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Dalliah Black

Publications and source records attributed to Dalliah Black.

5 recordsLinked to original sources

Primary cirrhotic hepatocytes resist TGFbeta-induced apoptosis through a ROS-dependent mechanism.

BACKGROUND/AIMS: The cirrhotic liver manifests dysregulated hepatocyte growth by poor regenerative capacity, formation of regenerative nodules, and malignant transformation to hepatocellular carcinoma. The purpose of this study was to determine if dysregulated hepatocyte growth occurs through deficient apoptosis. METHODS: Hepatocytes were isolated from normal and CCl(4)-treated mice and treated with TGFbeta, TNFalpha, and UV-C, known apoptotic agents. RESULTS: Cirrhotic hepatocytes were less sensitive to TGFbeta- (45+/-5 vs. 15+/-3%; P<0.003), TNFalpha- (59+/-21 vs. 21+/-8%; P=0.02), and UV-C-induced (31+/-4 vs. 17+/-4%; P<0.03) apoptosis compared to normal hepatocytes. In normal hepatocytes, TGFbeta-induced apoptosis occurred through a ROS-, MPT-, and caspase-dependent pathway. Cirrhotic hepatocytes lacked caspase activation, had decreased procaspase-8 expression, failed to undergo the MPT, and had increased basal ROS activity compared to normal hepatocytes. After treatment with trolox, an antioxidant that reduced basal ROS activity, cirrhotic hepatocytes underwent apoptosis in response to TGFbeta treatment. CONCLUSIONS: These findings suggest that increased ROS activity in cirrhotic hepatocytes plays a critical role in mediating cirrhotic hepatocyte resistance to apoptosis. Cirrhotic hepatocyte resistance to TGFbeta-induced apoptosis is ROS-dependent and is a mechanism of dysregulated growth in the chronically inflamed liver.

Animals↗

TNF alpha-induced hepatocyte apoptosis is associated with alterations of the cell cycle and decreased stem loop binding protein.

BACKGROUND: Inhibition of nuclear factor kappa B (NF kappa B) during liver regeneration induces hepatocyte apoptosis associated with normal DNA synthesis but decreased mitosis, suggesting that inhibition of NF kappa B impairs progression from S-phase through the G(2)/M phase of the cell cycle. Our aim was to determine if inhibition of NF kappa B alters cell cycle characteristics in hepatocytes treated with tumor necrosis factor alpha (TNF alpha). METHODS: Primary hepatocytes from BALB/c mice were infected with adenoviruses expressing luciferase (control; AdLuc) or the I kappa B super-repressor (AdI kappa B) and treated with or without TNF alpha (30 ng/ml). Flow cytometry was performed (0 to 40 hours) to determine apoptosis and cell cycle progression. Reverse transcriptase-polymerase chain reaction and immunoblots assessed changes in cell cycle mediators and antiapoptotic factors. RESULTS: Primary hepatocytes treated with AdI kappa B and TNF alpha demonstrated significantly more S-phase cells (14% +/- 3% vs 6% +/- 2%, P<.05) at 14 hours compared with controls. Inhibition of NF kappa B with or without TNFalpha was associated with decreased expression of stem loop bind protein, a marker of cell cycle progression through S-phase. The NF kappa B-induced antiapoptotic proteins, iNOS and TRAF2, had decreased message at 9 and 12 hours, respectively, in TNF alpha- and AdI kappa B-treated cells. CONCLUSION: Inhibition of NF kappa B in TNF alpha-treated primary mouse hepatocytes is associated with increased S-phase cell cycle retention and decreased stem loop bind protein.

Animals↗

NFkappaB inhibition decreases hepatocyte proliferation but does not alter apoptosis in obstructive jaundice.

INTRODUCTION: Cholestasis activates nuclear factor kappa B (NFkappaB), which is involved in both hepatocyte proliferation and apoptosis, depending on the cellular microenvironment. We hypothesized that NFkappaB inhibition would decrease hepatocyte proliferation and potentiate hepatocyte apoptosis in a rat model of extrahepatic biliary obstruction. AIM: To determine if NFkappaB inhibition concomitantly decreases hepatocyte proliferation and increases apoptosis in obstructive jaundice. MATERIALS AND METHODS: Male Sprague-Dawley rats underwent either sham operation or bile-duct ligation (BDL) combined with portal vein injection of vehicle or 6 x 10(9) particles of an adenovirus carrying either the control luciferase or the IkappaB super-repressor (AdIkappaBSR) transgenes. Liver was harvested 3, 5, and 7 days after sham operation or BDL, and immunohistochemistry for proliferating cell nuclear antigen and terminal dUTP nick end-labeling was performed for detection of DNA synthesis and apoptosis, respectively. RESULTS: Increased serum total bilirubin and hematoxylin and eosin-stained liver sections confirmed cholestasis in BDL animals. Western blot analysis demonstrated IkappaBSR protein expression in AdIkappaBSR-infected animals only. At day 7, NFkappaB inhibition decreased hepatocyte DNA synthesis in BDL rats compared to both adenovirus carrying the control luciferase and vehicle-treated controls. Apoptosis was increased in BDL vehicle-treated animals compared to sham-operation animals, but NFkappaB inhibition did not alter hepatocyte apoptosis in the BDL group. CONCLUSION: In obstructive cholestasis, NFkappaB is required for hepatocyte proliferation, but does not augment apoptosis.

Adenoviridae↗

Liver transplantation in Ellis-van Creveld syndrome: a case report.

This case represents a rare association of Ellis-van Creveld (EvC) syndrome, a chondroectodermal disorder, with congenital paucity of bile ducts. Sequential liver biopsies during the patient's childhood demonstrated progressive fibrosis that can occur in other chondrodysplastic malformations. However, this EvC case is the first report to demonstrate paucity of intra-hepatic bile ducts progressing to cirrhosis and subsequently requiring transplant.

Ellis-Van Creveld Syndrome↗