Literature DB >> 8431845

MDR1 gene expression and its clinical relevance in primary gastric carcinomas.

J Wallner1, D Depisch, A Gsur, M Götzl, K Haider, R Pirker.   

Abstract

BACKGROUND: Drug resistance remains a major problem in gastric carcinomas. To evaluate the mechanisms involved in this resistance, the authors determined the expression of the MDR1 gene, a multidrug resistance gene, in primary gastric carcinomas.
METHODS: MDR1 RNA levels of gastric carcinoma specimens (n = 22) were determined by slot blot analysis. An MDR1 cDNA (probe 5A) was used for the hybridization.
RESULTS: MDR1 RNA was detected in 41% of the gastric carcinomas, with high levels in 18% of the specimens. No expression of the MDR3 gene was observed in these tumors. MDR1 gene expression was independent of patient age, tumor localization, and lymph node involvement. However, MDR1 RNA expression was less frequent in locally advanced tumors and was absent in the primary tumors of all six patients who had distant metastases.
CONCLUSIONS: The data indicate that multidrug-resistant cells are present in primary gastric carcinomas and suggest that multidrug resistance might contribute to the clinical drug resistance of these tumors.

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Year:  1993        PMID: 8431845     DOI: 10.1002/1097-0142(19930201)71:3<667::aid-cncr2820710303>3.0.co;2-6

Source DB:  PubMed          Journal:  Cancer        ISSN: 0008-543X            Impact factor:   6.860


  11 in total

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5.  Immunohistochemical localization of P-glycoprotein and expression of the multidrug resistance-1 gene in human pancreatic cancer: relevance to indicator of better prognosis.

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7.  Pygo2 as a novel biomarker in gastric cancer for monitoring drug resistance by upregulating MDR1.

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9.  MDR1 gene expression in primary colorectal carcinomas.

Authors:  R Pirker; J Wallner; A Gsur; M Götzl; S Zöchbauer; W Scheithauer; D Depisch
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Review 10.  Molecular mechanisms of chemoresistance in gastric cancer.

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