目的探讨血管内皮生长因子(VEGF)诱导的成骨细胞中结缔组织生长因子(CTGF/CCN2)对人脐静脉血管内皮细胞(HUVECs)的影响。方法用Real time PCR法及ELISA法检测VEGF诱导成骨细胞(OSE)中CCN2含量;制备成骨细胞(OSE)上清液;将细胞分为contro...目的探讨血管内皮生长因子(VEGF)诱导的成骨细胞中结缔组织生长因子(CTGF/CCN2)对人脐静脉血管内皮细胞(HUVECs)的影响。方法用Real time PCR法及ELISA法检测VEGF诱导成骨细胞(OSE)中CCN2含量;制备成骨细胞(OSE)上清液;将细胞分为control组、OSE组和VEGF-OSE组(n=3)。用小干扰RNA(siRNA)转染法抑制成骨细胞中CCN2的表达;Transwell法检测内皮细胞迁移;Matrigel实验检测管样结构形成能力。结果VEGF呈时间和剂量依赖性上调成骨细胞中CCN2 mRNA和蛋白的表达;CCN2可促进内皮细胞的迁移和管样结构形成(P<0.05),当CCN2被siRNA基因沉默或者加入CCN2抗体后,CCN2对内皮细胞迁移和管样结构形成的促进作用均受到明显抑制(P<0.05)。结论 VEGF通过上调成骨细胞中CCN2的表达,促内皮细胞(HUVECs)的迁移和血管生成。展开更多
Osteosarcoma (OS) is the most common histological form of primary bone cancer in childhood cancer and young adults. At present, OS is widely investigated because of the interaction between the tumor and bone microenvi...Osteosarcoma (OS) is the most common histological form of primary bone cancer in childhood cancer and young adults. At present, OS is widely investigated because of the interaction between the tumor and bone microenvironment and the effect of such interaction on OS progression and metastasis.1 The connective tissue growth factor (CTGF), also known as cellular communication network factor 2 (CCN2), is a secreted extracellular matrix-associated protein. CTGF is as active as the regulators of signaling activities of several different pathways and an orchestrator of their cross-talk.2 Therefore, we conducted experiments to investigate the effects of CTGF on OS tumor progress and the cross-talk with stromal cells in the tumor microenvironment.展开更多
Recent advances in cell and molecular radiobiology clearly showed that tissue response to radiation injury cannot be restricted to a simple cell-killing process, but depends upon continuous and integrated pathogenic p...Recent advances in cell and molecular radiobiology clearly showed that tissue response to radiation injury cannot be restricted to a simple cell-killing process, but depends upon continuous and integrated pathogenic processes, involving cell differentiation and crosstalk between the various cellular components of the tissue within the extracellular matrix. Thus, the prior concept of primary cell target in which a single-cell type (whatever it's epithelial or endothelial cells) dictates the whole tissue response to radiation injury has to be replaced by the occurrence of coordinated multicellular response that may either lead to tissue recovery or to sequel development. In this context, the present review will focus on the maintenance of the radiation-induced wound healing and fibrogenic signals triggered by and through the microenvironment toward the mesenchymal cell compartment, and will highlight how sequential and sustained modifications in cell phenotypes will in cascade modify ceU-to-ceU interactions and tissue composition.展开更多
文摘目的探讨血管内皮生长因子(VEGF)诱导的成骨细胞中结缔组织生长因子(CTGF/CCN2)对人脐静脉血管内皮细胞(HUVECs)的影响。方法用Real time PCR法及ELISA法检测VEGF诱导成骨细胞(OSE)中CCN2含量;制备成骨细胞(OSE)上清液;将细胞分为control组、OSE组和VEGF-OSE组(n=3)。用小干扰RNA(siRNA)转染法抑制成骨细胞中CCN2的表达;Transwell法检测内皮细胞迁移;Matrigel实验检测管样结构形成能力。结果VEGF呈时间和剂量依赖性上调成骨细胞中CCN2 mRNA和蛋白的表达;CCN2可促进内皮细胞的迁移和管样结构形成(P<0.05),当CCN2被siRNA基因沉默或者加入CCN2抗体后,CCN2对内皮细胞迁移和管样结构形成的促进作用均受到明显抑制(P<0.05)。结论 VEGF通过上调成骨细胞中CCN2的表达,促内皮细胞(HUVECs)的迁移和血管生成。
基金supported by the National Natural Science Foundation of China(No.81102035,and 82060388)Doctor Foundation of Guizhou Provincial People's Hospital(No.GZSYBS[2019]08)+2 种基金Guizhou High-level Innovative Talents Project(No.QKPT[2017]5724-6)Guizhou Department and Platform Talents(No.[2017]5735-31)Science and Technology Department of Guizhou Province(No.QKHJC[2021-396]).
文摘Osteosarcoma (OS) is the most common histological form of primary bone cancer in childhood cancer and young adults. At present, OS is widely investigated because of the interaction between the tumor and bone microenvironment and the effect of such interaction on OS progression and metastasis.1 The connective tissue growth factor (CTGF), also known as cellular communication network factor 2 (CCN2), is a secreted extracellular matrix-associated protein. CTGF is as active as the regulators of signaling activities of several different pathways and an orchestrator of their cross-talk.2 Therefore, we conducted experiments to investigate the effects of CTGF on OS tumor progress and the cross-talk with stromal cells in the tumor microenvironment.
文摘Recent advances in cell and molecular radiobiology clearly showed that tissue response to radiation injury cannot be restricted to a simple cell-killing process, but depends upon continuous and integrated pathogenic processes, involving cell differentiation and crosstalk between the various cellular components of the tissue within the extracellular matrix. Thus, the prior concept of primary cell target in which a single-cell type (whatever it's epithelial or endothelial cells) dictates the whole tissue response to radiation injury has to be replaced by the occurrence of coordinated multicellular response that may either lead to tissue recovery or to sequel development. In this context, the present review will focus on the maintenance of the radiation-induced wound healing and fibrogenic signals triggered by and through the microenvironment toward the mesenchymal cell compartment, and will highlight how sequential and sustained modifications in cell phenotypes will in cascade modify ceU-to-ceU interactions and tissue composition.