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Hemodialysis bilayer bionic blood vessels developed by the mechanical stimulation of hepatitis B viral X(HBX)genetransfected hepatic stellate cells
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作者 Hongyi LIU Yuanyuan ZHOU +8 位作者 Peng GUO Xiongwei ZHENG Weibin CHEN Shichao ZHANG Yu FU Xu ZHOU Zheng WAN Bin ZHAO Yilin ZHAO 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2024年第6期499-512,共14页
Artificial vascular graft(AVG)fistula is widely used for hemodialysis treatment in patients with renal failure.However,it has poor elasticity and compliance,leading to stenosis and thrombosis.The ideal artificial bloo... Artificial vascular graft(AVG)fistula is widely used for hemodialysis treatment in patients with renal failure.However,it has poor elasticity and compliance,leading to stenosis and thrombosis.The ideal artificial blood vessel for dialysis should replicate the structure and components of a real artery,which is primarily maintained by collagen in the extracellular matrix(ECM)of arterial cells.Studies have revealed that in hepatitis B virus(HBV)-induced liver fibrosis,hepatic stellate cells(HSCs)become hyperactive and produce excessive ECM fibers.Furthermore,mechanical stimulation can encourage ECM secretion and remodeling of a fiber structure.Based on the above factors,we transfected HSCs with the hepatitis B viral X(HBX)gene for simulating the process of HBV infection.Subsequently,these HBX-HSCs were implanted into a polycaprolactonepolyurethane(PCL-PU)bilayer scaffold in which the inner layer is dense and the outer layer consists of pores,which was mechanically stimulated to promote the secretion of collagen nanofiber from the HBX-HSCs and to facilitate crosslinking with the scaffold.We obtained an ECM-PCL-PU composite bionic blood vessel that could act as access for dialysis after decellularization.Then,the vessel scaffold was implanted into a rabbit’s neck arteriovenous fistula model.It exhibited strong tensile strength and smooth blood flow and formed autologous blood vessels in the rabbit’s body.Our study demonstrates the use of human cells to create biomimetic dialysis blood vessels,providing a novel approach for creating clinical vascular access for dialysis. 展开更多
关键词 Composite bilayer bionic blood vessel Extracellular matrix(ECM) Hepatic stellate cells(HSCs) Hepatitis B viral x(hbx)gene Mechanical force
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乙型肝炎病毒X基因通过抑制Caspase-1表达促进肝癌细胞增殖
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作者 韦武均 王春芳 +5 位作者 钟丽梅 黄晶晶 唐霏林 黄艳 黄英新 陆艳珍 《河北医药》 CAS 2024年第19期2927-2930,共4页
目的 探究乙型肝炎病毒X基因(HBx)对HepG2细胞中Caspase-1介导的肝细胞增殖的影响。方法 用脂质体转染法将HBx真核表达载体pCDNA3.1-HBx瞬时转入HepG2细胞,以阴性载体转染的HepG2细胞(NC)为对照。转染后72 h收集细胞,通过RT-PCR检测HBx... 目的 探究乙型肝炎病毒X基因(HBx)对HepG2细胞中Caspase-1介导的肝细胞增殖的影响。方法 用脂质体转染法将HBx真核表达载体pCDNA3.1-HBx瞬时转入HepG2细胞,以阴性载体转染的HepG2细胞(NC)为对照。转染后72 h收集细胞,通过RT-PCR检测HBx的表达,通过qPCR和Western blot法检测Caspase-1的mRNA和蛋白质表达,并通过CCK-8检测HepG2-HBx和HepG2-NC的增殖情况。结果 RT-PCR证实HBx成功转染HepG2细胞株,HepG2-HBx细胞中Caspase-1的mRNA和蛋白表达水平显著低于HepG2-NC组。HepG2-HBx细胞的增殖能力显著高于HepG2-NC组。结论 HBx通过抑制Caspase-1的表达诱导HepG2细胞增殖。 展开更多
关键词 hbx基因 HEPG2细胞 CASPASE-1 细胞增殖
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