División de Ciencias e Ingenierías, Universidad de Guanajuato, León, Gto, Mexico.
Hospital Gineco-Pediatra No 48, Centro Médico Nacional del Bajío, UMAE, Instituto Mexicano del Seguro Social, León, Gto, Mexico.
J Biomed Mater Res A. 2022 Oct;110(10):1669-1680. doi: 10.1002/jbm.a.37416. Epub 2022 Jun 15.
Damaged complex modular organs repair is a current clinical challenge in which one of the primary goals is to keep their biological response. An interesting case of study it is the porcine esophagus since it is a tubular muscular tissue selected as raw material for tissue engineering. The design of esophageal constructs can draw on properties of the processed homologous extracellular matrix (ECM). In this work, we report the decellularization of multilayered esophagus tissue from 1-, 21- and 45-days old piglets through the combination of reversible alkaline swelling and detergent perfusion. The bioscaffolds were characterized in terms of their residual composition and tensile mechanical properties. The biological response to esophageal submucosal derived bioscaffolds modified with ECM gel containing epoxyeicosatrienoic acids (EETs) was then evaluated. Results suggest that the composition (laminin, fibronectin, and sulphated glycosaminoglycans/sGAG) depends on the donor age: a better efficiency of the decellularization process combined with a higher retention of sGAG and fibronectin is observed in piglet esophageal scaffolds. The heterogeneity of this esophageal ECM is maintained, which implied the preservation of anisotropic tensile properties. Coating of bioscaffolds with ECM gel is suitable for carrying esophageal epithelial cells and EETs. Bioactivity of EETs-ECM gel modified esophageal submucosal bioscaffolds is observed to promote neovascularization and antiinflammatory after rabbit full-thickness esophageal defect replacement.
受损复杂模块化器官的修复是目前临床面临的挑战之一,其中一个主要目标是保持其生物学反应。猪食管是一个有趣的研究案例,因为它是一种管状肌肉组织,被选为组织工程的原料。食管结构的设计可以借鉴加工同源细胞外基质 (ECM) 的特性。在这项工作中,我们报告了通过可逆碱性肿胀和去污剂灌注相结合,从 1 天、21 天和 45 天大的仔猪中脱细胞化多层食管组织。从残留成分和拉伸力学性能方面对生物支架进行了表征。然后评估了用含有环氧化物二十碳三烯酸 (EETs) 的 ECM 凝胶修饰的食管黏膜下衍生生物支架的生物学反应。结果表明,组成(层粘连蛋白、纤连蛋白和硫酸化糖胺聚糖/sGAG)取决于供体年龄:在仔猪食管支架中观察到脱细胞化过程效率更高,同时 sGAG 和纤连蛋白的保留率更高。这种食管 ECM 的异质性得以维持,这意味着各向异性拉伸性能得以保留。用 ECM 凝胶涂覆生物支架适合携带食管上皮细胞和 EETs。在用 ECM 凝胶修饰的 EETs-ECM 凝胶改性的食管黏膜下生物支架上观察到生物活性,可促进兔全层食管缺损置换后的新生血管形成和抗炎作用。