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Medicine and Health Sciences Commons

Open Access. Powered by Scholars. Published by Universities.®

Obstetrics and Gynecology

None

Donghai Dai

2013

Transfection

Articles 1 - 4 of 4

Full-Text Articles in Medicine and Health Sciences

Immunomodulatory And Transcriptional Effects Of Progesterone Through Progesterone A And B Receptors In Hec50co Poorly Differentiated Endometrial Cancer Cells, S. Davies, Donghai Dai, D. Wolf, Kimberly Leslie Apr 2013

Immunomodulatory And Transcriptional Effects Of Progesterone Through Progesterone A And B Receptors In Hec50co Poorly Differentiated Endometrial Cancer Cells, S. Davies, Donghai Dai, D. Wolf, Kimberly Leslie

Donghai Dai

OBJECTIVE: Derivatives of progesterone, progestins, are used to treat endometrial cancer; however, the pathways activated by the hormone have not been fully investigated. Progesterone acts through two receptor isoforms, progesterone receptors A and B (PRA and PRB), transcription factors that control the expression of downstream genes leading to endometrial differentiation. The purpose of this study was to perform an expression analysis to identify the mechanisms underlying progesterone's growth suppressive and immunomodulatory effects in endometrial cancer. METHODS: To study the molecular effects of progesterone, PRs were introduced into Hec50co cells. Expression array analyses followed by confirmatory semiquantitive reverse-transcriptase polymerase chain reaction …


Identification Of A Novel Mechanism Of Nf-Kappab Inactivation By Progesterone Through Progesterone Receptors In Hec50co Poorly Differentiated Endometrial Cancer Cells: Induction Of A20 And Abin-2, S. Davies, Donghai Dai, I. Feldman, G. Pickett, Kimberly Leslie Apr 2013

Identification Of A Novel Mechanism Of Nf-Kappab Inactivation By Progesterone Through Progesterone Receptors In Hec50co Poorly Differentiated Endometrial Cancer Cells: Induction Of A20 And Abin-2, S. Davies, Donghai Dai, I. Feldman, G. Pickett, Kimberly Leslie

Donghai Dai

OBJECTIVE: Nuclear factor kappa B (NFkappaB) is a strong anti-apoptotic factor, which is constitutively active in human endometrial cancer cells. Progesterone is the principal growth inhibitory hormone in the endometrial epithelium and promotes apoptosis. To identify the pathways through which progesterone controls NFkappaB function, we explored its genomic and non-genomic effects in endometrial cancer cells. METHODS: PR-negative Hec50co endometrial cancer cells were engineered to express high levels of the A or B isoform of PR (PRA or PRB) by adenoviral infection. Cells were treated with progesterone or vehicle alone, and RNA was isolated. Affymetrix microarrays were performed and transcriptional control …


A Therapeutic Model For Advanced Endometrial Cancer: Systemic Progestin In Combination With Local Adenoviral-Mediated Progesterone Receptor Expression, Donghai Dai, L. Albitar, T. Nguyen, L. Laidler, M. Singh, Kimberly Leslie Apr 2013

A Therapeutic Model For Advanced Endometrial Cancer: Systemic Progestin In Combination With Local Adenoviral-Mediated Progesterone Receptor Expression, Donghai Dai, L. Albitar, T. Nguyen, L. Laidler, M. Singh, Kimberly Leslie

Donghai Dai

Cancer of the uterine endometrium is a frequent gynecologic malignant disease for which few therapeutic options are available for advanced disease. Progesterone is the normal female hormone that limits growth and proliferation of endometrial cancers; however, progesterone receptors are frequently down-regulated, leading to treatment failures. The current studies explored the effectiveness of adenoviral-mediated progesterone receptor gene transduction in combination with progestin therapy in mouse xenograft models. Pretreatment of cells with progesterone receptor-encoding adenovirus and progestin inhibited the development of s.c. tumors in athymic mice. In the i.p. xenograft model, replacement of both isoforms of progesterone receptor, PRA and PRB, in …


Transfection Of C6 Glioma Cells With Glia Maturation Factor Upregulates Brain-Derived Neurotrophic Factor And Nerve Growth Factor: Trophic Effects And Protection Against Ethanol Toxicity In Cerebellar Granule Cells, N. Pantazis, A. Zaheer, Donghai Dai, S. Zaheer, S. Green, R. Lim Apr 2013

Transfection Of C6 Glioma Cells With Glia Maturation Factor Upregulates Brain-Derived Neurotrophic Factor And Nerve Growth Factor: Trophic Effects And Protection Against Ethanol Toxicity In Cerebellar Granule Cells, N. Pantazis, A. Zaheer, Donghai Dai, S. Zaheer, S. Green, R. Lim

Donghai Dai

Glial cells play active roles in neuronal survival, as well as neuroprotection against toxic insult. Recent studies suggest that the brain protein glia maturation factor (GMF) is involved in intracellular signaling in glia. This study investigated whether or not GMF plays a role in the survival-promoting and neuroprotective functions of glia. C6 glioma cells were transfected in vitro with GMF utilizing an adenovirus vector. The transfected cells overexpressed GMF intracellularly, but did not secrete the protein. The conditioned medium (CM) was obtained from the GMF-transfected cells (CM-GMF) and tested on primary neuronal cultures, consisting of cerebellar granule cells (CGC). The …