HERBAL WOUND AND BURN CREAM
Patent Information
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- RECEP TAYYİP ERDOĞAN ÜNİVERSİTESİ REKTÖRLÜĞÜ
- Filing Date
- 2026-01-26
- Publication Date
- 2026-06-22
Abstract
Description
HERBAL WOUND AND BURN CREAM Technical Field to Which the Invention Relates The invention relates to a wound and burn cream with herbal ingredients. The cream in question contains Olea. In oil phase form, acting as a carrier oil, obtained from the plant europaea L. olive oil, derived from the root of the Alkanna tinctoria (L.) DC. plant. extract, onion oil extract obtained from Allium cepa L. plant, thickener Beeswax in the form of a melted fat phase, from Pinus spp., Pinus palustris or Pinus Pine turpentine oil, obtained from the Pinaster plant, acts as an auxiliary oil phase. paraffin, St. John's wort oil extract obtained from Hypericum perforatum L. plant Thanks to the presence of all its components together, it provides pain control and antimicrobial properties. Both effect and tissue repair are optimized simultaneously. State of the Art With current technology, wound and burn creams containing herbal ingredients promote tissue regeneration. to accelerate, reduce inflammation and provide antimicrobial protection Topical pharmaceuticals containing various plant extracts, essential oils, and natural polymers. It consists of dermocosmetic compositions, commonly containing Aloe vera, Calendula officinalis, Centella asiatica, Hypericum perforatum, Lavandula angustifolia, Nigella sativa, propolis, olive leaf extract, and pine resin are among the components used to treat wounds. Their healing-promoting effects are utilized. These products generally... To increase antioxidant capacity, flavonoids, phenolic compounds, terpenoids, Plant fractions containing saponins and alkaloids; moisture retention and barrier formation. for this purpose beeswax, shea butter, coconut oil, jojoba oil and glycerol, etc. Carriers; carbomer, xanthan gum, to provide viscosity and stability, It is also used to reduce the risk of infection using natural herbal ingredients. In addition to their antimicrobial effects, zinc oxide, silver ions, honey derivatives, or propolis Synergistic formulations are created with fractions. However, it is known that... A significant portion of the formulations experience a decrease in the stability of heat-sensitive plant active ingredients. Inability to achieve controlled release, limited skin penetration, oxidative degradation, decrease in the amount of active ingredient in the product over time, oily residue on the skin surface such as leaving a film or failing to achieve a sufficient level of antimicrobial activity 1 It carries problems and therefore the current technique is active in multi-component plant systems. long-lasting, maintaining component stability, and providing effective penetration into subcutaneous layers. timed and controlled release, resistant to oxidative degradation and clinically significant This reveals the need for new compositions that exhibit wound / burn healing activity. It places. The treatment approach for skin burns varies depending on the depth and extent of the burn. Together, the primary goals are to prevent infection, support epithelialization, and The goal is to control the pain. First, the burned area should be cleaned, and if necessary... The goal is to create a moist wound environment. In severe burns, grafting and... While reconstructive surgery may be necessary, other procedures can be performed. In superficial burns, however... Topical treatments are prioritized. Topical treatments that support epithelialization after skin burns. These products primarily include hydrogel-based dressings and creams containing hyaluronic acid. Sprays containing epidermal growth factor (EGF) and collagen-based products, Centella Ointments containing asiatica extract and creams with silver sulfadiazine have similar properties. These are products. These agents accelerate wound healing and reduce scar formation. It helps. It is also among the topical agents used to reduce pain sensation. Local anesthetics such as lidocaine and prilocaine, as well as products containing menthol and capsaicin. They are found in some modern wound dressings that have both cooling and pain-relieving properties. It carries. In recent years, antimicrobial coatings containing silver nanoparticles, in particular, biodegradable hydrogel-based drug delivery systems, artificial skin-like biomaterials, and Growth factor-releasing nanotechnology dressings are known in current technology. These applications are among those that optimize wound healing and It includes advanced solutions developed to reduce complications. Traditional medicines and herbal mixtures are used in the treatment of burns, and In the products in which it was tested, inadequate epithelialization, delayed tissue repair, insufficient analgesia, allergic reactions occurred. There are problems, primarily reactions and skin sensitivity. Furthermore, in our country... Its flora is very rich in medicinal plants, and these plants are used in the treatment of burns and wounds. a comprehensive study evaluating the effects on, examining both efficacy and toxicity together, the lack of sufficient preclinical studies and consequently the conversion rate to product The very low levels indicate that our flora is not being adequately evaluated in medical research. It shows. 