, ribose, and galactose. Disaccharides that can be used in the probiotic compositions disclosed herein particularly include sucrose, trehalose, maltose, and lactose. The composition may contain one or more monosaccharides or disaccharides, such as one, two, three, or even more different sugars.

[0037] In some embodiments, the probiotic compositions disclosed herein comprise at least one oligosaccharide. Oligosaccharides are sugar polymers containing three to nine monosaccharides. Fructose oligosaccharides (FOS) are found in many vegetables and consist of short-chain fructose molecules. Galacto-oligosaccharides (GOS) are also naturally occurring and consist of short-chain galactose molecules. These compounds can only be partially digested by humans. The composition may contain one, two, or even more different oligosaccharides.

[0038] In some embodiments, the probiotic compositions disclosed herein comprise at least one polysaccharide. Polysaccharides are polymeric carbohydrate molecules composed of more than ten monosaccharide units linked by glycosidic bonds, and hydrolysis yields the monosaccharides or oligosaccharides that constitute them. Their structures range from linear to highly branched. Examples of polysaccharides that can be used in the probiotic compositions disclosed herein are maltodextrin, cyclodextrin, alginate, pectin, chitosan, starch, and inulin. The compositions may contain one, two, three, or even more different polysaccharides.

[0039] For example, cryoprotectants can contain a mixture of disaccharides (such as sucrose or glucose) and polysaccharides (such as maltodextrin). Adding oligosaccharides or polysaccharides (such as FOS, GOS, inulin, and other polysaccharides) helps reduce water activity and has the additional advantage that oligosaccharides and polysaccharides are not as sweet as monosaccharides and disaccharides, and they also add fiber to the composition. Polyols (sugar alcohols) have the general formula HOCH2(CHOH). nCH20H. Because they are lower in calories and sweetness than sugars, they are often added to foods. Furthermore, they are not broken down or metabolized into acid by bacteria in the mouth, thus not causing tooth decay. The composition may further comprise at least one polyol, such as erythritol, inositol, isomaltitol, mannitol, maltitol, sorbitol, or xylitol, or mixtures thereof. Preferred polyols are xylitol, sorbitol, and mannitol. The composition may comprise one, two, three, or even more different polyols. The cryoprotectant may further comprise peptides, proteins, protein hydrolysates, or mixtures thereof. Examples of peptides and proteins used herein are casein, pea protein, whey protein, albumin, soy protein, glutamic acid, or gelatin, and any isolates or hydrolysates thereof. Other additives may also be present, such as antioxidants, like ascorbate, sodium citrate, or propyl gallate.

[0040] A combination of several probiotic species or strains may be used, i.e., 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25 or more species and strains. In the examples, the probiotic composition may contain only one, two, three, four or five different strains.

[0041] In addition to probiotics, the probiotic composition may also include one or more other active ingredients, such as one, two, three, four or more active ingredients selected from the group consisting of: vitamins, such as vitamins A, D, E, K2, C, B2, B6, B12, biotin, niacin, folic acid; minerals, such as zinc, selenium, chromium, copper, calcium, chloride; and plant extracts, such as cranberry extract / cranberry juice, royal jelly. To achieve therapeutic effects, the probiotic composition is expected to be formulated with at least 10 6 CFU (e.g., at least 10) 7 CFU, preferably at least 10 8 CFU, usually in 10 9 CFU and 10 12 The corresponding amount of Bifidobacterium adolescentis (between CFU) is administered daily for at least one week, and preferably for a longer period of time, such as at least two weeks, at least four weeks, at least six weeks, at least nine weeks, and preferably at least twelve weeks.

[0042] In this study, the probiotic composition contained *Bifidobacterium adolescentis* as the active ingredient. *Bifidobacterium adolescentis* may be used as the sole active ingredient. Alternatively, the probiotic composition described herein may contain other target compounds, such as other bacterial strains, vitamins, prebiotics, fiber, or other compounds that may have health benefits.

