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用于组织工程的交联脱细胞肺:对生物相容性、力学性能和免疫反应的影响。

Cross-linked acellular lung for application in tissue engineering: Effects on biocompatibility, mechanical properties and immunological responses.

作者信息

Shirani Ali, Ganji Fatemeh, Golmohammadi Mahtab, Hashemi Seyed Mahmoud, Mozafari Masoud, Amoabediny Ghassem, Karkuki Osguei Nushin, Samadikuchaksaraei Ali

机构信息

Cellular and Molecular Research Centre, Iran University of Medical Sciences, Tehran, Iran; Department of Tissue Engineering & Regenerative Medicine, Faculty of Advanced Technologies in Medicine, Iran University of Medical Sciences, Tehran, Iran.

Department of Medical Genetics, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Mar;122:111938. doi: 10.1016/j.msec.2021.111938. Epub 2021 Feb 5.

Abstract

The concept of providing tissue engineering scaffolds with natural physical properties and minimal immunogenicity has not been systematically approached for the lungs yet. Here, the rat acellular lung tissue (ALT) was cross-linked to provide either EDC/NHS cross-linked tissue (EDC/NHS-CLT) or tannic acid cross-linked tissue (TA-CLT). Young's modulus revealed that EDC/NHS-CLT had mechanical properties similar to the native lung and culture of lung mesenchymal cells showed a higher potential of cell proliferation on EDC/NHS-CLT versus TA-CLT and ALT. The in vitro immunogenicity tests showed a strong induction of T-cell proliferation by TA-CLT and an attenuated macrophage induction by TA-CLT. Processed rat lungs were implanted xenogenically into the mouse peritoneal cavity and the host-implant interactions showed that tannic acid is not released from TA-CLT in a physiologically effective dose. The profile of peritoneal fluid proinflammatory (TNFα, IL-1β, IL-12p70 and IL-17) and anti-inflammatory (IL-10 and TGFβ1) cytokines, and CD3 T-lymphocytes and CD11b macrophages revealed that apart from induction of high levels of IL-17 during the first week and IL-10 during the second to third weeks after implantation by TA-CLT, other indicators of immune reactions to cross-linked tissues were not significantly different from ALT. Also, a high fibrotic reaction to TA-CLT was observed on the weeks 2-3, but alveolar structures were preserved in EDC/NHS-CLT. Our findings show that by controlled EDC/NHS cross-linking, an acellular lung scaffold could be provided with mechanical properties similar to native lung, which promotes mesenchymal lung cells proliferation and does not stimulate recipient's immune system more than a non-cross-linked tissue.

摘要

为肺组织工程支架赋予天然物理特性并使其免疫原性降至最低的概念,目前尚未在肺部研究中得到系统应用。在此,对大鼠脱细胞肺组织(ALT)进行交联处理,以制备1-乙基-3-(3-二甲氨基丙基)碳二亚胺盐酸盐/ N-羟基琥珀酰亚胺交联组织(EDC/NHS-CLT)或单宁酸交联组织(TA-CLT)。杨氏模量显示,EDC/NHS-CLT具有与天然肺相似的力学性能,并且肺间充质细胞在EDC/NHS-CLT上的培养显示出比TA-CLT和ALT更高的细胞增殖潜力。体外免疫原性测试表明,TA-CLT强烈诱导T细胞增殖,且对巨噬细胞的诱导作用减弱。将处理后的大鼠肺异种移植到小鼠腹腔中,宿主与植入物的相互作用表明,单宁酸未以生理有效剂量从TA-CLT中释放。腹膜液促炎(肿瘤坏死因子α、白细胞介素-1β、白细胞介素-12p70和白细胞介素-17)和抗炎(白细胞介素-10和转化生长因子β1)细胞因子以及CD3 T淋巴细胞和CD11b巨噬细胞的分析表明,除了TA-CLT在植入后第一周诱导高水平的白细胞介素-17以及第二至第三周诱导白细胞介素-10外,对交联组织免疫反应的其他指标与ALT没有显著差异。此外,在第2至3周观察到对TA-CLT有高度纤维化反应,但EDC/NHS-CLT中肺泡结构得以保留。我们的研究结果表明,通过可控的EDC/NHS交联,可以为脱细胞肺支架赋予与天然肺相似的力学性能,促进肺间充质细胞增殖,并且对受体免疫系统的刺激不超过未交联组织。

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