Chemo-/Regio-Selective Synthesis of Novel Functionalized Spiro[pyrrolidine-2,3'-oxindoles] under Microwave Irradiation and Their Anticancer Activity.

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作者:Sharma Richa, Yadav Lalit, Nasim Ali Adnan, Yadav Ravi Kant, Chen Rui Hong, Kumari Neha, Ruiqi Fan, Sharon Ashoke, Sahu Nawal Kishore, Ippagunta Sirish Kumar, Coghi Paolo, Wong Vincent Kam Wai, Chaudhary Sandeep
A novel series of nitrostyrene-based spirooxindoles were synthesized via the reaction of substituted isatins 1a-b, a number of α-amino acids 2a-e and (E)-2-aryl-1-nitroethenes 3a-e in a chemo/regio-selective manner using [3+2] cycloaddition (Huisgen) reaction under microwave irradiation conditions. The structure elucidation of all the synthesized spirooxindoles were done using (1)H and (13)C NMR and HRMS spectral analysis. The single crystal X-ray crystallographic study of compound 4l was used to assign the stereochemical arrangements of the groups around the pyrrolidine ring in spiro[pyrrolidine-2,3'-oxindoles] skeleton. The in vitro anticancer activity of spiro[pyrrolidine-2,3'-oxindoles] analogs 4a-w against human lung (A549) and liver (HepG2) cancer cell lines along with immortalized normal lung (BEAS-2B) and liver (LO2) cell lines shows promising results. Out of the 23 synthesized spiro[pyrrolidine-2,3'-oxindoles], while five compounds (4c, 4f, 4m, 4q, 4t) (IC(50) = 34.99-47.92 µM; SI = 0.96-2.43) displayed significant in vitro anticancer activity against human lung (A549) cancer cell lines, six compounds (4c, 4f, 4k, 4m, 4q, 4t) (IC(50) = 41.56-86.53 µM; SI = 0.49-0.99) displayed promising in vitro anticancer activity against human liver (HepG2) cancer cell lines. In the case of lung (A549) cancer cell lines, these compounds were recognized to be more efficient and selective than standard reference artemisinin (IC(50) = 100 µM) and chloroquine (IC(50) = 100 µM; SI: 0.03). However, none of them were found to be active as compared to artesunic acid [IC(50) = 9.85 µM; SI = 0.76 against lung (A549) cancer cell line and IC(50) = 4.09 µM; SI = 2.01 against liver (HepG2) cancer cell line].

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