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β-连环蛋白激活及其相关细胞周期分子对 PGA 纳米粒包裹的 4HGF 的促毛发生长作用。

Hair Growth Promoting Effect of 4HGF Encapsulated with PGA Nanoparticles (PGA-4HGF) by β-Catenin Activation and Its Related Cell Cycle Molecules.

机构信息

Department of Food Science and Biotechnology, College of BioNano Technology, Gachon University, Gyeonggi-do 13120, Korea.

Department of BioNano Technology, College of BioNano Technology, Gachon University, Gyeonggi-do 13120, Korea.

出版信息

Int J Mol Sci. 2019 Jul 13;20(14):3447. doi: 10.3390/ijms20143447.

Abstract

Poly-γ-glutamic acid (γ-PGA)-based nanoparticles draw remarkable attention as drug delivery agents due to their controlled release characteristics, low toxicity, and biocompatibility. 4HGF is an herbal mixture of grown on germinated brown rice, grown on germinated soybeans, , , and oil. Here, we encapsulated 4HGF within PGA-based hydrogel nanoparticles, prepared by simple ionic gelation with chitosan, to facilitate its penetration into hair follicles (HFs). In this study, we report the hair promoting activity of 4HGF encapsulated with PGA nanoparticles (PGA-4HGF) and their mechanism, compared to 4HGF alone. The average size of spherical nanoparticles was ~400 nm in diameter. Continuous release of PGA-4HGF was observed in a simulated physiological condition. As expected, PGA-4HGF treatment increased hair length, induced earlier anagen initiation, and elongated the duration of the anagen phase in C57BL/6N mice, compared with free 4HGF treatment. PGA-4HGF significantly increased dermal papilla cell proliferation and induced cell cycle progression. PGA-4HGF also significantly increased the total amount of β-catenin protein expression, a stimulator of the anagen phase, through induction of cyclinD1 and CDK4 protein levels, compared to free 4HGF treatment. Our findings underscore the potential of PGA nanocapsules to efficiently deliver 4HGF into HFs, hence promoting hair-growth. Therefore, PGA-4HGF nanoparticles may be promising therapeutic agents for hair growth disorders.

摘要

聚γ-谷氨酸(γ-PGA)基纳米粒子因其控制释放特性、低毒性和生物相容性而作为药物递送剂引起了人们的极大关注。4HGF 是一种草药混合物,由发芽糙米上生长的 、发芽大豆上生长的 、 、 和 油组成。在这里,我们将 4HGF 封装在基于 PGA 的水凝胶纳米粒子中,通过与壳聚糖的简单离子凝胶化来制备,以促进其渗透到毛囊(HFs)中。在这项研究中,我们报告了用 PGA 纳米粒子(PGA-4HGF)封装的 4HGF 的促毛发生长活性及其与单独的 4HGF 相比的机制。球形纳米粒子的平均粒径约为 400nm。在模拟生理条件下观察到 PGA-4HGF 的持续释放。正如预期的那样,与单独使用 4HGF 相比,PGA-4HGF 处理可增加毛发生长,更早地诱导毛囊进入生长期,并延长生长期。与单独使用 4HGF 相比,PGA-4HGF 还显著增加了真皮乳头细胞的增殖,并诱导了细胞周期进程。PGA-4HGF 还通过诱导 cyclinD1 和 CDK4 蛋白水平,显著增加了总β-连环蛋白蛋白表达量,这是生长期的刺激物,与单独使用 4HGF 处理相比。我们的研究结果强调了 PGA 纳米胶囊将 4HGF 有效递送到 HFs 中从而促进毛发生长的潜力。因此,PGA-4HGF 纳米粒子可能是治疗毛发疾病的有前途的治疗剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a618/6678797/c752fd627c1e/ijms-20-03447-g001.jpg

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