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In Vitro Analysis of Histology, Mechanics, and Safety of Radiation-free Pre-hydrated Human Acellular Dermal Matrix

机译:无辐射预水合人型无细胞皮质基质的组织学,力学和安全性的体外分析

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Purpose:Acellular dermal matrix (ADM) supports tissue expanders or implants in implant-based breast reconstruction. The characteristics of ADM tissue are defined by the manufacturing procedure, such as decellularization, preservation, and sterilization, and are directly related to clinical outcomes. This study aimed to compare the properties of a new pre-hydrated-ADM (H-ADM-low) obtained using a decellularization reagent reduction process with a low concentration of detergent with those of radiation-sterilized H-ADM and freeze-dried ADM (FD-ADM).Methods:ADMs were evaluated in terms of structure, mechanical quality, and cytotoxicity using histochemical staining, tensile strength testing, and in vitro cell viability analysis.Results:The tissue structure of H-ADM-low (CGDERM ONE-STEP) was similar to that of native skin despite complete decellularization. By contrast, in FD-ADM, the tissue structure was damaged by the freeze-drying process, and radiation-sterilized H-ADM showed a compact fibrillar arrangement. Furthermore, matrix components such as collagen and elastin were preserved in H-ADM-low, whereas a loss of elastin fibers with fragmented distribution was observed in radiation-sterilized H-ADMs. H-ADM-low's tensile strength (58.84 MPa) was significantly greater than that of FD-ADM (38.60 MPa) and comparable with that of radiation-sterilized H-ADMs. The residual detergent content in H-ADM-low (47.45 mg/L) was 2.67-fold lower than that of H-ADM decellularized with a conventional detergent concentration (126.99 mg/mL), and this finding was consistent with the cell viability results (90.7% and 70.7%, respectively), indicating that H-ADM-low has very low cytotoxicity.Conclusions:H-ADM-low produced through aseptic processes retains the original tissue structure, demonstrates excellent mechanical properties, and does not affect cell viability. Therefore, this newer H-ADM is suitable for use in implant-based breast reconstruction.? 2020 Korean Breast Cancer Society.
机译:目的:无细胞皮肤基质(ADM)支持基于植入物的乳房重建中的组织扩张器或植入物。 ADM组织的特性由制造程序定义,例如脱细胞化,保存和灭菌,并且与临床结果直接相关。本研究旨在比较使用具有低浓度洗涤剂的脱细胞化试剂还原方法获得的新预水合 - ADM(H-ADM-LOW)的性质,与辐射灭菌的H-ADM和冷冻干燥的ADM( FD-ADM)。方法:使用组织化学染色,拉伸强度试验和体外细胞活力分析,根据结构,机械质量和细胞毒性评估ADMS。结果:H-ADM-LOW的组织结构(CGDERM ONE-虽然完全脱细胞化,但步骤类似于天然皮肤。相比之下,在FD-ADM中,通过冷冻干燥过程损坏组织结构,并且辐射灭菌的H-ADM显示紧凑的原纤维布置。此外,诸如胶原蛋白和弹性蛋白的基质组分被保存在H-Adm-LOW中,而在辐射灭菌的H-AMM中观察到具有碎片分布的弹性蛋白纤维的损失。 H-ADM-LOW的拉伸强度(58.84MPa)明显大于FD-ADM(38.60MPa),与辐射灭菌的H-ADMS相当。 H-Adm-Low(47.45mg / L)中的残留洗涤剂含量低于常规洗涤剂浓度(126.99mg / ml)的H-Adm脱细胞低2.67倍,该发现与细胞活力结果一致(分别为90.7%和70.7%),表明H-ADM-LOW具有非常低的细胞毒性。结论:通过无菌过程产生的H-ADM-LOW保留原始组织结构,证明了优异的机械性能,并且不会影响细胞活力。因此,该新的H-ADM适用于基于植入物的乳房重建。 2020韩国乳腺癌社会。

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