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富含生长因子的血浆可促进伤口愈合,并保护真皮成纤维细胞和3D皮肤模型免受光氧化应激。

Plasma Rich in Growth Factors Enhances Wound Healing and Protects from Photo-oxidative Stress in Dermal Fibroblasts and 3D Skin Models.

作者信息

Anitua Eduardo, Pino Ander, Jaen Pedro, Orive Gorka

机构信息

Foundation Eduardo Anitua, Vitoria, Spain, Jacinto Quincoces, 39, 01007 Vitoria (Alava). Spain.

出版信息

Curr Pharm Biotechnol. 2016;17(6):556-70. doi: 10.2174/1389201017666160301104139.

Abstract

BACKGROUND

Optimal skin repair has been a desired goal for many researchers. Recently, plasma rich in growth factors (PRGF) has gained importance in dermatology proving it is beneficial effects in wound healing and cutaneous regeneration.

OBJECTIVE

The anti-fibrotic, pro-contractile and photo-protective effect of PRGF on dermal fibroblasts and 3D skin models has been evaluated.

METHOD

The effect against TGFβ1 induced myofibroblast differentiation was tested. Cell contractile activity over collagen gel matrices was analyzed and the effect against UV derived photo-oxidative stress was assessed. The effectiveness of PRGF obtained from young aged and middle aged donors was compared. Furthermore, 3D organotypic skin explants were used as human skin models with the aim of analyzing ex vivo cutaneous preventive and regenerative photo-protection after UV exposure.

RESULTS

TGFβ1 induced myofibroblast levels decreased significantly after treatment with PRGF while the contractile activity increased compared to the control group. After UV irradiation, cell survival was promoted while apoptotic and ROS levels were noticeably reduced. Photo-exposed 3D explants showed higher levels of metabolic activity and lower levels of necrosis, cell damage, irritation and ROS formation when treated with PRGF. The histological integrity and connective tissue fibers showed lower signals of photodamage among PRGF injected skin models. No significant differences for the assessed biological outcomes were observed when PRGF obtained from young aged and middle aged donors were compared.

CONCLUSION

These findings suggest that this autologous approach might be useful for antifibrotic wound healing and provide an effective protection against sun derived photo-oxidative stress regardless the age of the patient.

摘要

背景

最佳皮肤修复一直是众多研究人员期望实现的目标。近年来,富含生长因子的血浆(PRGF)在皮肤病学领域愈发重要,已证实其在伤口愈合和皮肤再生方面具有有益作用。

目的

评估PRGF对真皮成纤维细胞和三维皮肤模型的抗纤维化、促收缩及光保护作用。

方法

测试其对转化生长因子β1(TGFβ1)诱导的肌成纤维细胞分化的作用。分析细胞在胶原凝胶基质上的收缩活性,并评估其对紫外线衍生的光氧化应激的作用。比较从年轻和中年供体获得的PRGF的有效性。此外,使用三维器官型皮肤外植体作为人体皮肤模型,旨在分析紫外线照射后离体皮肤的预防性和再生性光保护作用。

结果

用PRGF处理后,TGFβ1诱导的肌成纤维细胞水平显著降低,而与对照组相比收缩活性增加。紫外线照射后,细胞存活率提高,凋亡和活性氧水平明显降低。用PRGF处理后,经光照射的三维外植体显示出更高的代谢活性水平和更低的坏死、细胞损伤、炎症及活性氧形成水平。在注射PRGF的皮肤模型中,组织学完整性和结缔组织纤维显示出较低的光损伤信号。比较从年轻和中年供体获得的PRGF时,未观察到所评估生物学结果的显著差异。

结论

这些发现表明,这种自体方法可能有助于抗纤维化伤口愈合,并能有效抵御阳光衍生的光氧化应激,无论患者年龄大小。

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