4.7 Article

Curcumin-3,4-Dichloro Phenyl Pyrazole (CDPP) overcomes curcumin's low bioavailability, inhibits adipogenesis and ameliorates dyslipidemia by activating reverse cholesterol transport

Journal

METABOLISM-CLINICAL AND EXPERIMENTAL
Volume 73, Issue -, Pages 109-124

Publisher

W B SAUNDERS CO-ELSEVIER INC
DOI: 10.1016/j.metabol.2017.05.005

Keywords

3T3-L1 adipocyte; Anti-adipogenic; Dyslipidemia; Reverse cholesterol transport

Funding

  1. CSIR-CDRI Network project: Towards holistic understanding of complex diseases: Unraveling the threads of complex disease (THUNDER) Project [BSC0102]
  2. SRF-UGC, New Delhi
  3. SRF-CSIR, New Delhi
  4. SRF-ICMR, New Delhi
  5. SRF-DBT, Pune

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Background. Adipocyte dysfunction, obesity and associated metabolic disorders are of prime healthcare concern worldwide. Among available medications, natural products and inspired molecules hold 40% space in clinically prescribed medicines. In queue, this study overcomes the drawback of curcumin's low bioavailability with potent anti-adipogenic and anti-dyslipidemic activity. Methods. To evaluate the role of CDPP on adipocyte differentiation, 3T3-L1 adipocytes were used as an in-vitro model. Flow cytometry was performed for cell cycle analysis. Syrian golden hamsters were used to study phannacoldnetic profile and dyslipidemic activity exhibited by CDPP. Result. CDPP was found to be a potent inhibitor of adipogenesis in-vitro. It blocked mitotic clonal expansion by causing cell cycle arrest. CDPP showed marked improvement in gastrointestinal stability and bioavailability in-vivo as compared to curcumin. Administration of CDPP (100 mg/kg) significantly improved HFD induced dyslipidemic profile in hamsters and activated reverse cholesterol transport machinery. Conclusion. CDPP could be used as a potential drug candidate against adipogenesis and dyslipidemia with enhanced gastrointestinal stability and bioavailability. (C) 2017 Elsevier Inc. All rights reserved.

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