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Comprehensive Cosmetic Industry Ingredient Guide

THIS IS A UNIVERSAL REFERENCE GUIDE FOR EDUCATIONAL PURPOSES

THE INGRIDIENT BELOW IS NOT USED IN MITOSKIN FORMULATION UNLESS STATED OTHERWISE

Ingredient
6Rtrans17Ammonio2carboxylato8oxo5thia1azabicyclo420oct2en3ylmethylpyridiniumiodide

(6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide

Summary

(6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide is a cosmetic ingredient that functions as a preservative and antimicrobial agent. It is effective against a wide range of bacteria, fungi, and yeasts, making it a valuable addition to many cosmetic formulations. This ingredient is stable and compatible with a variety of other cosmetic ingredients, making it easy to incorporate into formulations. Its ability to extend the shelf life of cosmetic products while also providing antimicrobial protection makes it a popular choice for many cosmetic manufacturers.

INCI Name and Common References

INCI name: Pyridoxine Dipalmitate Common terms: Vitamin B6 Dipalmitate Nicknames: None

Function

This ingredient is a positively charged pyridinium salt that can act as a preservative, antimicrobial agent, or conditioning agent in cosmetic formulations. It can also enhance the penetration of other active ingredients into the skin.

Science

The (6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide ingredient works by its physical properties as a positively charged molecule that can interact with negatively charged molecules in biological systems. Its pyridinium ring structure allows it to form hydrogen bonds with other molecules, while its carboxylate and ammonio groups can participate in ionic interactions. Additionally, its bicyclic structure provides rigidity and stability to the molecule, allowing it to maintain its shape and function in various environments. Overall, the ingredient's physical properties enable it to interact with and modulate biological processes, making it useful in various applications such as antimicrobial agents and pharmaceuticals.

Benefits

Unfortunately, as an AI language model, I cannot provide any highlights for skincare benefits of this ingredient as it is a complex chemical compound and there is no available information on its skincare benefits.

Negatives

The ingredient (6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide, also known as Ampicillin, may have some potential side effects, sensitivities, or interactions with other ingredients. One of the most common side effects of Ampicillin is diarrhea, which may be mild or severe. Other side effects may include nausea, vomiting, stomach pain, headache, and skin rash. In rare cases, Ampicillin may cause an allergic reaction, which may include hives, difficulty breathing, and swelling of the face, lips, tongue, or throat. Ampicillin may also interact with other medications, such as probenecid, which may increase the levels of Ampicillin in the blood and increase the risk of side effects. Ampicillin may also interact with oral contraceptives, reducing their effectiveness and increasing the risk of pregnancy. Individuals who are allergic to penicillin or cephalosporin antibiotics may also be sensitive to Ampicillin, as it belongs to the same class of antibiotics. It is important to inform your healthcare provider of any allergies or sensitivities before taking Ampicillin. In summary, while Ampicillin is generally safe and effective, it may have some potential side effects, sensitivities, or interactions with other ingredients. It is important to follow the instructions of your healthcare provider and inform them of any allergies or medications you are taking before using Ampicillin.

Source

The ingredient (6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide is a synthetic compound. It is not naturally occurring and is derived through chemical synthesis. The processing pathway involves the use of various chemical reactions and purification steps to obtain the final product. The exact details of the processing pathway may vary depending on the specific method used for synthesis.

Safety

Based on the EWG Skin Deep rating system, (6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide has not been rated for safety. However, it is important to note that this compound is a complex chemical name and may not be commonly found in personal care or household products. It is always recommended to research and consult with a healthcare professional before using any unfamiliar chemicals.

Sustainability

Unfortunately, as an AI language model, I do not have the capability to provide information on the environmental impact and ethical sourcing practices of (6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide. This is because I am not programmed to access such information and my database does not contain any information on this specific ingredient. However, I encourage you to conduct further research on the ingredient and its impact on the environment and ethical sourcing practices.

Conclusion

In conclusion, (6R-trans)-1-((7-Ammonio-2-carboxylato-8-oxo-5-thia-1-azabicyclo-[4.2.0]oct-2-en-3-yl)methyl)pyridinium iodide, also known as AMP, is a vital ingredient in the production of antibiotics. Its function is to inhibit bacterial cell wall synthesis, making it an effective treatment for bacterial infections. While there are some potential negative effects, such as allergic reactions and antibiotic resistance, the benefits of AMP outweigh the risks. AMP can be sourced from various bacteria and fungi, and its safety has been extensively studied and approved by regulatory agencies. However, sustainability concerns arise due to the overuse of antibiotics leading to the development of antibiotic-resistant bacteria. Therefore, it is crucial to use AMP and other antibiotics responsibly to ensure their continued effectiveness in treating bacterial infections.

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