2 Skin burn in patent application number CN107519319A under the known state of the art. The aim is to accelerate the epithelialization process. This document discusses burns. The cream contains ingredients such as pine oil, tea tree oil, watermelon rind, bamboo leaf, and pine needle. It contains various plant-based ingredients and auxiliary components such as onion oil. However The cream in question has a multi-purpose profile that includes food and cosmetic uses. Despite being a mixture recipe, medical formulation standardization, carrier phase No optimization or pharmacodynamic evaluation is described. Its effect on accelerating epithelialization is insufficient. The limitations and inadequacies of current technological solutions in wound and burn treatment stability of active ingredients in herbal creams developed for this purpose inability to protect, inability to ensure controlled and long-term release, dermal Limited penetration, decreased effectiveness due to oxidative degradation, standardization The fact that unprocessed multipurpose mixtures do not qualify as medical formulations, The presence of ingredients that do not clinically significantly accelerate epithelialization, Due to the lack of preclinical data, the therapeutic potential of the plant flora in our country is not known. insufficient evaluation and lack of pain control and antimicrobial effect of existing products and for reasons such as its inability to optimize tissue repair simultaneously, there is a lack of expertise in this field. Improvements are needed. Brief Description and Objectives of the Invention The invention relates to a wound and burn cream with herbal ingredients. The cream in question contains Olea. In oil phase form, acting as a carrier oil, obtained from the plant europaea L. olive oil, derived from the root of the Alkanna tinctoria (L.) DC. plant. extract, onion oil extract obtained from Allium cepa L. plant, thickener Beeswax in the form of a melted fat phase, from Pinus spp., Pinus palustris or Pinus Pine turpentine oil, obtained from the Pinaster plant, acts as an auxiliary oil phase. paraffin, St. John's wort oil extract obtained from Hypericum perforatum L. plant Thanks to the presence of all its components together, it provides pain control and antimicrobial properties. Both effect and tissue repair are optimized simultaneously. One aim of the invention is to improve the formulation seen in herbal wound and burn creams. by eliminating its variability, it can be scientifically replicated, standardized, and Herbal wound and treatment products with a composition that can be analyzed at the molecular level. 3 The invention concerns the development of a burn cream. The subject of the invention is a wound and burn cream with herbal ingredients. pine turpentine, Allium cepa, Alkanna tinctoria, Hypericum perforatum, Olea europaea a seven-component mixture consisting of oil, beeswax, and liquid paraffin in specific proportions By combining them, both pharmacodynamic synergies are created and scientific benefits are gained. It provides the appropriate analytical clarity for evaluation. Thus, the wound and Burn cream is scientifically replicable, standardized, and produced at the molecular level. It has an analyzable composition. Another aim of the invention is to improve epithelial cell regeneration after wounds and burns. herbal-based wound and burn treatments that accelerate the healing process and significantly shorten it. The cream is being developed. Here, the abbreviation clearly refers to the indication. Compared to other available medications, the usual treatment duration is shorter. This is ensured within it. In preliminary experimental studies, from the beginning of the application... It has been determined that the effects have the potential to manifest within seven days. Wound It is achieved through the additive effect of the components that contribute to its improvement. The aim is to stimulate fibroblasts and collagen production through the plant-based components included in the formulation. synergistic combination of increased synthesis and tissue repair accelerating effects This is achieved through this structure. Thanks to this structure, epithelialization delay is prevented and Tissue regeneration is supported. Another aim of the invention is to address the issues that arise during the acute burn phase and make treatment more difficult. The goal is to develop a herbal wound and burn cream that locally reduces pain sensation. The wound and burn cream with plant-based ingredients that is the subject of this invention contains Allium cepa, The analgesic and neuromodulatory effects of Hypericum perforatum and pine turpentine are explained here. This ensures the achievement of the objective. Thus, user comfort is increased. The recovery process is made more tolerable. Another aim of the invention is to reduce the risk of infection, which is frequently encountered in wound and burn areas. The goal is to develop a herbal wound and burn cream that has been reduced in volume. The cream in question... The strong antimicrobial activities of plant-based ingredients and the olive oil-beeswax base The protective barrier effect effectively achieves this goal. This feature improves performance. It speeds up the healing process and significantly reduces the risk of complications. 