Selective antimitotic effects of estramustine correlate with its antimicrotubule properties on glioblastoma and astrocytes.
Yoshida D, Cornell-Bell A, Piepmeier J. Selective antimitotic effects of estramustine correlate with its antimicrotubule properties on glioblastoma and astrocytes. Neurosurgery 1994, 34: 863-7; discussion 867-8. PMID: 8052384, DOI: 10.1227/00006123-199405000-00012.Peer-Reviewed Original ResearchConceptsAntimitotic effectHuman glioblastoma cellsGlioma cellsGlioblastoma cellsEstramustine binding proteinModest antiproliferative effectsConcentration-dependent cytotoxic effectConcentration-dependent inhibitionEstramustine treatmentImmunohistochemical analysisAstrocyte viabilityEstramustineAstrocyte culturesAntiproliferative effectsMonoclonal antibodiesAstrocytesHuman glioblastomaTumor culturesCytotoxic effectsDimethylthiazol-2Diphenyltetrazolium bromideAntimicrotubule activityDeoxyribonucleic acid synthesisExpression of transforming growth factor-β1 messenger ribonucleic acid and the modulation of deoxyribonucleic acid synthesis by transforming growth factor-β1 in human endometrial cells
Marshburn P, Arici A, Casey M. Expression of transforming growth factor-β1 messenger ribonucleic acid and the modulation of deoxyribonucleic acid synthesis by transforming growth factor-β1 in human endometrial cells. American Journal Of Obstetrics And Gynecology 1994, 170: 1152-1158. PMID: 8166201, DOI: 10.1016/s0002-9378(94)70112-1.Peer-Reviewed Original ResearchConceptsEstradiol-17 betaEndometrial stromal cellsEndometrial glandsMessenger ribonucleic acidStromal cellsHuman endometriumDeoxyribonucleic acid synthesisGlandular epitheliumEpithelial cellsEndometrial glandular epitheliumEndometrial cell proliferationStromal cell originHuman endometrial cellsGrowth factor-β1Acid synthesisRibonucleic acidSecretory endometriumEndometrial cellsTrichloroacetic acid-precipitable materialEndometrial epitheliumSecretory phaseFactor-β1Cell originAcid-precipitable materialEndometrium
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