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T Hano

Publications and source records attributed to T Hano.

74 records · Page 5Linked to original sources

Transition of apoptotic resistant vascular smooth muscle cells to troptotic sensitive state is correlated with downregulation of c-FLIP.

Fas and its ligand, FasL, are a receptor-ligand pair identified as promoting cell death in several tissues. Vascular smooth muscle cells (VSMCs) are resistant to FasL or anti-Fas antibody (Ab) signal, and a number of in vitro studies show that VSMC death can only be induced by anti-Fas Ab or FasL in the presence of protein inhibitor or additional inflammatory mediators. It remains to be clarified whether known, constitutively expressed cytoprotective molecules are reduced by protein inhibitor, thereby accounting for sensitization to cell death by Fas/FasL signaling. We found that Fas mRNA and protein exist in several primary VSMCs, as previously reported. We also demonstrated (1) that critical death-signaling molecules, such as FADD, caspase-1/ICE, and caspase-3/YAMA, are present in these VSMCs, (2) that human VSMCs contain high concentrations of c-FLIP (3) and that following treatment with the protein inhibitor, CHX, cell extracts showed a decrease in c-FLIP protein that was dose- and time-dependent on the degree of apoptosis and inversely correlated with both caspase-8 and -3 activity. In contrast, there was neither a change nor an even modest upregulation of Bcl-2 family, even after 12 h of treatment with CHX. Taken together, these results may provide a novel insight into atherogenesis and suggest that c-FLIP may contribute to an apoptosis-resistant state of VSMC, and that a downregulation of c-FLIP may render VSMCs susceptible to apoptosis.

Apoptosis↗

Relation of sodium-potassium adenosine triphosphatase inhibitor to sympathetic nervous system during salt-loading in essential hypertension.

The present study was designed to assess if the release of Na-K ATPase inhibitor (NKAI) after salt-loading is related to sympathetic nervous system in essential hypertension. Thirteen patients with essential hypertension were studied during low-salt diet (2 g/day) and then high-salt diet (20 g/day) for each 7-days period. Mean blood pressure (MBP), body weight, Na:K ratio in red blood cell (R-Na/K), plasma norepinephrine (PNE) and NKAI were measured on the last day of each period. NKAI was determined by the degree of the inhibition of dog kidney Na-K ATPase activity by deproteinized plasma. Patients were classified as "salt-sensitive" (SS) or "nonsalt-sensitive" (NSS) group by the MBP responses to salt-loading. With the high-salt diet, SS group showed more body weight gain, greater increase in R-Na/K and NKAI (SS; 8.0 +/- 1.0%, NSS; 2.4 +/- 0.8%, P less than 0.01) than NSS group. PNE showed no changes in SS group and decreased in NSS group (P less than 0.05). The increase of MBP was highly correlated with the rise of NKAI (r = 0.76, P less than 0.01). Moreover, the increase of NKAI was also significantly correlated with the changes of PNE (r = 0.62, P less than 0.05). These results suggest that the greater increase in blood pressure by salt-loading in SS patients can be attributed to the increase of NKAI, which might regulate the sympathetic nervous system as a result of increased intracellular sodium.

Adult↗