Glypican-3 is a protein encoded by the Glypican-3 gene located on human X chromosome (Xq26), composed of two subunits, a 40 kDa N-terminal subunit, and a 30 kDa C-terminal subunit. Glypican-3 is a currently potential ...Glypican-3 is a protein encoded by the Glypican-3 gene located on human X chromosome (Xq26), composed of two subunits, a 40 kDa N-terminal subunit, and a 30 kDa C-terminal subunit. Glypican-3 is a currently potential target molecule for liver cancer treatments because of its over-expression and growth effects on hepatocellular carcinoma (HCC). This study examined the expression and purification of a C-terminal subunit of Glypican-3 protein (GPC3-Csub) due to its application in both diagnosis and therapy for hepatocellular carcinoma. The gene encoding for GPC3-Csub was successfully cloned into plasmid pET28a fused with an affinity tag composed of six consecutive histidine residues (His-tag). Recombinant protein GPC3-Csub was expressed in Escherichia coli BL21 (DE3) in the condition of adding 3% ethanol with IPTG induction. GPC3-Csub was extracted using repeated freeze-thaw cycles with lysozyme, and inclusion bodies were solubilized by 8M Urea, SDS 10% in pH 12. His-tag fused GPC3-Csub proteins allowed it to be purified by affinity chromatography method using the Nickel-nitrilotriacetic acid (Ni-NTA) column. High expression of GPC3-Csub was confirmed by Coomassie staining and western-blot. GPC3-Csub could be isolated with a Ni-NTA column and have a purity of about 90%.展开更多
Immunotherapy is one of the strategies to boost natural defenses to fight cancer. Immuno-oncology is an artificial stimulation of the human immune system to recognize and kill selectively neoplastic cells at different...Immunotherapy is one of the strategies to boost natural defenses to fight cancer. Immuno-oncology is an artificial stimulation of the human immune system to recognize and kill selectively neoplastic cells at different stage of transformation. Cancer cells have tumor antigens and the antibody of the immune system, binding them, can detect molecules on their extracellular side of cell membrane. Among these proteins, it is rising in interest and use<span style="font-family:Verdana;">d</span><span style="font-family:Verdana;"> for early detection of hepatocellular carcinoma (HCC) Glypican-3 (GPC-3) protein. It is a heparan sulfate proteoglycan (HSPG), anchored to the cell membrane of transformed hepatocytes. We investigated its function as key regulator of hepatocytes neoplastic transformation. Noteworthy, GPC-3 protein has been implicated in different pathways from cell growth to cell motility and migration. More recently, GPC-3 has been evaluated as a useful marker for HCC due to its increased expression in the liver during tumorigenesis and its absence in normal liver. Immunotherapy that targets GPC-3 domains and its connected proteins </span><span style="font-family:Verdana;">are</span><span style="font-family:Verdana;"> currently under investigation. These new biomarkers may hold potential for the detection and treatment of HCC and other diseases in which GPC-3 may be overexpressed and/or play a crucial role. This review will summarize the current knowledge regarding the active immunotherapy