Non-denatured yak type I collagen accelerates sunburned skin healing by stimulating and replenishing dermal collagen

Q1 Immunology and Microbiology Biotechnology Reports Pub Date : 2023-03-01 DOI:10.1016/j.btre.2022.e00778
Caihong Fu , Shuangni Shi , Jing Tian , Hong Gu , Linyan Yao , Jianxi Xiao
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引用次数: 3

Abstract

Sunburn is one of the most common skin lesions caused by excessive UV exposure, and its incidence is highly correlated with the risks of skin cancer. A variety of drugs including corticosteroids and NSAIDs have been developed to treat acute sunburn, however, they have raised severe concerns such as poor healing efficacy and long recovery time. We have for the first time extracted non-denatured type I collagen from yak hide, which displays a canonical triple helical structure with melting temperature of 42.7 °C. The highly pure yak collagen type I (YCI) self-assembles to form well-ordered nanofibers with periodic d-bands. YCI is highly biocompatible, and it significantly promotes the proliferation and adhesion of HFF-1 cells. The sunburn healing effects of YCI has been investigated using acute skin injury mouse model. Histological analysis shows that 4 days’ treatment of YCI has resulted in the recovery of sunburned mice skin to a healthy state, indicated by pronounced acceleration of epithelization and collagen deposition. The collagen volume fraction as well as the hydroxyproline (Hyp) content of YCI-treated sunburned skin have been found to be greatly increased, confirming the enhanced regeneration of collagen. YCI creams and dressings have also shown superior healing capacity of sunburn by remarkably shortening the recovery time. Notably, the denatured collagen-targeted staining results indicated a large quantity of denatured collagen in sunburned mice, which became substantially reduced after the YCI treatment. FITC-labeled YCI has been further found to penetrate into the dermis of sunburned mice. The highly biocompatible and bioactive non-denatured YCI provides an improved treatment of sunburn, indicating very promising applications of YCI in cosmetics and dermatology.

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非变性牦牛I型胶原蛋白通过刺激和补充真皮胶原蛋白加速晒伤皮肤的愈合
晒伤是由过度紫外线照射引起的最常见的皮肤病变之一,其发病率与皮肤癌症风险高度相关。包括皮质类固醇和非甾体抗炎药在内的多种药物已被开发用于治疗急性晒伤,然而,它们引起了严重的担忧,如愈合效果差和恢复时间长。我们首次从牦牛皮中提取了非变性的I型胶原,其显示出典型的三螺旋结构,熔化温度为42.7°C。高纯度的I型牦牛胶原(YCI)自组装形成具有周期性d带的有序纳米纤维。YCI具有高度的生物相容性,显著促进HFF-1细胞的增殖和粘附。用急性皮肤损伤小鼠模型研究了YCI对晒伤的愈合作用。组织学分析显示,YCI治疗4天后,晒伤的小鼠皮肤恢复到健康状态,表现为上皮化和胶原沉积明显加速。已经发现YCI处理的晒伤皮肤的胶原体积分数以及羟脯氨酸(Hyp)含量显著增加,证实了胶原的再生增强。YCI霜和敷料还显示出卓越的晒伤愈合能力,显著缩短了恢复时间。值得注意的是,变性胶原靶向染色结果表明,在晒伤的小鼠中有大量变性胶原,在YCI处理后,变性胶原显著减少。FITC标记的YCI已被进一步发现渗透到被晒伤的小鼠的真皮中。高生物相容性和生物活性的非变性YCI改善了对晒伤的治疗,表明YCI在化妆品和皮肤病学中的应用非常有前景。
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来源期刊
Biotechnology Reports
Biotechnology Reports Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
15.80
自引率
0.00%
发文量
79
审稿时长
55 days
期刊介绍: Biotechnology Reports covers all aspects of Biotechnology particularly those reports that are useful and informative and that will be of value to other researchers in related fields. Biotechnology Reports loves ground breaking science, but will also accept good science that can be of use to the biotechnology community. The journal maintains a high quality peer review where submissions are considered on the basis of scientific validity and technical quality. Acceptable paper types are research articles (short or full communications), methods, mini-reviews, and commentaries in the following areas: Healthcare and pharmaceutical biotechnology Agricultural and food biotechnology Environmental biotechnology Molecular biology, cell and tissue engineering and synthetic biology Industrial biotechnology, biofuels and bioenergy Nanobiotechnology Bioinformatics & systems biology New processes and products in biotechnology, bioprocess engineering.
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