The receptor for autocrine motility factor (AMFR) is known to be involved in the process of AMF-mediated cell migration and metastasis. This paper describes the procedures of non-radioactive in situ hybridization (ISH...The receptor for autocrine motility factor (AMFR) is known to be involved in the process of AMF-mediated cell migration and metastasis. This paper describes the procedures of non-radioactive in situ hybridization (ISH) detection of AMFR mRNA in both paraffin-embedded surgical sections and cultured cells using either biotinylated oligonucleotide probes or digoxigenin-labeled RNA probes. The results showed that the AMFR mRNA was expressed at an enhanced level in hyperplaJstic and malignant tissues of breast and prostate cancer patient surgical specimens, indicating that the elevated AMFR expression was associated with the tissue malignancy Moreover, AMFR mRNA was detected in both normal and earcinoma cells when cultured at a subconfluent density. However, AMFR expression was inhibited in confluent normal (3T3-A31 murine fibroblast and FHs738BL human bladder) cells while it continued to express in carcinoma (J82 human bladder)and metastatic (3T3-M murine fibroblast) cells irrespective of cell density This suggested a cell-cell contact downregulation of AMFR mRNA expression in normal but not in cancer cells. The ISH data obtained in this study are closely consistent with the AMFR protein expression pattern previously reported, implying that the differential expression of AMFR gene may be regulated and controlled at the transcriptional level.展开更多
To construct the antisense transforming growth factorβ1 (TGFβ1) gene and investigate the effect of TGFβ1 autocrine loop blockage on the proliferation of osteosarcoma cells. TGFβ1 cDNA was cloned by RT-PCR from hum...To construct the antisense transforming growth factorβ1 (TGFβ1) gene and investigate the effect of TGFβ1 autocrine loop blockage on the proliferation of osteosarcoma cells. TGFβ1 cDNA was cloned by RT-PCR from human osteosarcoma cells (MG-63) and inserted into pcDNA3 to construct an antisense expression vector, which was dubbed pcDNA3-TGFβ1(-). MTT was used to detect the proliferation of osteosarcoma cells transfected by antisense TGFβl gene. Our results showed that the proliferation of the transfected osteosarcoma cells was suppressed markedly. It is concluded that TGFβ1 autocrine loop blockage in osteosarcoma cells could inhibit cell proliferation, which might be helpful for gene therapy of osteosarcoma.展开更多
Objective To evaluate the effects of transforming growth factor β1 (TGF β1) autocrine blockage on proliferation activity and drug sensitivity of osteosarcoma. Methods Northern blot, MTT determination, and 3H thymidi...Objective To evaluate the effects of transforming growth factor β1 (TGF β1) autocrine blockage on proliferation activity and drug sensitivity of osteosarcoma. Methods Northern blot, MTT determination, and 3H thymidine incorporation were used to investigate the effects of antisense TGF β1 gene on osteosarcoma. Results The proliferation of osteosarcoma cells transfected by antisense TGF β1 gene was suppressed markedly, and adriamycin sensitivity was significantly increased. Conclusion Blockage of osteosarcoma cells TGF β1 autocrine loop inhibits cell proliferation and enhances chemother-apy sensitivity.展开更多
文摘The receptor for autocrine motility factor (AMFR) is known to be involved in the process of AMF-mediated cell migration and metastasis. This paper describes the procedures of non-radioactive in situ hybridization (ISH) detection of AMFR mRNA in both paraffin-embedded surgical sections and cultured cells using either biotinylated oligonucleotide probes or digoxigenin-labeled RNA probes. The results showed that the AMFR mRNA was expressed at an enhanced level in hyperplaJstic and malignant tissues of breast and prostate cancer patient surgical specimens, indicating that the elevated AMFR expression was associated with the tissue malignancy Moreover, AMFR mRNA was detected in both normal and earcinoma cells when cultured at a subconfluent density. However, AMFR expression was inhibited in confluent normal (3T3-A31 murine fibroblast and FHs738BL human bladder) cells while it continued to express in carcinoma (J82 human bladder)and metastatic (3T3-M murine fibroblast) cells irrespective of cell density This suggested a cell-cell contact downregulation of AMFR mRNA expression in normal but not in cancer cells. The ISH data obtained in this study are closely consistent with the AMFR protein expression pattern previously reported, implying that the differential expression of AMFR gene may be regulated and controlled at the transcriptional level.
基金This work was supported by a grant from Chenguang Project of Wuhan(Serial No.20025001028).
文摘To construct the antisense transforming growth factorβ1 (TGFβ1) gene and investigate the effect of TGFβ1 autocrine loop blockage on the proliferation of osteosarcoma cells. TGFβ1 cDNA was cloned by RT-PCR from human osteosarcoma cells (MG-63) and inserted into pcDNA3 to construct an antisense expression vector, which was dubbed pcDNA3-TGFβ1(-). MTT was used to detect the proliferation of osteosarcoma cells transfected by antisense TGFβl gene. Our results showed that the proliferation of the transfected osteosarcoma cells was suppressed markedly. It is concluded that TGFβ1 autocrine loop blockage in osteosarcoma cells could inhibit cell proliferation, which might be helpful for gene therapy of osteosarcoma.
基金Supported by Wuhan Chenguang Project (20025001028)
文摘Objective To evaluate the effects of transforming growth factor β1 (TGF β1) autocrine blockage on proliferation activity and drug sensitivity of osteosarcoma. Methods Northern blot, MTT determination, and 3H thymidine incorporation were used to investigate the effects of antisense TGF β1 gene on osteosarcoma. Results The proliferation of osteosarcoma cells transfected by antisense TGF β1 gene was suppressed markedly, and adriamycin sensitivity was significantly increased. Conclusion Blockage of osteosarcoma cells TGF β1 autocrine loop inhibits cell proliferation and enhances chemother-apy sensitivity.