Comparative Evaluation of Biomechanical Characteristics of Acellular Dermal Matrix for Hernioplasty

K. Melkonian, K. I. Popandopulo, S. B. Bazlov, T. Rusinova, O. Moskalyuk, I. Bykov
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Abstract

Background. With the introduction of synthetic mesh implants into clinical practice, the recurrence rate of postoperative ventral hernias was signifi cantly reduced. The extensive use of synthetic implants led to the development of specifi c complications. The development of biological implants, based on extensively purifi ed decellularized collagen matrix of xenogeneic origin is highly relevant due to the fact that, unlike synthetic analogues, they have a biological origin and biodegrade in a natural way, gradually being replaced with newly formed connective tissue. The use of bioprostheses reduces the risk of complications.Objectives. To conduct a comparative evaluation of the biomechanical characteristics of acellular dermal matrix, obtained by detergent-enzymatic decellularization, and commercially distributed Permacol™ matrix.Methods. Acellular dermal matrix (ADM) was created by using samples of native skin of pig of Landras breed aged 4 months. The dermis was processed by means of detergent-enzymatic method. In order to evaluate and compare the mechanical properties of acellular dermal matrix, the biological samples were divided into 2 groups of 15 samples each. The fi rst group included acellular dermal matrix samples, the second group — native samples of pigs unprocessed dermis. The control group consisted of samples of PermacolTM Surgical Implant, xenotransplant for hernioplasty approved for use in the Russian Federation (Covidien, France). All samples were tested wet using universal testing instrument Instron 1122. MedCalc Statistical Software (Belgium) was used for statistical processing of the study results.Results. In the present study, pig dermis was processed using a detergent-enzymatic method to produce ADM. Routine histological examination confi rmed the removal of all cellular elements, and at the same time it was proven that the native structure of the dermis remained intact during its processing. The mechanical characteristics of xenogenic ADM were further determined. Its tensile strength was 9.1 ± 0.6 MPa (910 N/cm2 ), elongation to break was 21.1 ± 2.3%, and elastic modulus was 50.0 ± 1.6 MPa. These characteristics largely corresponded to the strength characteristics of native pig dermis and far exceeded the necessary physiological parameters. PermacolTM control was tested in two directions (longitudinal and transverse). In the longitudinal direction, the sample had higher mechanical characteristics: strength — 12.0 ± 1.7 MPa, elongation to break — 29.7 ± 2.4%, stiffness modulus — 47.2 ± 6.5 MPa. In the transverse direction, all indicators were 1.5–2 times lower.Conclusion. The developed xenogeneic biological implant in the form of ADM demonstrates rather good characteristics of plasticity, tensile strength and elasticity, to be used as a biological endoprosthesis for plasty of hernia defects of the abdominal wall of any size and shape.
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脱细胞真皮基质疝成形术生物力学特性的比较评价
背景。随着人工合成补片植入物进入临床,术后腹疝的复发率明显降低。人工种植体的广泛使用导致了特定并发症的发生。基于广泛纯化的异种来源的脱细胞胶原基质的生物植入物的发展是高度相关的,因为与合成类似物不同,它们具有生物来源并且可以自然生物降解,逐渐被新形成的结缔组织所取代。生物假体的使用降低了并发症的风险。通过洗涤剂-酶脱细胞法获得的脱细胞真皮基质和市售Permacol™基质的生物力学特性进行比较评估。以4月龄Landras猪为原料,制备脱细胞真皮基质(ADM)。采用洗涤剂-酶法对真皮层进行处理。为了评价和比较脱细胞真皮基质的力学性能,将生物样品分为2组,每组15个样品。第一组为脱细胞真皮基质样品,第二组为未经处理的猪天然真皮样品。对照组为俄罗斯联邦(Covidien,法国)批准使用的PermacolTM外科植入物异种移植疝成形术样本。所有样品均采用万能测试仪器Instron 1122进行湿法测试。采用MedCalc统计软件(比利时)对研究结果进行统计处理。在本研究中,猪真皮层采用洗涤剂-酶法加工产生adm。常规组织学检查证实了所有细胞成分的去除,同时证明了真皮的天然结构在加工过程中保持完整。进一步测定了异种ADM的力学特性。拉伸强度为9.1±0.6 MPa (910 N/cm2),断裂伸长率为21.1±2.3%,弹性模量为50.0±1.6 MPa。这些特征在很大程度上符合天然猪真皮的强度特征,远远超过了必要的生理参数。在纵向和横向两个方向上测试PermacolTM控制。在纵向上,试样具有较高的力学特性:强度- 12.0±1.7 MPa,断裂伸长率- 29.7±2.4%,刚度模量- 47.2±6.5 MPa。横向各指标均降低1.5 ~ 2倍。所研制的异种生物植入物具有较好的可塑性、抗拉强度和弹性,可作为一种生物内假体,用于任何大小和形状的腹壁疝缺损的修复。
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来源期刊
CiteScore
0.10
自引率
0.00%
发文量
37
审稿时长
8 weeks
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