Sinha Saloni, Nguyen Duc-Huy T, Hassan Nora, Ali Qazi, Sethiadi Jason, Tsoy Sergey, Schwartz Robert E
Department of Medicine, Weill Cornell Medicine, NY, USA.
Department of Physiology, Biophysics, and Systems Biology, Weill Cornell Medicine, NY, USA.
Bio Protoc. 2024 Jan 20;14(2):e4925. doi: 10.21769/BioProtoc.4925.
Cell-based liver therapies utilizing functionally stabilized engineered hepatic tissue hold promise in improving host liver functions and are emerging as a potential alternative to whole-organ transplantation. Owing to the ability to accommodate a large ex vivo engineered hepatocyte mass and dense vascularization, the mesenteric parametrial fat pad in female nude mice forms an ideal anatomic microenvironment for ectopic hepatocyte transplantation. However, the lack of any reported protocol detailing the presurgical preparation and construction of the engineered hepatic hydrogel, fat pad surgery, and postsurgical care and bioluminescence imaging to confirm in vivo hepatocyte implantation makes it challenging to reliably perform and test engraftment and integration with the host. In this report, we provide a step-by-step protocol for in vivo hepatocyte implantation, including preparation of hepatic tissue for implantation, the surgery process, and bioluminescence imaging to assess survival of functional hepatocytes. This will be a valuable protocol for researchers in the fields of tissue engineering, transplantation, and regenerative medicine. Key features • Primary human hepatocytes transduced ex vivo with a lentiviral vector carrying firefly luciferase are surgically implanted onto the fat pad. • Bioluminescence helps monitor survival of transplanted hepatic tissue over time. • Applicable for assessment of graft survival, graft-host integration, and liver regeneration.
利用功能稳定的工程化肝组织进行基于细胞的肝脏治疗,有望改善宿主肝脏功能,并正成为全器官移植的一种潜在替代方案。由于能够容纳大量体外工程化肝细胞团以及密集的血管化,雌性裸鼠的肠系膜旁脂肪垫形成了用于异位肝细胞移植的理想解剖微环境。然而,目前缺乏任何详细报告,说明术前准备、工程化肝水凝胶的构建、脂肪垫手术、术后护理以及用于确认体内肝细胞植入的生物发光成像,这使得可靠地进行并测试植入以及与宿主的整合具有挑战性。在本报告中,我们提供了体内肝细胞植入的分步方案,包括植入用肝组织的制备、手术过程以及用于评估功能性肝细胞存活的生物发光成像。这对于组织工程、移植和再生医学领域的研究人员将是一个有价值的方案。关键特性 • 用携带萤火虫荧光素酶的慢病毒载体体外转导的原代人肝细胞通过手术植入脂肪垫。 • 生物发光有助于长期监测移植肝组织的存活情况。 • 适用于评估移植物存活、移植物与宿主的整合以及肝脏再生。