[0043] Other bacteria can be selected from the following groups: *Bifidobacterium lactis*, *Lactobacillus rhamnosus*, *Lactococcus lactis subsp. lactis*, *Lactococcus lactis subsp. cremoris*, *Leuconostoc lactis*, *Leuconostoc mesenteroides subsp. cremoris*, *Pediococcus pentosaceus*, *Lactococcus lactis subsp. lactis biovar. diacetylactis*, *Lactobacillus casei subsp. casei*, *Streptococcus thermophilus*, *Bifidobacterium longum*, and *Lactobacillus*. Lactobacillus lactis, Lactobacillus helveticus, Lactobacillus fermentum, Lactobacillus salivarius, Lactobacillus delbrueckii subsp. bulgaricus, and Lactobacillus acidophilus.Therefore, the composition may further comprise one or more lactic acid bacteria strains selected from the group consisting of: Bifidobacterium animalis subsp. lactis preserved in DSM 15954, Lactobacillus acidophilus preserved in DSM 13241, Lactobacillus rhamnosus GG, Lactobacillus rhamnosus preserved in ATCC 53103, Lactobacillus rhamnosus preserved in ATCC 55826, Lactobacillus reuteri preserved in ATCC 55845, Lactobacillus paracasei subsp. paracasei preserved in ATCC 55544, Lactobacillus paracasei preserved in LMG-17806, Streptococcus thermophilus preserved in DSM 15957, Lactobacillus fermentum preserved in NM02 / 31074, and Lactobacillus paracasei subsp. paracasei preserved in CCTCC. The Lactobacillus rhamnosus GG used in this article can be replaced with Lactobacillus rhamnosus preserved in ATCC 53103.

[0044] As used herein, the terms “therapeutic effective amount” or “effective amount” mean the amount of an active ingredient that elicits a biological or pharmaceutical response in a subject, including at least a partial reduction, prevention, or relief of symptoms of the treated condition. Example

[0045] Example 1

[0046] Sixty-two otherwise healthy adults who had scores of 20-40 on the Beck Depression Scale-II (BDI-II) during the screening and baseline periods presented with depressive symptoms.

[0047] The study included a 12-week intervention period (3 groups):

[0048] • 5 billion CFU of Bifidobacterium adolescentis Bif-038

[0049] • 1 billion CFU of Lactobacillus rhamnosus LGG™ and Bifidobacterium BB-12™

[0050] • Placebo

[0051] After 12 weeks, blood markers of inflammation (IL-6, TNF-α, IL-1β, and IFN-γ) and blood cortisol levels were assessed and compared with baseline and placebo groups.

[0052] Figure 1 The levels of IL-6 are shown in Table 1 and... Figure 2 The changes in blood IL-6 relative to baseline are shown.

[0053] Table 1 – Changes in IL-6 relative to baseline

[0054]

[0055] P-value: The Mann-Whitney test was used to analyze the change relative to baseline.

[0056] Figure 3 The levels of blood cortisol are shown in Table 2. Figure 4 The changes in blood cortisol relative to baseline are shown.

[0057] Table 2 – Changes in Cortisol (Blood) Relative to Baseline

[0058]

[0059] P-value: Generalized linear mixture model (GLMM) was used to analyze the change relative to baseline, with treatment as a factor and adjusted for baseline values ​​(values ​​have been logarithmically transformed).

[0060] Compliant Solution Set

[0061] Table 3 – Changes in inflammation scores of major pro-inflammatory cytokines (IL-6, TNF-α, and IL-1β) relative to baseline

[0062]

[0063] P-value: Analyzes change relative to baseline using the Mann-Whitney test.

[0064] Table 4 – Inflammation scores of all measured pro-inflammatory cytokines (IL-6, TNF-α, IL-1β, and IFN-γ) relative to Baseline changes

[0065]

[0066] P-value: Analyzes change relative to baseline using the Mann-Whitney test.