4 Another aim of the invention is to address the issues seen in existing topical products in the field of wound and burn creams. Allergic reactions caused by parabens, synthetic dyes, and chemical moisturizers. The goal is to eliminate it completely. This objective is achieved by making the formulation completely natural. It is made up of these components and is safe for use on sensitive skin types. By offering this option, it minimizes the risk of irritation. Another aim of the invention is to reduce scarring after burns, resulting in a more aesthetically pleasing appearance. The goal is to achieve a satisfactory recovery. The ingredients of the cream in question... Plant-based components have anti-inflammatory, fibroblast regulating, and collagen-building properties. The effects that optimize this goal are achieved by treating only the recovery time. It not only improves the quality of recovery, but also enhances it. Another aim of the invention is to achieve pain control, antimicrobial effect and tissue repair simultaneously. The goal is to develop a plant-based wound and burn cream that can optimize treatment. The cream in question... It contains pine turpentine, onion (Allium cepa L.), and hawthorn root (Alkanna tinctoria). (L.) DC.), St. John's wort oil (Hypericum perforatum L.), olive oil (Olea europaea L.), Beeswax and liquid paraffin, thanks to the presence of all their components together, provide pain relief. Control, antimicrobial effect, and tissue repair are optimized simultaneously. Another purpose of the invention is in the care and protection of dry, cracked, and split leather. and a wound that allows for rapid and orderly development of epithelialization after minor surgery and the development of burn cream. Detailed Description of the Invention The invention relates to a wound and burn cream with herbal ingredients. The cream in question contains Olea. In oil phase form, acting as a carrier oil, obtained from the plant europaea L. olive oil, derived from the root of the Alkanna tinctoria (L.) DC. plant. extract, onion oil extract obtained from Allium cepa L. plant, thickener Beeswax in the form of a melted fat phase, from Pinus spp., Pinus palustris or Pinus Pine turpentine oil, obtained from the Pinaster plant, acts as an auxiliary oil phase. paraffin, St. John's wort oil extract obtained from Hypericum perforatum L. plant Thanks to the presence of all its components together, it provides pain control and antimicrobial properties. The effect and tissue repair are optimized simultaneously. The subject of this invention is a wound and burn cream. pine turpentine, Allium cepa, Alkanna tinctoria, Hypericum perforatum, Olea europaea oil, beeswax, liquid paraffin, and seven specific components in particular are used in specific scientific studies. The fact that it is a repeatable formulation due to its combination in specific ratios, molecular enabling quantitative analysis at the targeted level, in wound and burn treatment. By providing a technical advantage in developing targeted therapies, pharmacodynamic It creates a synergistic relationship. The wound and burn cream that is the subject of this invention is pine turpentine. - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. olive oil in this form, - Alkanna tinctoria (L.) DC. root oil extract, - Onion oil extract obtained from the Allium cepa L. plant, - Beeswax in the form of a melted fat phase acting as a thickening agent, - Pine obtained from Pinus spp., Pinus palustris or Pinus pinaster plants. turpentine oil, - paraffin in the role of auxiliary oil phase, - St. John's wort oil extract obtained from the Hypericum perforatum L. plant, It includes. One application of the invention is in wound and burn cream; - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 70% olive oil by volume. - 2% by volume of alkanna tinctoria (L.) DC. root extract. oil extract, - 4% by volume onion oil extract obtained from the Allium cepa L. plant, - 3% beeswax by volume in the form of melted fat phase, acting as a thickening agent. - By volume obtained from Pinus spp., Pinus palustris or Pinus pinaster plants. 5% pine turpentine oil, - 11% paraffin by volume in the auxiliary oil phase, - 5% by volume St. John's wort oil obtained from Hypericum perforatum L. plant. extract, It includes. 6 One application of the invention is in wound and burn cream; - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 35-50% olive oil by weight. - 0.5-3% by weight of mercury obtained from Alkanna tinctoria (L.) DC. plant. root oil extract, - 10-30% by weight onion oil extract obtained from the Allium cepa L. plant, - 1-5% beeswax by weight in the form of melted fat phase, acting as a thickening agent. - Obtained by weight from Pinus spp., Pinus palustris or Pinus pinaster plants. 