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大鼠动静脉环模型中淋巴管系统的组织工程

Tissue Engineering of Lymphatic Vasculature in the Arteriovenous Loop Model of the Rat.

作者信息

Robering Jan W, Al-Abboodi Majida, Titzmann Adriana, Horn Inge, Beier Justus P, Horch Raymund E, Kengelbach-Weigand Annika, Boos Anja M

机构信息

Department of Plastic and Hand Surgery and Laboratory for Tissue Engineering and Regenerative Medicine, Friedrich-Alexander-University Erlangen-Nürnberg (FAU), University Hospital, Erlangen, Germany.

Department of Plastic Surgery, Hand Surgery, Burn Center, University Hospital RWTH Aachen, Aachen, Germany.

出版信息

Tissue Eng Part A. 2021 Jan;27(1-2):129-141. doi: 10.1089/ten.TEA.2020.0108. Epub 2020 Sep 21.

Abstract

Various therapeutic approaches, for example, in case of trauma or cancer require the transplantation of autologous tissue. Depending on the size and the origin of the harvested tissue, these therapies can lead to iatrogenic complications and donor-site morbidities. In future, these side effects could be avoided by transplanting artificially generated tissue consisting of different cell types and matrix components derived from the host body. Tissue that is grown in the patient could be advantageous compared with the more simply structured -grown alternatives. To overcome the limitations of graft vascularization, the arteriovenous (AV) loop technique has been established for different tissues in the last years and was adapted for lymphatic tissue engineering in the present study. We utilized the AV loop technique to grow human lymphatic vasculature in the Rowett nude (RNU) rat. A combination of human lymphatic endothelial cells (LECs) and bone marrow-derived mesenchymal stem cells was implanted in a fibrin matrix surrounding the AV loop. After 2 or 4 weeks of implantation, the animals were perfused and the tissue was harvested. It could be demonstrated by immunohistochemistry for human LYVE1, human CD31, and murine podoplanin that the implanted cells formed human lymphatic vasculature in the AV loop chamber. Beside development of murine podoplanin-positive vasculature in the AV loop tissue, vasculature positive for human marker proteins developed in comparable numbers. This suggests that implanted LECs are able to improve the lymphatic vascularization of the newly engineered tissue. Thus, we were able to establish an tissue engineering method to generate lymphatic vascularized soft tissue. An axially vascularized transplantable lymphatic vessel network was engineered without requiring advanced cell culture equipment, rendering the lymphatic AV loop highly suitable for applied regenerative medicine. Impact statement Various surgical procedures require the transplantation of autologous harvested tissue, for example, the vascularized lymph node transfer for the treatment of lymphedema. Tissue-engineered transplants could be used instead of autologous transplants and thereby help to reduce the side effects of those therapies. However, tissue engineering of large constructs requires a lot of know-how as well as advanced cell culture equipment, which might not be accessible in every hospital. tissue engineering approaches like the presented technique for the generation of transplantable networks of lymphatic vasculature could serve as an alternative for tissue engineering approaches in clinical settings.

摘要

各种治疗方法,例如在创伤或癌症情况下,需要自体组织移植。根据所采集组织的大小和来源,这些疗法可能会导致医源性并发症和供体部位的发病率。未来,通过移植由源自宿主身体的不同细胞类型和基质成分组成的人工生成组织,可以避免这些副作用。与结构更简单的体外培养替代品相比,在患者体内生长的组织可能具有优势。为了克服移植物血管化的局限性,近年来针对不同组织建立了动静脉(AV)环技术,本研究将其应用于淋巴组织工程。我们利用AV环技术在罗维特裸鼠(RNU)体内培育人淋巴管系统。将人淋巴管内皮细胞(LEC)和骨髓来源的间充质干细胞组合植入围绕AV环的纤维蛋白基质中。植入2或4周后,对动物进行灌注并采集组织。通过对人LYVE1、人CD31和鼠血小板内皮细胞黏附分子的免疫组织化学检测可以证明,植入的细胞在AV环腔中形成了人淋巴管系统。除了在AV环组织中发育出鼠血小板内皮细胞黏附分子阳性的血管系统外,人标记蛋白阳性的血管系统数量也相当。这表明植入的LEC能够改善新工程组织的淋巴管生成。因此,我们能够建立一种生成淋巴管化软组织的组织工程方法。构建了一个轴向血管化的可移植淋巴管网络,无需先进的细胞培养设备,使得淋巴AV环非常适合应用于再生医学。影响声明各种外科手术需要移植自体采集的组织,例如用于治疗淋巴水肿的带血管蒂淋巴结转移术。组织工程移植可以替代自体移植,从而有助于减少这些疗法的副作用。然而,大型构建体的组织工程需要大量的专业知识以及先进的细胞培养设备,而并非每个医院都能具备。像本文介绍的用于生成可移植淋巴管网络的技术这样的组织工程方法,可以作为临床环境中组织工程方法的替代方案。

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