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Synthesis and characterization of a disubstituted piperazine derivative with T-type channel blocking action and analgesic properties.
Pudukulatham, Zubaidha; Zhang, Fang-Xiong; Gadotti, Vinicius M; M'Dahoma, Said; Swami, Prabhuling; Tamboli, Yasinalli; Zamponi, Gerald W.
Affiliation
  • Pudukulatham Z; School of Chemical Sciences, SRTM University, Nanded, Maharashtra, India.
  • Zhang FX; Department of Physiology and Pharmacology, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada Alberta Children's Hospital Research Institute, University of Calgary, Calgary, Alberta, Canada.
  • Gadotti VM; Department of Physiology and Pharmacology, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada Alberta Children's Hospital Research Institute, University of Calgary, Calgary, Alberta, Canada.
  • M'Dahoma S; Department of Physiology and Pharmacology, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada Alberta Children's Hospital Research Institute, University of Calgary, Calgary, Alberta, Canada.
  • Swami P; School of Chemical Sciences, SRTM University, Nanded, Maharashtra, India.
  • Tamboli Y; School of Chemical Sciences, SRTM University, Nanded, Maharashtra, India.
  • Zamponi GW; Department of Physiology and Pharmacology, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada Alberta Children's Hospital Research Institute, University of Calgary, Calgary, Alberta, Canada zamponi@ucalgary.ca.
Mol Pain ; 122016.
Article in En | MEDLINE | ID: mdl-27053601
BACKGROUND: T-type calcium channels are important contributors to signaling in the primary afferent pain pathway and are thus important targets for the development of analgesics. It has been previously reported that certain piperazine-based compounds such as flunarizine are able to inhibit T-type calcium channels. Thus, we hypothesized that novel piperazine compounds could potentially act as analgesics. RESULTS: Here, we have created a series of 14 compound derivatives around a diphenyl methyl-piperazine core pharmacophore. Testing their effects on transiently expressed Cav3.2 calcium channels revealed one derivative (3-((4-(bis(4-fluorophenyl)methyl)piperazin-1-yl)methyl)-4-(2-methoxyphenyl)-1,2,5-oxadiazole 2-oxide, compound 10e) as a potent blocker. 10e mediate tonic block of these channels with an IC50 of around 4 micromolar. 10e also blocked Cav3.1 and Cav3.3 channels, but only weakly affected high-voltage-activated Cav1.2 and Cav2.2 channels. Intrathecal delivery of 10e mediated relief from formalin and complete Freund's adjuvant induced inflammatory pain that was ablated by genetic knockout of Cav3.2 channels. CONCLUSIONS: Altogether, our data identify a novel T-type calcium channel blocker with tight structure activity relationship (SAR) and relevant in vivo efficacy in inflammatory pain conditions.
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Full text: 1 Database: MEDLINE Main subject: Piperazines / Calcium Channel Blockers / Calcium Channels, T-Type / Analgesics Type of study: Prognostic_studies Language: En Journal: Mol Pain Year: 2016 Type: Article Affiliation country: India

Full text: 1 Database: MEDLINE Main subject: Piperazines / Calcium Channel Blockers / Calcium Channels, T-Type / Analgesics Type of study: Prognostic_studies Language: En Journal: Mol Pain Year: 2016 Type: Article Affiliation country: India