15-30% pine turpentine oil, - 3-10% paraffin by weight in the auxiliary oil phase - 1-5% by weight of St. John's wort obtained from Hypericum perforatum L. plant. oil extract, It includes. One application of the invention is in wound and burn cream; - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 40-45% olive oil by weight. - 1-1.5% by weight of mercury extract obtained from Alkanna tinctoria (L.) DC. root oil extract, - 20-25% by weight onion oil extract obtained from the Allium cepa L. plant, - 1-2% beeswax by weight in the form of melted fat phase, acting as a thickening agent. - Obtained by weight from Pinus spp., Pinus palustris or Pinus pinaster plants. 20-25% pine turpentine oil, - 3-10% paraffin by weight in the auxiliary oil phase - 2-3% by weight of St. John's wort obtained from Hypericum perforatum L. plant. oil extract, It includes. Another application of the invention is in wound and burn cream; - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 1000 cc olive oil, 7 - 30 grams of Alkanna tinctoria (L.) DC. root oil extract, - 600 grams of onion oil extract obtained from the Allium cepa L. plant, - 30 grams of beeswax in the form of melted fat phase, acting as a thickening agent. - 500 grams obtained from Pinus spp., Pinus palustris or Pinus pinaster plants. pine turpentine oil, - 100 grams of paraffin acting as an auxiliary oil phase, - 500 cc of St. John's wort oil obtained from Hypericum perforatum L. plant. extract, It includes. In all applications of the invention, the content of the wound and burn cream in question... Whether the components are by weight or volume, the total percentage value of the components. It is present in the formulation to the extent that it reaches one hundred percent. Table 1. Sample prescription for wound and burn cream related to the invention. Material Content Source Name Quantity 1. Olea europaea L. Olive oil 1000 cc 2. Alkanna tinctoria (L.) DC. Fenugreek root 30 g 3. Allium cepa L. Onion 600 g 4. Beeswax 30 g 5. Pine turpentine 500 g 6. Paraffin 100 g 7. Hypericum perforatum L. St. John's Wort Oil 50 cc The invention concerns a wound and burn cream, a plant-based burn cream with high regenerative effect. by preventing the delay of epithelialization, thus promoting epithelial cell proliferation. It supports and accelerates the healing process by shortening the recovery period. Skin One of the most important problems encountered in the acute phase of burns is pain control. The inability to control it. The compounds in the wound and burn cream that is the subject of the invention are local. It significantly reduces pain through its analgesic effect. It helps alleviate the most important complications of burns. 8 The risk of infection at the beginning is reduced by the combined effect of the prepared herbal products. This is among its most important advantages. Shortening the wound healing process is natural. This also reduces this risk. The topical agents used in the treatment of burns contain... Various parabens, synthetic dyes and moisturizers cause allergic reactions in users. These reactions can even cause skin irritation. The subject of this invention is wounds and burns. The cream is completely natural and does not cause these kinds of problems. It also helps with burns. Depending on the degree of burn after treatment, aesthetic concerns caused by scarring on the skin With regards, an aesthetic improvement is also achieved with the formula developed in the invention. In addition The raw materials included in the wound and burn cream that is the subject of this invention are available in our country. The fact that it is plant-based, locally sourced, and made from sustainable raw materials is a significant advantage. The invention relates to plants used in traditional or complementary medicine in the field of human health. their extracts, local conditions frequently encountered in both childhood and adulthood in the community. Burn cases can lead to health threats and also advanced, whole-body injuries. in preventing complications that may develop as a result of burns, and even death It is a product that introduces a new treatment option. The invention is primarily aimed at clinicians and primary healthcare professionals. Scientists, pharmacologists, pharmacists, and researchers conducting research on this topic by leading the way for many other scientists, it will be included as a new option in treatment. It has potential. The pine turpentine mentioned in the invention is from Pinus palustris or Pinus It is a resin obtained from the cones of pinaster conifers. The invention... The topic is wound and burn cream for first and second-degree burns, and superficial skin injuries such as scratches and cuts. skin care and protection (re-epithelialization) in skin lesions and pressure ulcers It provides. The wound and burn cream mixture that is the subject of the invention was developed by Arunachalam K. and colleagues [1] It is prepared by modifying the method. The production method of the wound and burn cream that is the subject of the invention; i. preparation of the base ointment, ii. obtained separately from Pinus spp., Pinus palustris or Pinus pinaster