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通过分子修饰增强抗皱肽的皮肤渗透。

Enhanced Skin Permeation of Anti-wrinkle Peptides via Molecular Modification.

机构信息

Department of Pharmacy, Faculty of Science, National University of Singapore, Singapore, 117543, Singapore.

Department of Pharmacy, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.

出版信息

Sci Rep. 2018 Jan 25;8(1):1596. doi: 10.1038/s41598-017-18454-z.

Abstract

Wrinkles can have a negative effect on quality of life and Botox is one of the most effective and common treatments. Argireline (Arg0), a mimetic of Botox, has been found to be safer than Botox and effective in reducing wrinkles, with efficacies up to 48% upon 4 weeks of twice daily treatment. However, the skin permeation of Arg0 is poor, due to its large molecular weight and hydrophilicity. Arg0 exists in zwitterionic form and this charged state hindered its skin permeation. Chemical modification of the peptide structure to reduce the formation of zwitterions may result in increased skin permeability. We investigated a total of 4 peptide analogues (Arg0, Arg1, Arg2, Arg3), in terms of skin permeation and wrinkle reduction. The 4 peptides were dissolved in various propylene glycol and water co-solvents. Enhanced human skin permeation was demonstrated by both Arg2 and Arg3 in vitro. On the other hand, the abilities of the 4 analogues to reduce wrinkle formation were also compared using primary human dental pulp stem cells derived neurons. By measuring the inhibition of glutamate release from the neurons in vitro, it was shown that Arg3 was the most effective, followed by Arg1, Arg0 and Arg2.

摘要

皱纹会对生活质量产生负面影响,而肉毒杆菌素是最有效和最常用的治疗方法之一。Argireline(Arg0)是肉毒杆菌素的模拟物,已被发现比肉毒杆菌素更安全,并能有效减少皱纹,在每天两次治疗 4 周后,有效率高达 48%。然而,Arg0 的皮肤渗透性很差,这是由于其分子量较大且亲水性强。Arg0 以两性离子形式存在,这种带电状态阻碍了其皮肤渗透。通过化学修饰肽结构来减少两性离子的形成可能会导致皮肤渗透性增加。我们总共研究了 4 种肽类似物(Arg0、Arg1、Arg2、Arg3),以评估其皮肤渗透性和减少皱纹的效果。这 4 种肽溶解在各种丙二醇和水共溶剂中。Arg2 和 Arg3 在体外均显示出增强的人类皮肤渗透性。另一方面,我们还使用源自人牙髓干细胞的神经元比较了 4 种类似物减少皱纹形成的能力。通过测量神经元体外释放谷氨酸的抑制作用,表明 Arg3 最有效,其次是 Arg1、Arg0 和 Arg2。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6095/5785486/a579d1e26d87/41598_2017_18454_Fig1_HTML.jpg

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