International Journal of Cheminformatics Review Article

A Literature Survey on Biological Activities of Thiazolidine Derivatives

  1. Vijaiyalakshmi R Department of Pharmacy, Surya School of Pharmacy, Surya Group of Institution, Vikravandi
  2. Anbazhagan S Department of Pharmacy, Surya School of Pharmacy, Surya Group of Institution, Vikravandi
  3. Subasri B Department of Pharmacy, Surya School of Pharmacy, Surya Group of Institution, Vikravandi
  4. Divya J Department of Pharmacy, Surya School of Pharmacy, Surya Group of Institution, Vikravandi
  5. Madeshwaran G Department of Pharmacy, Surya School of Pharmacy, Surya Group of Institution, Vikravandi
  6. Eniyan M Department of Pharmacy, Surya School of Pharmacy, Surya Group of Institution, Vikravandi
  7. Surya Prakash k Department of Pharmacy, Surya School of Pharmacy, Surya Group of Institution, Vikravandi

Abstract

Hetercyclic compounds play a vital role in both chemical and life sciences. Among them ,thiazolidinone represent a significant class, characterized by a five- membered saturated ring containing both sulfur and nitrogen atoms. Structurally, thiazolidinones are derived from thiazole, with sulfur position at the 1-position, nitrogen at the 3-position , and a carbonyl group typically located at the 2-, 4-, or 5- position are possible, though structural and functional diversity is most stronghly influenced by the group attached at the 2-position carbon 4- Thiazolidinones , in particular , are derivatives of thiazolidine featuring a carbonyl group in thiazolidinones is generally unreactive , its interaction with Lawessons reagent can yeild corresponding 4-thione derivatives . The presence of hetero atom such as nitrogen , sulfur, and oxygen contribute to the broad biological activity many heterocyclic compounds.

Keywords

References (10)

  1. Kapoor G, Pathak DP, Bhutani R, Kant R. Thiazolidinone as a pharmacologically active molecule. J Chem Pharm Res. 2016;8(4):151–68.
  2. Pandey Y, Singh A, Sharma PK, Kumar N. Biological activities of thiazolidine: a review. J Curr Pharm Res. 2011;1(2):192.
  3. Singh TP, Sharma PK, Kaur PK, Mondal SC, Gupta A. Pharmacological evaluation of thiazolidinone derivatives: a perspective review. Der Pharma Chem. 2011;3(1):194–206.
  4. Shanmitha Jahnavi Kanchumarthy, Rasajna G, Govindarao Kamala, Hema Latha N, Nehitha P, Deepthi P, et al. Current Advances in Synthesis and Therapeutic Applications of Thiazole and its Derivatives. Journal of Pharma Insights and Research. 2024;2(6):107-114. doi:10.69613/4ph6pj28
  5. Mishra G, Jyoti K. Review on biological activities of 1,3,4-thiadiazole derivatives. J Appl Pharm Sci. 2011;1(7):44–9.
  6. Jain A, Kumar Sahu S. Thiazolidine derivatives and their pharmacological actions. E3S Web of Conferences. 2024;556:01052. doi:10.1051/e3sconf/202455601052
  7. Kempegowda SK, Kumar DP, TT M. Thiadiazoles: progress report on biological activities. Der Pharma Chem. 2011;3(2):330–41.
  8. Pandey Y, Singh A, Sharma PK, Kumar N. Biological activities of thiazolidine: a review. J Curr Pharm Res. 2011;1(2):192.
  9. Jain AK, Vaidya A, Ravichandran V, Kashaw SK, Agrawal RK. Recent developments and biological activities of thiazolidinone derivatives: a review. Bioorg Med Chem. 2012;20(11):3378–95.
  10. Singh SP, