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Autocrine production of TGF-{alpha} and TGF-{beta} during tumour progression of rat oral keratinocytes
Authors:Donnelly, M.J.   Patel, V.   Yeudall, W.A.   Game, S.M.   Scully, C.   Prime, S.S.
Affiliation:Centre for the Study of Oral Disease, University Department of Oral Medicine, Pathology and Microbiology, University of Bristol Dental School and Hospital Lower Maudlin Street, Bristol BS1 2LY, UK
Abstract:This study describes a new technique to separate transforminggrowth factor-{alpha} (TGF-{alpha}) and transforming growth factor-ß(TGF-ß) from culture supernatants using ion exchangechromatography; assays of competitive inhibition of ligand bindingwere used to quantify the amount of growth factor. The methodwas simple, inexpensive and did not require large volumes ofculture medium. The autocrine production of TGF-{alpha} and TGF-ßwas examined in oral keratinocyte cell lines derived from thepalatal and lingual mucosa of rats painted with the carcinogen4-nitroquinoline N-oxide (4NQO). Escape from cellular senescence(immortality) was associated with a marked increase in TGF-{alpha}production (cell line R2P) but tumour progression, as reflectedby the development of anchorage independence in agarose gelsand tumorigenicity in athymic mice, did not result in a consistentincrease or decrease of TGF-{alpha} production compared to normals.Four cell lines(R8AP, R1T, R3T, R1P), with different functionalcellular phenotypes, produced two to three times more TGF-{alpha} thannormals. TGF-{alpha} production was inversely correlated to epidermalgrowth factor cell surface receptor expression. The autocrineproduction of TGF-ß was variable with the majorityof cell lines producing markedly little TGF-ß threecell lines (R4T, R8BP, R9T) produced more TGF-ß thannormals. The production of TGF-ß was unrelated totumour progression, the expression of TGF-ß cell surfacereceptors or TGF-{alpha} production. The results indicate that theautocrine production of TGF-{alpha} and TGF-ß are not accuratemarkers of tumour progression in the rat 4NQO model of oralcarcinogenesis.
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