1. Academic Validation
  2. Rohitukine inhibits in vitro adipogenesis arresting mitotic clonal expansion and improves dyslipidemia in vivo

Rohitukine inhibits in vitro adipogenesis arresting mitotic clonal expansion and improves dyslipidemia in vivo

  • J Lipid Res. 2014 Jun;55(6):1019-32. doi: 10.1194/jlr.M039925.
Salil Varshney 1 Kripa Shankar 1 Muheeb Beg 1 Vishal M Balaramnavar 2 Sunil Kumar Mishra 2 Pankaj Jagdale 3 Shishir Srivastava 2 Yashpal S Chhonker 4 Vijai Lakshmi 5 Bhushan P Chaudhari 3 Rabi Shankar Bhatta 4 Anil Kumar Saxena 2 Anil Nilkanth Gaikwad 1
Affiliations

Affiliations

  • 1 Division of Pharmacology, Council of Scientific & Industrial Research-Central Drug Research Institute, Sector 10, Jankipuram Extension, Lucknow, Uttar Pradesh 226031, India.
  • 2 Medicinal and Process Chemistry Division, Council of Scientific & Industrial Research-Central Drug Research Institute, Sector 10, Jankipuram Extension, Lucknow, Uttar Pradesh 226031, India.
  • 3 Regulatory Toxicology Group, Council of Scientific & Industrial Research-Indian Institute of Toxicology Research, Lucknow, Uttar Pradesh 226001, India.
  • 4 Pharmacokinetics and Metabolism Division, Council of Scientific & Industrial Research-Central Drug Research Institute, 10/1, Sector 10, Jankipuram Extension, Lucknow, Uttar Pradesh 226031, India.
  • 5 Department of Biochemistry, King George's Medical University, Chowk Area, Lucknow, Uttar Pradesh 226003, India.
Abstract

We developed a common feature pharmacophore model using known antiadipogenic compounds (CFPMA). We identified rohitukine, a reported chromone Anticancer alkaloid as a potential hit through in silico mapping of the in-house natural product library on CFPMA. Studies were designed to assess the antiadipogenic potential of rohitukine. Rohitukine was isolated from Dysoxylum binacteriferum Hook. to ⬧95% purity. As predicted by CFPMA, rohitukine was indeed found to be an antiadipogenic molecule. Rohitukine inhibited lipid accumulation and adipogenic differentiation in a concentration- and exposure-time-dependent manner in 3T3-L1 and C3H10T1/2 cells. Rohitukine downregulated expression of PPARγ, CCAAT/enhancer binding protein α, adipocyte protein 2 (aP2), FAS, and glucose transporter 4. It also suppressed mRNA expression of LPL, sterol-regulatory element binding protein (SREBP) 1c, FAS, and aP2, the downstream targets of PPARγ. Rohitukine arrests cells in S phase during mitotic clonal expansion. Rohitukine was bioavailable, and 25.7% of orally administered compound reached systemic circulation. We evaluated the effect of rohitukine on dyslipidemia induced by high-fat diet in the hamster model. Rohitukine increased hepatic expression of liver X receptor α and decreased expression of SREBP-2 and associated targets. Rohitukine decreased hepatic and gonadal lipid accumulation and ameliorated dyslipidemia significantly. In summary, our strategy to identify a novel antiadipogenic molecule using CFPMA successfully resulted in identification of rohitukine, which confirmed antiadipogenic activity and also exhibited in vivo antidyslipidemic activity.

Keywords

3T3-L1; C3H10T1/2; Dysoxylum binacteriferum Hook. f.; S-phase arrest.

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