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1.
Journal of Third Military Medical University ; (24)2003.
Article in Chinese | WPRIM | ID: wpr-678322

ABSTRACT

Objective To study the role of down regulation of bcl 2 expression of human cholangiocarcinoma cells with bcl 2 mRNA cleaving ribozyme (RZ). Methods Synthetic gene of bcl 2 mRNA cleaving RZ was recombined with the expression vector of eukaryotic cells. The recombined vector was used to transfect human cholangiocarcinoma cells. The expression of bcl 2 in human cholangiocarcinoma cells was observed by immunocytochemistry and flow cytometry. Results The expression of bcl 2 in human cholangiocarcinoma cells transfected with RZ gene was lower than that of control group. Spontaneous apoptosis was observed in a few of the cells. Conclusion bcl 2 mRNA cleaving RZ can down regulate the expression of bcl 2 of cholangiocarcinoma cells notably and can also induce spontaneous apoptosis.

2.
Chinese Journal of Oncology ; (12): 435-439, 2002.
Article in Chinese | WPRIM | ID: wpr-301994

ABSTRACT

<p><b>OBJECTIVE</b>To investigate the possibility of multi-unit ribozymes to purge bone marrow of chronic myelocytic leukemia (CML), its in vitro cleavage ability and the reversal effect on CML cell's malignant phenotype.</p><p><b>METHODS</b>As bcr-abl fusion gene plays an important role in CML pathology, three single-unit ribozymes were designed and synthesized in 44 base pairs near the fusion point, two enzyme cleavage sites on bcr gene and one on abl gene. Multi-unit ribozymes' in vitro transcription and retroviral vector through gene recombination were constructed. Then, its in vitro cleavage ability was tested and the retroviral vector was transfected into K562 cell. Through MTT assay, the incorporation rate of (3)H-TdR, RT-PCR, Southern and Northern blot hybridization, flow cytometry, transmission and scanning electron microscopy were used to study the effect of multi-unit ribozymes on CML cell proliferation, cell structure, cell cycle and the induction of apoptosis.</p><p><b>RESULTS</b>Multi-unit ribozymes had in vitro cleavage efficiency of 70.8%. After the transfection of multi-unit ribozymes retroviral vector into K562 cell, cell proliferation and DNA synthesis were greatly reduced with an inhibition rate of about 50% after 96 hours of transfection. Multi-unit ribozymes could cleave K562 cell's RNA with a reduction rate about one 1 000 th of the original. By flow cytometry (FCM), 18.4% cells underwent apoptosis after 72 hours transfection with most of the cells blocked in the G phase. Here, the ratio in S phase was lowered by 41.9%. Under transmission and scanning electron microscope, compaction of nuclear chromation and apoptosis bodies were observed in the transfected cells.</p><p><b>CONCLUSION</b>Multi-unit ribozymes possess high cleavage ability in vitro. The ribozymes, whose retroviral vector being transfected into CML cell, are able to express a lasting ability to cleave the fusion gene, induce apoptosis, reduce cell proliferation, revert the malignant phenotype. It is possible to make use of multi-unit ribozymes to purge CML bone marrow. Therefore, multi-unit ribozymes may very well be valuable in the gene therapy of CML.</p>


Subject(s)
Humans , Apoptosis , Cell Division , Fusion Proteins, bcr-abl , Genetics , Metabolism , K562 Cells , RNA, Catalytic , Metabolism , Pharmacology
3.
Chinese Journal of Cancer Biotherapy ; (6)1995.
Article in Chinese | WPRIM | ID: wpr-683767

ABSTRACT

A hammerhead RZ DNA was designed and synthesized, which can specifically cleave the bcl-2 mRNA. After demonstration of right sequences by sequencing and cleavage activity of RZ by in vitro cleaving experiment, The RZ DNA was recombinated into the pDOR - neo vector to form the recombinant pDOR - RZ. Using lipofectin - mediated DNA transfectionpDOR-RZ was successfully introduced into HL - 60 cells. The RZ expression was observed by Southern, RNA dot blot hybridization and flow cytometry (FCM) . The results demonstrated that (a) the RZ was expressed in 72 hours after transfection; (b) the synthesis of Bel - 2 protein was inhibited by the expression of RZ; (c) apoptotic peak appeared in FCM.

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