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去细胞化的胰腺作为胰腺组织和整个器官工程的天然 3D 支架。

Perfusion-decellularized pancreas as a natural 3D scaffold for pancreatic tissue and whole organ engineering.

机构信息

Department of Bioengineering, University of Pittsburgh, PA, USA.

出版信息

Biomaterials. 2013 Sep;34(28):6760-72. doi: 10.1016/j.biomaterials.2013.05.066. Epub 2013 Jun 17.

Abstract

Approximately 285 million people worldwide suffer from diabetes, with insulin supplementation as the most common treatment measure. Regenerative medicine approaches such as a bioengineered pancreas has been proposed as potential therapeutic alternatives. A bioengineered pancreas will benefit from the development of a bioscaffold that supports and enhances cellular function and tissue development. Perfusion-decellularized organs are a likely candidate for use in such scaffolds since they mimic compositional, architectural and biomechanical nature of a native organ. In this study, we investigate perfusion-decellularization of whole pancreas and the feasibility to recellularize the whole pancreas scaffold with pancreatic cell types. Our result demonstrates that perfusion-decellularization of whole pancreas effectively removes cellular and nuclear material while retaining intricate three-dimensional microarchitecture with perfusable vasculature and ductal network and crucial extracellular matrix (ECM) components. To mimic pancreatic cell composition, we recellularized the whole pancreas scaffold with acinar and beta cell lines and cultured up to 5 days. Our result shows successful cellular engraftment within the decellularized pancreas, and the resulting graft gave rise to strong up-regulation of insulin gene expression. These findings support biological utility of whole pancreas ECM as a biomaterials scaffold for supporting and enhancing pancreatic cell functionality and represent a step toward bioengineered pancreas using regenerative medicine approaches.

摘要

全球约有 2.85 亿人患有糖尿病,胰岛素补充是最常见的治疗措施。再生医学方法,如生物工程化的胰腺,已被提议作为潜在的治疗替代方案。生物工程化的胰腺将受益于生物支架的开发,该支架支持和增强细胞功能和组织发育。灌注去细胞化器官是此类支架的潜在候选物,因为它们模拟天然器官的组成、结构和生物力学特性。在这项研究中,我们研究了整个胰腺的灌注去细胞化以及用胰腺细胞类型再细胞化整个胰腺支架的可行性。我们的结果表明,整个胰腺的灌注去细胞化有效地去除了细胞和核材料,同时保留了复杂的三维微观结构,具有可灌注的脉管系统和导管网络以及关键的细胞外基质 (ECM) 成分。为了模拟胰腺细胞组成,我们用胰岛和β细胞系再细胞化整个胰腺支架,并培养了长达 5 天。我们的结果显示,脱细胞胰腺内成功进行了细胞植入,并且由此产生的移植物导致胰岛素基因表达的强烈上调。这些发现支持整个胰腺 ECM 作为支持和增强胰腺细胞功能的生物材料支架的生物学效用,并代表了使用再生医学方法构建生物工程化胰腺的一步。

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