Microwave‐accelerated Conjugate Addition of 2‐Arylindoles to Substituted β‐Nitrostyrenes in the Presence of Ammonium Trifluoroacetate: An Efficient Approach for the Synthesis of a Novel Class of CB1 Cannabinoid Receptor Allosteric Modulators
作者:Pushkar M. Kulkarni、Ameya Ranade、Sumanta Garai、Ganesh A. Thakur
DOI:10.1002/jhet.2861
日期:2017.5
2‐Arylindoles, in general, exhibit reduced reactivity towards the conjugate addition to substituted nitrostyrenes, when compared with indoles. We report here an efficient, expeditious, and high‐yielding conjugate addition of 2‐arylindoles to substituted β‐nitrostyrenes in the presence of ammonium trifluoroacetate under microwave irradiation. This method is mild with high and reproducible yields and
Focused structure-activity relationship profiling around the 2-phenylindole scaffold of a cannabinoid type-1 receptor agonist-positive allosteric modulator: site-III aromatic-ring congeners with enhanced activity and solubility
作者:Peter C. Schaffer、Pushkar M. Kulkarni、David R. Janero、Ganesh A. Thakur
DOI:10.1016/j.bmc.2020.115727
日期:2020.11
Specific tuning of cannabinoid 1 receptor (CB1R) activity by small-molecule allosteric modulators is a therapeutic modality with multiple properties inherently advantageous to therapeutic applications. We previously generated a library of unique CB1R positive allosteric modulators (PAMs) derived from GAT211, which has three pharmacophoric sites critical to its ago-PAM activity. To elaborate our CB1R PAM library, we report the rational design and molecular-pharmacology profiling of several 2-phenylindole analogs modified at the "site-III" aromatic ring. The comprehensive structure-activity relationship (SAR) investigation demonstrates that attaching small lipophilic functional groups on the ortho-position of the GAT211 site-III phenyl ring could markedly enhance CB1R ago-PAM activity. Select site-III modifications also improved GAT211's water solubility. The SAR reported both extends the structural diversity of this compound class and demonstrates the utility of GAT211's site-III for improving the parent compound's drug-like properties of potency and/or aqueous solubility.
Direct Conversion of 3-(2-Nitroethyl)-1H-Indoles into 2-(1H-Indol-2-yl)Acetonitriles
作者:Alexander V. Aksenov、Nicolai A. Aksenov、Elena V. Aleksandrova、Dmitrii A. Aksenov、Igor Yu. Grishin、Elena A. Sorokina、Allison Wenger、Michael Rubin
DOI:10.3390/molecules26206132
日期:——
The recently discovered [4+1]-spirocyclization of nitroalkenes to indoles provided a convenient new approach to 2-(1H-indol-2-yl)acetonitriles. However, this reaction was complicated by the formation of inert 3-(2-nitroethyl)-1H-indole byproducts. Herein, we offer a workaround this problem that allows for effective transformation of the unwanted byproducts into acetonitrile target molecules.