developed to treat HCC and it will evaluate aspects of GPC-3 (structure and biology) as advantages and potential pitfalls for considering it as a valuable immunotherapeutic target. We also elaborated the current literature with the aim to better understand its biological interactions at a molecular and cellular level to identify alternative or combined targets</span><span style="font-family:Verdana;">,</span><span style="font-family:Verdana;"> due to the existing gap in the literature surrounding GPC-3. The role GPC-3 plays in the hepatocellular carcinoma phenotype can be targeted for a novel immunotherapy strategy that can specify cell-mediated destruction of neoplastic cell that spares normal liver tissue, and it can be exploited as a new serum marker to trend for diagnosis and disease progression measurements. We believe further investigation of its functions and structure, including alternative cellular localizations, is necessary to evaluate GPC-3 as valuable target to cure this cancer</span><span style="font-family:Verdana;">.</span>展开更多
目的:探讨DKK-1、DKK-2和人磷脂酰肌醇蛋白聚糖3(glypican3,GPC3)蛋白在肝细胞癌组织中的表达及临床意义。方法:采用组织芯片联合免疫组织化学法检测DKK-1、DKK-2和GPC3蛋白在10例正常肝、12例肝硬化、57例肝细胞癌及癌旁肝组织中的表...目的:探讨DKK-1、DKK-2和人磷脂酰肌醇蛋白聚糖3(glypican3,GPC3)蛋白在肝细胞癌组织中的表达及临床意义。方法:采用组织芯片联合免疫组织化学法检测DKK-1、DKK-2和GPC3蛋白在10例正常肝、12例肝硬化、57例肝细胞癌及癌旁肝组织中的表达差异,并分析其临床意义。结果:免疫组织化学检测结果发现,DKK-1和DKK-2在肝细胞癌组织中阳性染色率分别为59.65%(34/57)和57.89%(33/57);GPC3只在肝细胞癌组织中表达,其阳性染色率为47.37%(27/57),而在正常肝、肝硬化及癌旁肝组织中均呈阴性表达。DKK-1与DKK-2阳性表达之间存在密切相关性(χ2=0.570,P=0.000),DKK-2与GPC3阳性染色之间也存在相关性(χ2=0.272,P=0.041)。统计分析DKK-1、DKK-2及GPC3在肝细胞癌组织中阳性染色与肝癌患者性别、年龄、血清甲胎蛋白(α-fetoprotein,AFP)水平、乙肝表面抗原(hepatitis B surface antigen,HBsAg)、肿瘤大小、病理学分级、静脉浸润以及是否伴随肝硬化等的相关性,结果表明血清AFP水平与GPC3表达呈正相关(P=0.007),HBsAg与DKK-1表达呈正相关(P=0.037),DKK-1阳性染色与肝细胞癌组织分级存在相关性(P=0.014),与其他参数则无相关性。结论:GPC3在肝细胞癌组织的阳性染色率为47.37%,GPC3染色阴性的肝细胞癌组织中DKK-1和DKK-2双阳性染色率为40.00%,而GPC3(+)联合DKK-1(+)/DKK-2(+)/GPC3(-)可将肝细胞癌的免疫组织化学检出率提高至68.42%(39/57),降低肝癌免疫组织化学检测中的假阴性率。展开更多
文摘Glypican-3 is a protein encoded by the Glypican-3 gene located on human X chromosome (Xq26), composed of two subunits, a 40 kDa N-terminal subunit, and a 30 kDa C-terminal subunit. Glypican-3 is a currently potential target molecule for liver cancer treatments because of its over-expression and growth effects on hepatocellular carcinoma (HCC). This study examined the expression and purification of a C-terminal subunit of Glypican-3 protein (GPC3-Csub) due to its application in both diagnosis and therapy for hepatocellular carcinoma. The gene encoding for GPC3-Csub was successfully cloned into plasmid pET28a fused with an affinity tag composed of six consecutive histidine residues (His-tag). Recombinant protein GPC3-Csub was expressed in Escherichia coli BL21 (DE3) in the condition of adding 3% ethanol with IPTG induction. GPC3-Csub was extracted using repeated freeze-thaw cycles with lysozyme, and inclusion bodies were solubilized by 8M Urea, SDS 10% in pH 12. His-tag fused GPC3-Csub proteins allowed it to be purified by affinity chromatography method using the Nickel-nitrilotriacetic acid (Ni-NTA) column. High expression of GPC3-Csub was confirmed by Coomassie staining and western-blot. GPC3-Csub could be isolated with a Ni-NTA column and have a purity of about 90%.