[0067] Table 5 – Abundance and Cyclic Distribution of Bifidobacterium adolescentis Bif-038 Preserved in Fecal Samples under DSM29103 Correlation of changes in cyclic IL-6

[0068]

[0069] Spearman correlation coefficient and correlation p-value were used to compare the abundance of applied Bifidobacterium adolescentis strains in fecal samples (tracked by metagenomic strains) with changes in circulating IL-6 (week 0 to week 12).

[0070] describe

[0071] Promising findings of this study include evidence that probiotic supplementation has anti-inflammatory effects. Compared to the placebo group, supplementation with Bifidobacterium adolescentis was associated with a significant reduction in IL-6 and blood cortisol, and there was a strong trend indicating a greater decrease in TNF-α, IFN-γ, and IL-1β. Furthermore, when assessing three major pro-inflammatory cytokines (IL-6... TNF-α IL-1β or four measured pro-inflammatory cytokines (IL-6) TNF-α IL-1β When scoring the product of IFN-γ, the decrease in Bifidobacterium adolescentis was statistically more significant compared to the placebo group, and there was a strong trend indicating a greater decrease in Lactobacillus rhamnosus GG and Bifidobacterium animalis subsp. lactis compared to the placebo group. Furthermore, in the Bifidobacterium adolescentis group, an increased abundance of the applied Bifidobacterium adolescentis strain in fecal samples (tracked by metagenomic strains) was correlated with a decrease in circulating IL-6. The anti-inflammatory effects of Bifidobacterium adolescentis have significant therapeutic implications, as administration of this strain may offer greater benefit to individuals with excessive inflammation or inflammation-related conditions.

[0072] Project List:

[0073] 1. A Bifidobacterium adolescentis Bif-038 (DSM29103) for use in the prevention, relief or improvement of stress and / or anxiety symptoms in subjects in need.

[0074] 2. As described in Project 1, the dosage of Bifidobacterium adolescentis Bif-038 is at least approximately 1 billion CFU / day.

[0075] 3. As described in Project 1, the dosage of Bifidobacterium adolescentis Bif-038 is at least approximately 5 billion CFU / day.

[0076] 4. As described in items 1-3, wherein the Bifidobacterium adolescentis Bif-038 is applied for at least 42 days.

[0077] 5. As described in items 1-3, wherein the Bifidobacterium adolescentis Bif-038 is applied for at least 84 days.

[0078] 6. A composition comprising Bifidobacterium adolescentis Bif-038 for use in alleviating or preventing symptoms of stress and / or anxiety.

[0079] 7. The composition according to item 6, wherein the composition comprises at least about 1 billion CFU of the Bifidobacterium adolescentis Bif-038.

[0080] 8. The composition according to item 6 or 7, wherein the composition further comprises one or more of Lactobacillus rhamnosus GG (DSM33156) and Bifidobacterium animalis subsp. lactis (DSM 15954).

[0081] 9. A method for reducing or preventing stress and / or anxiety symptoms in a subject, the method comprising administering an effective amount of Bifidobacterium adolescentis Bif-038 to the subject.

[0082] 10. The method described in Project 9, wherein the dose of Bifidobacterium adolescentis Bif-038 is at least about 1 billion CFU / day.

[0083] 11. The method according to Project 10, wherein the dose of Bifidobacterium adolescentis Bif-038 is at least about 5 billion CFU / day.

[0084] 12. The method according to items 9-11, wherein the Bifidobacterium adolescentis Bif-038 is applied for at least 42 days, preferably at least 84 days.

Claims

1. A Bifidobacterium adolescentis strain preserved in DSM29103 for use in preventing, alleviating or improving stress and / or anxiety symptoms in subjects in need.

2. The DSM29103-preserved Bifidobacterium adolescentis strain for use in preventing, alleviating, or improving stress and / or anxiety symptoms in subjects in need, as claimed in claim 1, wherein the prevention, alleviation, or improvement of stress and / or anxiety symptoms comprises reducing levels of IL-6, TNF-α, IL-1β, IFN-γ, and / or cortisol, thereby reducing inflammation.

