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1.
Sci Rep ; 6: 27513, 2016 06 10.
Article in English | MEDLINE | ID: mdl-27282931

ABSTRACT

Dyslipidemia, particularly the elevated serum cholesterol levels, aggravate the pathophysiology of type 2 diabetes. In the present study we explored the relationship between fasting blood sugar and serum lipid parameters in human volunteers which revealed a significant linear effect of serum cholesterol on fasting blood glucose. Short term feeding of cholesterol enriched diet to rodent model resulted in elevated serum cholesterol levels, cholesterol accumulation in pancreatic islets and hyperinsulinemia with modest increase in plasma glucose level. To explore the mechanism, we treated cultured BRIN-BD11 pancreatic beta cells with soluble cholesterol. Our data shows that cholesterol treatment of cultured pancreatic beta cells enhances total cellular cholesterol. While one hour cholesterol exposure enhances insulin exocytosis, overnight cholesterol accumulation in cultured pancreatic beta cells affects cellular respiration, and inhibits Glucose stimulated insulin secretion. We further report that (E)-4-Chloro-2-(1-(2-(2,4,6-trichlorophenyl) hydrazono) ethyl) phenol (small molecule M1) prevents the cholesterol mediated blunting of cellular respiration and potentiates Glucose stimulated insulin secretion which was abolished in pancreatic beta cells on cholesterol accumulation.


Subject(s)
Cholesterol/metabolism , Glucose/metabolism , Insulin-Secreting Cells/drug effects , Insulin/metabolism , Islets of Langerhans/drug effects , Mitochondria/drug effects , Small Molecule Libraries/pharmacology , Animals , Blood Glucose/drug effects , Cell Respiration/drug effects , Diabetes Mellitus, Type 2/drug therapy , Diabetes Mellitus, Type 2/metabolism , Exocytosis/drug effects , Humans , Insulin-Secreting Cells/metabolism , Islets of Langerhans/metabolism , Male , Mitochondria/metabolism , Rats, Sprague-Dawley
2.
Chemistry ; 21(52): 19208-22, 2015 Dec 21.
Article in English | MEDLINE | ID: mdl-26602867

ABSTRACT

In the context of a programme directed at the manufacture of telaprevir, eight possible approaches to its bicyclic α-amino acid core, based on organocatalytic enantioselective conjugate additions to cyclopent-1-enecarbaldehyde, were identified and preliminarily explored. Four reactions, delivering advanced intermediates en route to the target amino acid, were selected for a thorough optimisation. Three of this reactions involved iminium ion catalysis with a prolinol catalyst (addition of nitromethane, nitroacetate and acetamidomalonate) and one was based on a Cinchona-derived phase-transfer catalyst (addition of glycine imines). A careful choice of additives allowed lowering of the catalyst loading to 0.5 mol% in some cases. The preparation of intermediates that would give access to the core of telaprevir in good yields and enantioselectivities by exploiting readily available substrates and catalysts, highlights the potential of organocatalytic technology for a cost-effective preparation of pharmaceuticals.

3.
Bioorg Med Chem Lett ; 22(15): 5063-6, 2012 Aug 01.
Article in English | MEDLINE | ID: mdl-22749421

ABSTRACT

A convenient and practical methodology for the synthesis of 2-aryl quinazolin-4(3H)-ones by the condensation of o-aminobenzamides with aromatic aldehydes under mild conditions using catalytic InCl(3) with good yields and high selectivities. This method has been extended for the synthesis of 5-aryl pyrazolo[4,3-d]pyrimidin-7(6H)-ones which have potential applications in medicinal chemistry. Many of these compounds were evaluated for their anti-proliferative properties in vitro against four cancer cell lines and several compounds were found to be active. Further in vitro studies indicated that inhibition of sirtuins could be the possible mechanism of action of these molecules.


Subject(s)
Antineoplastic Agents/chemical synthesis , Indium/chemistry , Pyrimidinones/chemistry , Quinazolinones/chemistry , Antineoplastic Agents/chemistry , Antineoplastic Agents/toxicity , Apoptosis/drug effects , Binding Sites , Catalysis , Catalytic Domain , Cell Line, Tumor , Computer Simulation , Drug Screening Assays, Antitumor , Humans , K562 Cells , Pyrimidinones/chemical synthesis , Pyrimidinones/toxicity , Quinazolinones/chemical synthesis , Quinazolinones/toxicity , Sirtuin 1/chemistry , Sirtuin 1/metabolism
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