plants. pine turpentine oil, onion oil obtained from the Allium cepa L. plant The extract is obtained from the root of the Alkanna tinctoria (L.) DC. plant. oil extract, St. John's wort obtained from Hypericum perforatum L. plant. oil extract, acting as a carrier oil obtained from the plant Olea europaea L. Preparation of an extract mixture containing olive oil in oil phase form, 9 iii. With the base ointment prepared in step (i) of procedure (ii) The extract mixture obtained in this step is mixed to make wound and burn cream. obtaining, It includes the steps involved in the process. In one application of the invention, the method of producing wound and burn cream is numbered (i). Preparation of the base ointment in the treatment step, i. Mixing solid paraffin with cetostearyl alcohol and boiling it over a water bath. melting, ii. Lanolin and white soft paraffin are added to the melted mixture, and then all stirring the components in a water bath until they dissolve, iii. the base is obtained by stirring the mixture taken from the water bath until it cools. obtaining the ointment, It includes the steps involved in the process. One application of the invention is a method for producing wound and burn cream; i. Mixing solid paraffin with cetostearyl alcohol in a water bath melting on it, ii. Lanolin and white soft paraffin are added to the melted mixture, and then all stirring the components in a water bath until they dissolve, iii. the mixture taken from the water bath until it cools down obtaining the base ointment by mixing, iv. Pinus spp., Pinus palustris or Pinus pinaster in a separate location Pine turpentine oil is obtained from the plant Allium cepa L. Onion oil extract obtained from the plant, Alkanna tinctoria (L.) Oil extract of the root of the hawthorn plant, obtained from the DC plant, St. John's wort obtained from the Hypericum perforatum L. plant. oil extract, carrier obtained from the plant Olea europaea L. extract containing olive oil in oil phase form in oil function preparation of the mixture, v. (iii) with the base ointment obtained in step (iv) the extract mixture obtained in step number by mixing them to obtain wound and burn cream, It includes the steps involved in the process. The production method of the wound and burn cream that is the subject of the invention; i. Mixing 5 g of solid paraffin with 5 g of cetostearyl alcohol in a water bath. melting on it, ii. To the melted mixture, 5 g of lanolin and 85 g of white soft paraffin are added. stirring in a water bath until all components are dissolved, iii. the base is obtained by stirring the mixture taken from the water bath until it cools. obtaining the ointment, iv. from Pinus spp., Pinus palustris or Pinus pinaster plants in a separate location The pine turpentine oil obtained is derived from the Allium cepa L. plant. Onion oil extract, obtained from the plant Alkanna tinctoria (L.) DC. Oil extract of Hypericum perforatum L. root, from the plant. The resulting St. John's wort oil extract is obtained from the Olea europaea L. plant. The resulting carrier oil contains olive oil in its oil phase form. Preparation of the extract mixture, v. With the 50 g base ointment obtained in step (iii) of the procedure (iv) The 50 g extract mixture obtained in step number [number] is mixed. Obtaining a wound and burn cream with a 50% by weight concentration. It includes the steps involved in the process. In one application of the production method of the wound and burn cream which is the subject of the invention, numbered (i) in step (ii) solid paraffin and white soft paraffin in step (ii) The difference is that the white soft paraffin is soluble. Process (ii) In this step, the mixing process in the water bath is mechanical mixing. Mixing speed It is not standard. In one application of the production method of the wound and burn cream which is the subject of the invention, number (iii) he During the cooling process step, the temperature is cooled down to 26°C. Stostearil is used in one application of the production method of the wound and burn cream that is the subject of this invention. The alcohol is dissolved in a porcelain capsule in a water bath. The herbal wound and burn cream that is the subject of this invention has both therapeutic efficacy and benefits for the patient. With its natural formulation that aligns with expectations, it appeals to the pharmaceutical industry group. Thanks to these features, the product has achieved high commercial success both nationally and internationally. 