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用于促进头发生长的生物活性化合物负载纳米载体:现状与未来展望

Bioactive Compound-Loaded Nanocarriers for Hair Growth Promotion: Current Status and Future Perspectives.

作者信息

Sharma Arvind, Mohapatra Harapriya, Arora Kanika, Babbar Ritchu, Arora Rashmi, Arora Poonam, Kumar Pradeep, Algın Yapar Evren, Rani Kailash, Meenu Maninder, Babu Marianesan Arockia, Kaur Maninderjit, Sindhu Rakesh K

机构信息

School of Pharmaceutical and Health Sciences, Bhoranj (Tikker-Kharwarian), Hamirpur 176041, India.

Chitkara College of Pharmacy, Chitkara University, Rajpura 140401, India.

出版信息

Plants (Basel). 2023 Oct 31;12(21):3739. doi: 10.3390/plants12213739.

Abstract

Hair loss (alopecia) has a multitude of causes, and the problem is still poorly defined. For curing alopecia, therapies are available in both natural and synthetic forms; however, natural remedies are gaining popularity due to the multiple effects of complex phytoconstituents on the scalp with fewer side effects. Evidence-based hair growth promotion by some plants has been reported for both traditional and advanced treatment approaches. Nanoarchitectonics may have the ability to evolve in the field of hair- and scalp-altering products and treatments, giving new qualities to hair that can be an effective protective layer or a technique to recover lost hair. This review will provide insights into several plant and herbal formulations that have been reported for the prevention of hair loss and stimulation of new hair growth. This review also focuses on the molecular mechanisms of hair growth/loss, several isolated phytoconstituents with hair growth-promoting properties, patents, in vivo evaluation of hair growth-promoting activity, and recent nanoarchitectonic technologies that have been explored for hair growth.

摘要

脱发有多种原因,而且这个问题仍未得到明确界定。对于脱发的治疗,既有天然疗法也有合成疗法;然而,由于复杂植物成分对头皮具有多种功效且副作用较少,天然疗法正越来越受欢迎。对于传统和先进的治疗方法,均有报道称某些植物具有循证促发生发的作用。纳米结构技术或许有能力在头发及头皮改善产品和治疗领域取得进展,赋予头发新的特性,使其成为有效的保护层或一种恢复脱发的技术。本综述将深入探讨几种已报道的用于预防脱发和促进头发生长的植物及草药配方。本综述还聚焦于头发生长/脱发的分子机制、几种具有促发生长特性的分离植物成分、专利、促发生长活性的体内评估,以及已探索用于头发生长的最新纳米结构技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8db7/10649697/686ebba5f98a/plants-12-03739-g001.jpg

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