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重新剖析合成糖皮质激素诱导的亮氨酸拉链融合肽作为一种新型有效的头发生长促进剂。

Reprofiling synthetic glucocorticoid-induced leucine zipper fusion peptide as a novel and effective hair growth promoter.

作者信息

Naeini Sahar Emami, Bhandari Bidhan, Gouron Jules, Rogers Hannah M, Chagas Pablo Shimaoka, Naeini Golnaz Emami, Chagas Henrique Izumi Shimaoka, Khodadadi Hesam, Salles Évila Lopes, Seyyedi Mohammad, Yu Jack C, Grochowska Beata K, Wang Lei P, Baban Babak

机构信息

DCG Center for Excellence in Research, Scholarship and Innovation (CERSI), Augusta University, Augusta, GA, USA.

Department of Oral Biology and Diagnostic Sciences, Dental College of Georgia, Augusta University, Augusta, GA, 30912, USA.

出版信息

Arch Dermatol Res. 2024 May 22;316(5):190. doi: 10.1007/s00403-024-02988-0.

Abstract

Hair is a biofilament with unique multi-dimensional values. In human, in addition to physiologic impacts, hair loss and hair related disorders can affect characteristic features, emotions, and social behaviors. Despite significant advancement, there is a dire need to explore alternative novel therapies with higher efficacy, less side effects and lower cost to promote hair growth to treat hair deficiency. Glucocorticoid-induced leucine zipper (GILZ) is a protein rapidly induced by glucocorticoids. Studies from our group and many others have suggested that a synthetic form of GILZ, TAT-GILZ, a fusion peptide of trans-activator of transcription and GILZ, can function as a potent regulator of inflammatory responses, re-establishing and maintaining the homeostasis. In this study, we investigate whether TAT-GILZ could promote and contribute to hair growth. For our pre-clinical model, we used 9-12 week-old male BALB/c and nude (athymic, nu/J) mice. We applied TAT-GILZ and/or TAT (vehicle) intradermally to depilated/hairless mice. Direct observation, histological examination, and Immunofluorescence imaging were used to assess the effects and compare different treatments. In addition, we tested two current treatment for hair loss/growth, finasteride and minoxidil, for optimal evaluation of TAT-GILZ in a comparative fashion. Our results showed, for the first time, that synthetic TAT-GILZ peptide accelerated hair growth on depilated dorsal skin of BALB/c and induced hair on the skin of athymic mice where hair growth was not expected. In addition, TAT-GILZ was able to enhance hair follicle stem cells and re-established the homeostasis by increasing counter inflammatory signals including higher regulatory T cells and glucocorticoid receptors. In conclusion, our novel findings suggest that reprofiling synthetic TAT-GILZ peptide could promote hair growth by increasing hair follicle stem cells and re-establishing homeostasis.

摘要

头发是一种具有独特多维价值的生物细丝。在人类中,除了生理影响外,脱发和与头发相关的疾病会影响特征、情绪和社会行为。尽管取得了重大进展,但迫切需要探索疗效更高、副作用更小且成本更低的替代新疗法,以促进头发生长来治疗脱发。糖皮质激素诱导亮氨酸拉链蛋白(GILZ)是一种由糖皮质激素快速诱导产生的蛋白质。我们团队和其他许多团队的研究表明,GILZ的一种合成形式TAT-GILZ,即转录激活因子与GILZ的融合肽,可作为炎症反应的有效调节剂,重建并维持体内平衡。在本研究中,我们调查了TAT-GILZ是否能够促进头发生长并对头发生长有作用。对于我们的临床前模型,我们使用了9至12周龄的雄性BALB/c和裸(无胸腺,nu/J)小鼠。我们将TAT-GILZ和/或TAT(载体)皮内注射到脱毛/无毛小鼠体内。通过直接观察、组织学检查和免疫荧光成像来评估效果并比较不同处理。此外,我们测试了两种目前用于脱发/生发的治疗药物非那雄胺和米诺地尔,以便以比较的方式对TAT-GILZ进行最佳评估。我们的结果首次表明,合成的TAT-GILZ肽加速了BALB/c脱毛背部皮肤的头发生长,并在本不应有毛发生长的无胸腺小鼠皮肤上诱导出毛发。此外,TAT-GILZ能够增强毛囊干细胞,并通过增加包括更高水平的调节性T细胞和糖皮质激素受体在内的抗炎信号来重建体内平衡。总之,我们的新发现表明,重新利用合成的TAT-GILZ肽可通过增加毛囊干细胞和重建体内平衡来促进头发生长。

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