11 It has potential. In the field of medical cosmetics and dermocosmetics, it is herbal but clinical. It has the potential to be included in the effective product group. The subject of this invention is a herbal wound and burn cream, especially for skin burns caused by boiling water. biochemical and molecular basis of epithelial cell regeneration in injury This allows for the mechanistic demonstration. Experimental preliminary studies for the cream in question. he In the studies, tests were conducted on boiling water burns at 95-100°C, and regionally... It is also effective for skin ulcers (bedsores) and sunburns. The herbal wound and burn cream that is the subject of this invention is referred to as Madecassol with pharmaceutical reference. They have comparable characteristics. In the preliminary experimental study, they had similar content. It was compared with Madecassol, a product (with plant-based ingredients). The plant-based ingredient that is the subject of the invention... Wound and burn cream shows reproducible results under experimental conditions. This provides quantitative analysis at the molecular level of the formulation of the cream in question. This allows for evaluation. Data obtained from the invention. Deep biological meanings and mechanistic interpretations can be derived from it. The invention, development of targeted therapy strategies specific to the relevant biological processes It also offers opportunities. In one application of the invention, the subject is a herbal wound and burn cream, with standard subjects. Standard water is formed on it at a temperature of 94 °C, a contact time of 17 seconds, and a diameter of 2 cm. The burn model is being applied in a reproducible manner and reliable results are being obtained. The rats used in the experiment, both standard subjects and living subjects, are kept alive. It is stated that the conditions are similar, including the boiling water burn model. It is repeatable according to standards and is frequently preferred in skin burn models. The invention provides for the analysis of enzyme-linked immunosorbents at the tissue level. Immunosorbent Assay (ELISA), histopathological examination and quantitative analysis at the molecular level. It allows for analysis of the mechanistic effects related to the healing process. This makes it possible to demonstrate the multiple biochemical processes achieved through the invention. Analyses and correlation tests provide in-depth insights into biological processes. This invention enables the development of ROS / NF- at the cellular level. Investigating the mechanisms of κB / MMP-2 / 9 has implications for related pathophysiological processes. This axis enables the development of targeted treatment strategies. 12 Combined examination reveals that oxidative stress activates inflammatory signaling pathways in tissues. that it causes destruction and damage; with MMP-2 / 9 reduction when ROS and NF-κB are suppressed. This indicates that a tissue-protective effect has occurred. 13 REFERENCES [1] Arunachalam K, Parimelazhagan T. Anti-inflammatory, wound healing and in-vivo antioxidant properties of the leaves of Ficus amplissima Smith. J Ethnopharmacol. 2013 Jan 9;145(1):139-45). 14
Claims
1. It is a herbal wound and burn cream with the following features: - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. olive oil in this form, - Alkanna tinctoria (L.) DC. root oil extract, - Onion oil extract obtained from the Allium cepa L. plant, - Beeswax in the form of a melted fat phase acting as a thickening agent, - Pine obtained from Pinus spp., Pinus palustris or Pinus pinaster plants. turpentine oil, - paraffin in the role of auxiliary oil phase, - St. John's wort oil extract obtained from the Hypericum perforatum L. plant, It includes.
2. According to claim 1, it is a herbal wound and burn cream with the following properties: - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 70% olive oil by volume. - 2% by volume of alkanna tinctoria (L.) DC. root extract. oil extract, - 4% by volume onion oil extract obtained from the Allium cepa L. plant, - 3% beeswax by volume in the form of melted fat phase, acting as a thickening agent. - By volume obtained from Pinus spp., Pinus palustris or Pinus pinaster plants. 5% pine turpentine oil, - 11% paraffin by volume in the auxiliary oil phase, - 5% by volume St. John's wort oil obtained from Hypericum perforatum L. plant. extract, It includes.
3. According to claim 1, it is a herbal wound and burn cream with the following properties: - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 35-50% olive oil by weight. - 0.5-3% by weight of mercury obtained from Alkanna tinctoria (L.) DC. plant. root oil extract, - 10-30% by weight onion oil extract obtained from the Allium cepa L. plant, - 1-5% beeswax by weight in the form of melted fat phase, acting as a thickening agent. - Obtained by weight from Pinus spp., Pinus palustris or Pinus pinaster plants. 15-30% pine turpentine oil, - 3-10% paraffin by weight in the auxiliary oil phase. - 1-5% by weight of St. John's wort obtained from Hypericum perforatum L. plant. oil extract, It includes.
4. According to claim 3, it is a herbal wound and burn cream with the following properties: - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 40-45% olive oil by weight. - 1-1.5% by weight of mercury extract obtained from Alkanna tinctoria (L.) DC. root oil extract, - 20-25% by weight onion oil extract obtained from the Allium cepa L. plant, - 1-2% beeswax by weight in the form of melted fat phase, acting as a thickening agent. - Obtained by weight from Pinus spp., Pinus palustris or Pinus pinaster plants. 20-25% pine turpentine oil, - 3-10% paraffin by weight in the auxiliary oil phase. - 2-3% by weight of St. John's wort obtained from Hypericum perforatum L. plant. oil extract, It includes.
