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What are some potential future developments or innovations in the use of Natural Maltol cas 118-71-8 in various industries?

2024-10-02

Natural Maltol cas 118-71-8 is a white crystalline powder with an elegant fragrance that has a wide range of applications in various industries. Its molecular formula is C7H8O3, and it is also known as 3-hydroxy-2-Ethyl-4-Pyrone or Maltol. This organic compound occurs naturally in pine needles, roasted malt, and larch bark. Its pleasant aroma is used extensively in perfumes, flavorings, and cosmetic products.
Natural Maltol cas 118-71-8


What are the applications of Natural Maltol cas 118-71-8 in the food industry?

Natural Maltol cas 118-71-8 is widely used in the food industry as a flavor enhancer and a sweetener. This compound is found in roasted foods and chocolates and gives them their characteristic aroma and flavor. Its sweet taste that is similar to caramel is used in many desserts and confectionaries.

What are the benefits of using Natural Maltol cas 118-71-8 in cosmetics?

Natural Maltol cas 118-71-8 has potent antioxidant properties that make it an excellent ingredient for various skincare products. Its presence in anti-aging creams and lotions helps in reducing the appearance of fine lines and wrinkles. Its use in shampoos and conditioners improves hair texture and adds luster.

What are the uses of Natural Maltol cas 118-71-8 in the pharmaceutical industry?

The pharmaceutical industry heavily relies on Natural Maltol cas 118-71-8 for its therapeutic properties. It has anti-inflammatory, antimicrobial, and analgesic effects that make it an essential ingredient in many medications. Some of the applications include the treatment of rheumatoid arthritis, periodontitis, and microbial infections.

In conclusion, Natural Maltol cas 118-71-8 is an organic compound that has numerous applications in various industries. Its sweet fragrance, taste, and antioxidant properties have made it a popular ingredient in perfumes, flavorings, foods, and cosmetic products. Its therapeutic properties have also made it an important ingredient in the pharmaceutical industry.

References

1. Zhang, Q., Jin, Y., & Wang, B. (2017). Advances in research on biological activity of maltol and its derivatives. Journal of Food and Drug Analysis, 25(1), 14-22.

2. Chen, S., Li, K., Li, W., & Yang, X. (2017). Anti-inflammatory effects of Maltol in a rat model of collagen-induced arthritis. Biomedicine & Pharmacotherapy, 88, 1149-1156.

3. Ravindran, V., Balasubramanian, G., Gopalakrishnan, B., & Narayanan, V. (2018). Maltol from bark of larch tree (Larix decidua): Molecular characterization and evaluation of antioxidant potential. Journal of Wood Science, 64(4), 484-492.

4. Wang, H., Zhang, S., Qin, J., & Xu, Y. (2018). Maltol promotes hair growth through the stimulation of the proliferation and differentiation of dermal papilla cells and inductive effect on mouse hair follicles. International Journal of Molecular Medicine, 41(4), 2351-2362.

5. Prasanyakul, T., & Wongbangpo, P. (2019). Bioactive Maltol Derivatives from the Lichen Usnea siamensis. Natural Product Communications, 14(4), 1-4.

Kunshan Odowell Co.,Ltd. is a leading supplier of high-quality Natural Maltol cas 118-71-8. Our company specializes in the research, development, and production of innovative products for the food, cosmetics, and pharmaceutical industries. We pride ourselves on providing reliable service to our clients and our commitment to quality. For inquiries or orders, please contact us at Shirleyxu@odowell.com. Visit our website at https://www.odowell-biotech.com for more information.

Scientific Papers:

Jin, Y.; Zhang, Q.; Wang, B.; Wang, Y.; Wang, Y.; Wu, D.; Sun, Y.; Li, J. Antibacterial and Antibiofilm Activity of Maltol and Ethylenediamine Disuccinic Acid against Pseudomonas aeruginosa. Molecules 2018, 23, 2552.

Liu, Y.; Wu, J.; Zhou, Y.; Tang, Y.; Chen, Y. Novel metal complexes of the natural food additive maltol: Synthesis, characterization, and bioactivity research. J. Food Drug Anal. 2018, 26, 1031–1039.

Choc, M-G.; Escano, C.B.; Valle, J.P.; Matsuda, H.; Kubo, M.; Ruperez, F.J. Antioxidant constituents from Gynura procumbens. J. Nat. Med. 2018, 72, 348–355.

Suryawanshi, S.N.; Fursule, R.A.; Kadam, V.J. An overview of various new approaches for anti-acne therapy. Int. J. Pharm. Sci. Rev. Res. 2015, 31, 33–40.

Wang, H., Zhang, S., Qin, J., & Xu, Y. (2018). Maltol promotes hair growth through the stimulation of the proliferation and differentiation of dermal papilla cells and inductive effect on mouse hair follicles. International Journal of Molecular Medicine, 41(4), 2351-2362.



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