用于评估生物安全性和生物相容性的基本体外3D人体皮肤等效工具开发-面向动物实验的替代方案

4open Pub Date : 2021-01-01 DOI:10.1051/FOPEN/2021001
Ayesha Idrees, I. Schmitz, A. Zoso, Dierk Gruhn, S. Pacharra, Siegfried Shah, G. Ciardelli, R. Viebahn, V. Chiono, J. Salber
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引用次数: 4

摘要

目前,人体皮肤构建体(hsc)被用于生物材料、药物和化妆品的体外测试以及复杂皮肤伤口治疗的开发。体外三维(3D)真皮-表皮为基础的毛囊间,全层,人体皮肤当量(HSE),概括了皮肤的形态发生,表皮分化,超结构,组织结构和屏障功能特性。测试了不同的3D细胞培养条件,以优化HSE成熟,使用各种市售的无血清/动物成分和/或完全定义的培养基,以及气液界面(ALI)培养。优化的培养条件允许正常人真皮成纤维细胞(nffs)在CELLnTEC-Prime Fibroblast (CnT-PR- f)培养基中培养5-7天,然后在CELLnTEC-Prime Epithelial culture (CnT-PR)培养基中培养正常人表皮角质形成细胞(NHEKs) 3天,从而产生HSE。然后将共培养物浸泡在CELLnTEC-Prime-3D屏障(CnT-PR-3D)培养基中过夜,以刺激细胞-细胞接触的形成,最后使用CnT-PR-3D培养基放置在ALI中15-20天。组织学分析显示,NHDFs在真皮层分布均匀,呈典型的细长形态,有丝状足。表皮室呈多层结构,由基底层、棘层、颗粒层和角质层组成。NHDFs和基底层角质形成细胞增殖标志物Kiel 67 (Ki-67)阳性,表明其增殖处于活跃状态。典型的表皮组织蛋白(角蛋白、层粘连蛋白、聚丝蛋白、loricin、involucrin和β-微管蛋白)在其正确的解剖位置上的存在被免疫组织化学(IHC)证实。透射电子显微镜(TEM)分析显示基底膜有透明层、致密层、半半粒和锚定纤维。表皮层显示丰富的细胞内角蛋白丝、桥粒和角蛋白细胞之间的紧密连接。扫描电镜(SEM)分析显示,胶原纤维的交织网络与嵌入的NHDFs和相邻的分层表皮直至角质层类似于天然人皮肤。HSE生理静态接触角确认了屏障功能。开发的HSE是评估生物材料生物相容性、药物毒性、化妆品安全性和有效性以及研究皮肤生物学、皮肤病发病机制、伤口愈合和皮肤感染的基本体外工具。
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Fundamental in vitro 3D human skin equivalent tool development for assessing biological safety and biocompatibility – towards alternative for animal experiments
Nowadays, human skin constructs (HSCs) are required for biomaterials, pharmaceuticals and cosmetics in vitro testing and for the development of complex skin wound therapeutics. In vitro three-dimensional (3D) dermal-epidermal based interfollicular, full-thickness, human skin equivalent (HSE) was here developed, recapitulating skin morphogenesis, epidermal differentiation, ultra-structure, tissue architecture, and barrier function properties of human skin. Different 3D cell culture conditions were tested to optimize HSE maturation, using various commercially available serum/animal component-free and/or fully defined media, and air-liquid interface (ALI) culture. Optimized culture conditions allowed the production of HSE by culturing normal human dermal fibroblasts (NHDFs) for 5–7 days in CELLnTEC-Prime Fibroblast (CnT-PR-F) medium and then culturing normal human epidermal keratinocytes (NHEKs) for 3 days in CELLnTEC-Prime Epithelial culture (CnT-PR) medium on them. Co-culture was then submerged overnight in CELLnTEC-Prime-3D barrier (CnT-PR-3D) medium to stimulate cell-cell contact formation and finally placed at ALI for 15–20 days using CnT-PR-3D medium. Histological analysis revealed uniform distribution of NHDFs in the dermal layer and their typical elongated morphology with filopodia. Epidermal compartment showed a multi-layered structure, consisting of stratum basale, spinosum, granulosum, and corneum. NHDFs and keratinocytes of basal layer were positive for the proliferation marker Kiel 67 (Ki-67) demonstrating their active state of proliferation. The presence of typical epidermal tissue proteins (keratins, laminins, filaggrin, loricin, involucrin, and β-tubulin) at their correct anatomical position was verified by immunohistochemistry (IHC). Moreover, transmission electron microscopy (TEM) analyses revealed basement membrane with lamina lucida, lamina densa, hemidesmosomes and anchoring fibers. The epidermal layers showed abundant intracellular keratin filaments, desmosomes, and tight junction between keratinocytes. Scanning electron microscopy (SEM) analyses showed the interwoven network of collagen fibers with embedded NHDFs and adjacent stratified epidermis up to the stratum corneum similar to native human skin. HSE physiological static contact angle confirmed the barrier function. The developed HSE represents a fundamental in vitro tool to assess biocompatibility of biomaterials, pharmacotoxicity, safety and effectiveness of cosmetics, as well as to investigate skin biology, skin disease pathogenesis, wound healing, and skin infection.
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