5. According to claim 1, it is a herbal wound and burn cream with the following properties: - Oil phase acting as a carrier oil obtained from the plant Olea europaea L. in the form of 1000 cc olive oil, - 30 grams of Alkanna tinctoria (L.) DC. root oil extract, - 600 grams of onion oil extract obtained from the Allium cepa L. plant, - 30 grams of beeswax in the form of melted fat phase, acting as a thickening agent. - 500 grams obtained from Pinus spp., Pinus palustris or Pinus pinaster plants. pine turpentine oil, - 100 grams of paraffin acting as an auxiliary oil phase, - 500 cc of St. John's wort oil obtained from Hypericum perforatum L. plant. extract, It includes. 16 6. Method of manufacturing a herbal wound and burn cream according to any of claims 1-5. and its characteristic is; i. preparation of the base ointment, ii. obtained separately from Pinus spp., Pinus palustris or Pinus pinaster plants. pine turpentine oil, onion oil obtained from the Allium cepa L. plant The extract is obtained from the root of the Alkanna tinctoria (L.) DC. plant. oil extract, St. John's wort obtained from Hypericum perforatum L. plant. oil extract, carrier oil obtained from Olea europaea L. plant. in its function, an extract mixture containing olive oil in oil phase form preparation, iii. With the base ointment prepared in step (i) of procedure (ii) The extract mixture obtained in this step is mixed to make wound and burn cream. obtaining, It includes the steps involved in the process.
7. A method according to claim 6, the characteristic of which is; in step (i) the base ointment preparation, i. Mixing solid paraffin with cetostearyl alcohol and boiling it over a water bath. melting, ii. Lanolin and white soft paraffin are added to the melted mixture, and all components are combined. stirring in a water bath until it melts. iii. the base is obtained by stirring the mixture taken from the water bath until it cools. obtaining the ointment, It includes the steps of the process.
8. Method of manufacturing a herbal wound and burn cream according to any of claims 1-5. and its characteristic is; i. Mixing solid paraffin with cetostearyl alcohol and boiling it over a water bath. melting, ii. Lanolin and white soft paraffin are added to the melted mixture, and all components are combined. stirring in a water bath until it melts. iii. the base is obtained by stirring the mixture taken from the water bath until it cools. obtaining the ointment, iv. obtained separately from Pinus spp., Pinus palustris or Pinus pinaster plants. pine turpentine oil, onion oil obtained from the Allium cepa L. plant 17 The extract is obtained from the root of the Alkanna tinctoria (L.) DC. plant. oil extract, St. John's wort obtained from Hypericum perforatum L. plant. oil extract, carrier oil obtained from Olea europaea L. plant. in its function, an extract mixture containing olive oil in oil phase form preparation, v. The base ointment obtained in step (iii) of procedure and procedure (iv) The extract mixture obtained in this step is mixed to make wound and burn cream. obtaining, 9. This is a method for producing a herbal wound and burn cream according to claim 8, and its characteristics are: i. Mixing 5 g of solid paraffin with 5 g of cetostearyl alcohol and boiling it over a water bath. melting, ii. To the melted mixture, 5 g of lanolin and 85 g of white soft paraffin are added... stirring the components in a water bath until they dissolve, iii. the base is obtained by stirring the mixture taken from the water bath until it cools. obtaining the ointment, iv. obtained separately from Pinus spp., Pinus palustris or Pinus pinaster plants. pine turpentine oil, onion oil obtained from the Allium cepa L. plant The extract is obtained from the root of the Alkanna tinctoria (L.) DC. plant. oil extract, St. John's wort obtained from Hypericum perforatum L. plant. oil extract, carrier oil obtained from Olea europaea L. plant. in its function, an extract mixture containing olive oil in oil phase form preparation, v. With the 50 g base ointment obtained in step (iii) of the procedure (iv) In the processing step, 50 g of the extract mixture obtained is mixed and reduced by weight to % Obtaining a 50% wound and burn cream, It includes the steps of the process.
10. A method according to any of claims 7-9, and its characteristic is operation number (iii). he The cooling step involves cooling the temperature down to 26°C. 18