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2篇 您的检索式:作者名="John T.ISAACS"
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1Mapping of metastasis suppressor genes for prostate cancer by microcell-mediated chromosome transfer显示文摘Aim: To identify the metastasis suppressor genes for prostate cancer. Methods: A copy of human chromosomes was introduced into the highly metastatic Dunning R-3327 rat prostate cancer cells by the use of microcell-mediated chromosome transfer. Relationships between the size of human chromosomes introduced into microcell hybrid clones and the number of lung metastases produced by the clones were analyzed to determine which part of human chromosomes contained the metastasis suppressor gene (s) for prostate cancer. To determine portions of human chromosomes introduced, G-banding chromosomal analysis, fluorescence in situ hybridization analysis, and polymerase chain reaction analysis were performed. Results: Each of microcell hybrid clones containing human chromosomes 7, 8, 10, 11, 12, or 17 showed decreased ability to metastasize to the lung without any loss of ttmaorigenicity. This demonstrates that these human chromosomes contain metastasis suppressor genes for prostate cancer. Spontaneous deletion of portions of human chromosomes was observed in the human chromosome 7, 10, 11, 12, and 17 studies. In the human chromosome 8 study, irradiated microcell-mediated chromosome transfer was performed to enrich chromosomal ann deletions of human chromosome 8. Molecular and cytogenetic analyses of microcell hybrid clones demonstrated that metastasis suppressor genes on human chromosomes were located on 7q21-22, 7q31.2-32, 8p21-12, 10q11-22, 11p13-11.2, 12p11-q13, 12q24-ter, and 17pter-q23. KAI1 and MKK4/SEKI were identified as metastasis suppressor genes from 11p11.2 and 17p12, respectively. Conclusion: This assay system is useful to identify metastasis suppressor gene (s) for prostate cancer.Tomohiko ICHIKAWA Shigeru HOSOKI Hiroyoshi SUZUKI Koichiro AKAKURA Tatsuo IGARASHI Yuzo FURUYA Mitsuo OSHIMURA Carrie W.RINKER-SCHAEFFER Naoki NIHEI J.Carl BARRETT John T.ISAACS Haruo ITO 2000Asian Journal of Andrology2000,2,3:2
2Albumin-linked prostate-specific antigen-activated thapsigargin- and niclosamide-based molecular grenades targeting the microenvironment in metastatic castration-resistant prostate cancer显示文摘Localized prostate cancer is curable via annihilation of the entire cancer neighborhood by surgery or local radiation.Unfortunately,once metastatic,no available therapy is curative.The vast majority will die despite aggressive systemic combinational androgenablation therapies.Thus,there is an urgent need for effective systemic therapeutics that sterilize the entire microenvironment in metastatic castration-resistant prostate cancer(mCRPC).To accomplish this goal,advantage can be taken of the unique biology of mCRPC cells.Like their normal cell of origin,mCRPCs retain expression of the prostate-specific differentiation protein,prostate-specific antigen(PSA),which they abundantly secrete into their extracellular fluid(ECF).This unique,and essentially universal,secretion of enzymatically active PSA into the ECF by mCRPCs creates an exploitable therapeutic index for activation of systemically delivered highly lipophilic toxins as“molecular grenades”covalently linked to cysteine-34 of human serum albumin(HSA)via a stable maleimide containing PSA cleavable peptide such that PSA-dependent hydrolysis(i.e.,“detonation”)releases the grenades restrictively within the ECF of mCRPC.This approach decreases dose-limiting host toxicity while enhancing plasma half-life from minutes to days(i.e.,pharmacokinetic effect)and increasing the tissue concentration of the maleimide coupled albumin delivery(MAD)in the ECF at sites of cancer due to the enhanced permeability of albumin at these sites(i.e.,enhanced permeability and retention effect).This allows the MAD-PSA detonated grenades to circulate throughout the body in a non-toxic form.Only within sites of mCRPC is there a sufficiently high level of enzymatically active PSA to efficiently“pull the pin”on the grenades releasing their lipophilic cellpenetrant toxins from HSA.Thus,if a sufficient level of“detonation”occurs,this will kill mCRPC cells,and sterilize the entire PSA-rich metastatic sites via a bystander effect.In this review,two examples of such MAD-PSA detonated molecular grenades are presenteddone based upon thapsigagin and the other on niclosamide.Emmanuel S.Akinboye W.Nathaniel Brennen Samuel R.Denmeade John T.Isaacs 2019Asian Journal of Urology2019,6,1:2
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