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蓝光激活的核黄素磷酸促进胶原蛋白交联以改变结缔组织的特性。

Blue Light-Activated Riboflavin Phosphate Promotes Collagen Crosslinking to Modify the Properties of Connective Tissues.

作者信息

Kang Yeyoung, Kim Jae Hak, Kim Seo Young, Koh Won-Gun, Lee Hyun Jong

机构信息

Department of Chemical and Biological Engineering, Gachon University, 1342 Seongnam-daero, Seongnam-si 13120, Korea.

Department of Chemical and Biomolecular Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Korea.

出版信息

Materials (Basel). 2021 Oct 3;14(19):5788. doi: 10.3390/ma14195788.

Abstract

Reduced amounts of collagen and fragmented collagen fibers are characteristics of aging skin. Recently, user-friendly, at-home personal aesthetic devices using light-emitting diode (LED) light have been used for cost-effective and safe skin improvement. However, to dramatically improve the skin via collagen repair, we need to develop an LED-responsive photosensitizer. Corneal collagen crosslinking uses ultraviolet light to activate riboflavin phosphate (RFP) and is used in ophthalmology. RFP is a biocompatible photosensitizer derived from vitamin B. This study aimed to prove that RFP combined with blue light (BL) can increase collagen crosslinking density, improving its mechanical properties in skin tissue and enhancing skin elasticity. We confirmed the RFP-induced photo-crosslinking in pure collagen by studying changes in its dynamic modulus and matrix morphology using collagen hydrogels. We also measured the changes in the mechanical properties after applying photo-crosslinking on porcine skin. The Young's modulus (1.07 ± 0.12 MPa) and tensile strength (11.04 ± 1.06 MPa) of the porcine skin after photo-crosslinking were 2.8 and 3.5 times better compared to those of normal porcine skin, respectively. Thus, photo-crosslinking through RFP and BL irradiation can be potentially used for skin improvement using aesthetic LED devices.

摘要

胶原蛋白含量减少和胶原纤维断裂是皮肤老化的特征。最近,使用发光二极管(LED)光的用户友好型家用个人美容设备已被用于经济高效且安全的皮肤改善。然而,要通过胶原蛋白修复显著改善皮肤,我们需要开发一种对LED有反应的光敏剂。角膜胶原交联使用紫外线激活核黄素磷酸(RFP),并用于眼科。RFP是一种源自维生素B的生物相容性光敏剂。本研究旨在证明RFP与蓝光(BL)结合可增加胶原蛋白交联密度,改善其在皮肤组织中的机械性能并增强皮肤弹性。我们通过使用胶原蛋白水凝胶研究其动态模量和基质形态的变化,证实了RFP在纯胶原蛋白中诱导的光交联。我们还测量了在猪皮肤上进行光交联后机械性能的变化。光交联后猪皮肤的杨氏模量(1.07±0.12MPa)和拉伸强度(11.04±1.06MPa)分别比正常猪皮肤提高了2.8倍和3.5倍。因此,通过RFP和BL照射进行的光交联可能潜在地用于使用美容LED设备改善皮肤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e98/8510499/25cf6aa0501a/materials-14-05788-g001a.jpg

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