文摘Immunotherapy is one of the strategies to boost natural defenses to fight cancer. Immuno-oncology is an artificial stimulation of the human immune system to recognize and kill selectively neoplastic cells at different stage of transformation. Cancer cells have tumor antigens and the antibody of the immune system, binding them, can detect molecules on their extracellular side of cell membrane. Among these proteins, it is rising in interest and use<span style="font-family:Verdana;">d</span><span style="font-family:Verdana;"> for early detection of hepatocellular carcinoma (HCC) Glypican-3 (GPC-3) protein. It is a heparan sulfate proteoglycan (HSPG), anchored to the cell membrane of transformed hepatocytes. We investigated its function as key regulator of hepatocytes neoplastic transformation. Noteworthy, GPC-3 protein has been implicated in different pathways from cell growth to cell motility and migration. More recently, GPC-3 has been evaluated as a useful marker for HCC due to its increased expression in the liver during tumorigenesis and its absence in normal liver. Immunotherapy that targets GPC-3 domains and its connected proteins </span><span style="font-family:Verdana;">are</span><span style="font-family:Verdana;"> currently under investigation. These new biomarkers may hold potential for the detection and treatment of HCC and other diseases in which GPC-3 may be overexpressed and/or play a crucial role. This review will summarize the current knowledge regarding the active immunotherapy developed to treat HCC and it will evaluate aspects of GPC-3 (structure and biology) as advantages and potential pitfalls for considering it as a valuable immunotherapeutic target. We also elaborated the current literature with the aim to better understand its biological interactions at a molecular and cellular level to identify alternative or combined targets</span><span style="font-family:Verdana;">,</span><span style="font-family:Verdana;"> due to the existing gap in the literature surrounding GPC-3. The role GPC-3 plays in the hepatocellular carcinoma phenotype can be targeted for a novel immunotherapy strategy that can specify cell-mediated destruction of neoplastic cell that spares normal liver tissue, and it can be exploited as a new serum marker to trend for diagnosis and disease progression measurements. We believe further investigation of its functions and structure, including alternative cellular localizations, is necessary to evaluate GPC-3 as valuable target to cure this cancer</span><span style="font-family:Verdana;">.</span>
文摘目的:探讨DKK-1、DKK-2和人磷脂酰肌醇蛋白聚糖3(glypican3,GPC3)蛋白在肝细胞癌组织中的表达及临床意义。方法:采用组织芯片联合免疫组织化学法检测DKK-1、DKK-2和GPC3蛋白在10例正常肝、12例肝硬化、57例肝细胞癌及癌旁肝组织中的表达差异,并分析其临床意义。结果:免疫组织化学检测结果发现,DKK-1和DKK-2在肝细胞癌组织中阳性染色率分别为59.65%(34/57)和57.89%(33/57);GPC3只在肝细胞癌组织中表达,其阳性染色率为47.37%(27/57),而在正常肝、肝硬化及癌旁肝组织中均呈阴性表达。DKK-1与DKK-2阳性表达之间存在密切相关性(χ2=0.570,P=0.000),DKK-2与GPC3阳性染色之间也存在相关性(χ2=0.272,P=0.041)。统计分析DKK-1、DKK-2及GPC3在肝细胞癌组织中阳性染色与肝癌患者性别、年龄、血清甲胎蛋白(α-fetoprotein,AFP)水平、乙肝表面抗原(hepatitis B surface antigen,HBsAg)、肿瘤大小、病理学分级、静脉浸润以及是否伴随肝硬化等的相关性,结果表明血清AFP水平与GPC3表达呈正相关(P=0.007),HBsAg与DKK-1表达呈正相关(P=0.037),DKK-1阳性染色与肝细胞癌组织分级存在相关性(P=0.014),与其他参数则无相关性。结论:GPC3在肝细胞癌组织的阳性染色率为47.37%,GPC3染色阴性的肝细胞癌组织中DKK-1和DKK-2双阳性染色率为40.00%,而GPC3(+)联合DKK-1(+)/DKK-2(+)/GPC3(-)可将肝细胞癌的免疫组织化学检出率提高至68.42%(39/57),降低肝癌免疫组织化学检测中的假阴性率。