Issue 6, 2024

Deuterium labeling improves the therapeutic index of 3,3′-diselenodipropionic acid as an anticancer agent: insights from redox reactions

Abstract

3,3′-Diselenodipropionic acid (DSePA), a selenocystine derivative, has been previously reported as an oral supplement for anticancer/radio-modulation activities. The present study is focused on devising a strategy to synthesize and characterize the deuterated derivative of DSePA and on understanding the effect of deuteration on its therapeutic index by comparing its cytotoxicity in cancerous versus non-cancerous cell types. In this context, the synthesis of 3,3′-diselenodipropionic acid-D8 (D-DSePA) was accomplished in ∼42% yield. Further, the results clearly established that the deuteration of DSePA significantly reduced its cytotoxicity in non-cancerous cell types while retaining its cytotoxicity in cancerous cell lines. Together, D-DSePA displayed a ∼5-fold higher therapeutic index than the non-deuterated derivative for anticancer activity. The biochemical and NMR studies confirmed that the better biocompatibility of D-DSePA than its non-deuterated derivative in non-cancerous cells was due to its ability to undergo slower redox reactions and to cause lesser inhibition of intracellular redox enzymes.

Graphical abstract: Deuterium labeling improves the therapeutic index of 3,3′-diselenodipropionic acid as an anticancer agent: insights from redox reactions

Supplementary files

Article information

Article type
Research Article
Submitted
11 Feb 2024
Accepted
02 May 2024
First published
06 May 2024

RSC Med. Chem., 2024,15, 2165-2178

Deuterium labeling improves the therapeutic index of 3,3′-diselenodipropionic acid as an anticancer agent: insights from redox reactions

V. V. Gandhi, M. K. Pal, B. G. Singh, R. P. Das, A. P. Wadawale, S. Dey and A. Kunwar, RSC Med. Chem., 2024, 15, 2165 DOI: 10.1039/D4MD00105B

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