Yu J, Yuan J, Xu R
Renmin Hospital, Wuhan University Department of gastrointestinal surgery Wuhan China yjxwhu@aliyun.com.
Renmin Hospital, Wuhan University Department of Ophthalmology Wuhan China.
Cell Mol Biol (Noisy-le-grand). 2014 Sep 16;60(3):16-22.
Engineered hepatic tissue (EHT) is considered as a promising strategy for healing acute liver failure (ALF), therefore, in the present study we evaluated the therapeutic potential of the EHT which engaged with bone marrow mesenchymal cells (BMSCs) derived hepatocytes (BMSCs—Hepas) in ALF rats. After characterization of isolated BMSCs, we seeded passage 3 BMSCs which have being cultured in medium containing 20 ng/ml hepatocyte growth factor (HGF) and 10 ng/ml epidermal growth factor (EGF) for 14 days on three scaffolds individually in Transwell system, and then cultured for more than 3 days to construct three kinds of EHT named EHT1, EHT2, and EHT3. Based on morphology and urea production assays, we chose an optimal one and transplanted it into ALF rat with 90% subtotal hepatectomy and assessed its therapeutic potential by survival time, hepatic encephalopathy score (HES) and related liver function test. The remnant liver was acquired, sectioned and identified by con-focal scanning microscopy. The isolated cells possessed basic properties of BMSCs, when cultured in hepatogenic medium for 2 weeks, BMSCs would restore to the functional properties of primary rats' hepatocytes, expressing albumin (ALB) and alpha fetoprotein (AFP) simultaneously. Transplantation of EHT3 significantly prolonged the survival time, increased HES, and ameliorated the liver function. BMSC will be a newly cell source for the construction of EHT. Importantly, the EHT transplantation may be an effective strategy to treat ALF in clinic.
工程化肝组织(EHT)被认为是治疗急性肝衰竭(ALF)的一种有前景的策略,因此,在本研究中,我们评估了与骨髓间充质细胞(BMSCs)来源的肝细胞(BMSCs-Hepas)结合的EHT在ALF大鼠中的治疗潜力。在对分离的BMSCs进行鉴定后,我们将传代3的BMSCs接种到Transwell系统中的三种支架上,这些BMSCs在含有20 ng/ml肝细胞生长因子(HGF)和10 ng/ml表皮生长因子(EGF)的培养基中培养了14天,然后再培养3天以上,构建了三种EHT,分别命名为EHT1、EHT2和EHT3。基于形态学和尿素生成测定,我们选择了最佳的一种,并将其移植到90%肝大部切除的ALF大鼠中,通过生存时间、肝性脑病评分(HES)和相关肝功能测试评估其治疗潜力。获取残余肝脏,切片并通过共聚焦扫描显微镜进行鉴定。分离的细胞具有BMSCs的基本特性,当在肝细胞生成培养基中培养2周时,BMSCs会恢复到原代大鼠肝细胞的功能特性,同时表达白蛋白(ALB)和甲胎蛋白(AFP)。EHT3的移植显著延长了生存时间,提高了HES,并改善了肝功能。BMSCs将成为构建EHT的新细胞来源。重要的是,EHT移植可能是临床上治疗ALF的有效策略。