3. The DSM29103-preserved Bifidobacterium adolescentis strain for use in preventing, alleviating or improving stress and / or anxiety symptoms in subjects in need, as described in claim 1 or 2, wherein the prevention, alleviation or improvement of stress and / or anxiety symptoms includes reducing the levels of IL-6, TNF-α and IL-1β, thereby reducing inflammation.

4. The DSM29103-preserved Bifidobacterium adolescentis strain for use in preventing, alleviating or improving stress and / or anxiety symptoms in subjects in need, as described in claims 1 to 3, wherein the prevention, alleviation or improvement of stress and / or anxiety symptoms comprises reducing the levels of IL-6, TNF-α, IL-1β and IFN-γ, thereby reducing inflammation.

5. The DSM29103-preserved Bifidobacterium adolescentis strain for use in the prevention, relief or improvement of stress and / or anxiety symptoms according to claims 1 to 4, wherein the dose of the DSM29103-preserved Bifidobacterium adolescentis strain is at least about 1 billion CFU / day.

6. The DSM29103-deposited Bifidobacterium adolescentis strain for use in the prevention, relief or improvement of stress and / or anxiety symptoms according to claims 1 to 4, wherein the dose of the DSM29103-deposited Bifidobacterium adolescentis strain is at least about 5 billion CFU / day.

7. The DSM29103-preserved Bifidobacterium adolescentis strain for use in the prevention, relief or improvement of stress and / or anxiety symptoms according to claims 1-6, wherein the DSM29103-preserved Bifidobacterium adolescentis strain is administered for at least 42 days.

8. The DSM29103-preserved Bifidobacterium adolescentis strain for use in the prevention, relief or improvement of stress and / or anxiety symptoms as described in claims 1-6, wherein the DSM29103-preserved Bifidobacterium adolescentis strain is administered for at least 84 days.

9. A composition comprising a Bifidobacterium adolescentis strain deposited in DSM29103 for use in alleviating or preventing symptoms of stress and / or anxiety, as described in any one of claims 1 to 8.

10. The composition of claim 9 comprising the DSM29103-deposited Bifidobacterium adolescentis strain for use in alleviating or preventing stress and / or anxiety symptoms, wherein the composition comprises at least about 1 billion CFU of the DSM29103-deposited Bifidobacterium adolescentis strain.

11. The composition according to claim 9 or 10 comprising the DSM29103-preserved Bifidobacterium adolescentis strain for use in alleviating or preventing stress and / or anxiety symptoms, wherein the composition further comprises one or more of Lactobacillus rhamnosus GG and / or Bifidobacterium animalis subsp. lactis.

12. The composition according to claim 11, wherein one or more of the Lactobacillus rhamnosus GG have at least 99.00% identity with SEQ ID NO. 1, and / or the Bifidobacterium animalis subsp. lactis is a strain deposited under DSM 15954.

13. A method for alleviating or preventing stress and / or anxiety symptoms in a subject, the method comprising administering to the subject an effective amount of the Bifidobacterium adolescentis strain preserved in DSM29103.

14. The method of claim 13, wherein the dose of the Bifidobacterium adolescentis strain preserved with DSM29103 is at least about 1 billion CFU / day.

15. The method of claim 13, wherein the dose of the Bifidobacterium adolescentis strain preserved with DSM29103 is at least about 5 billion CFU / day.

16. The method according to claims 13-15, wherein the Bifidobacterium adolescentis strain preserved with DSM29103 is applied for at least 42 days, preferably at least 84 days.

17. The use of the Bifidobacterium adolescentis strain deposited under DSM29103 as a dietary supplement according to any one of the preceding claims for the prevention, reduction or improvement of stress and / or anxiety symptoms in subjects in need.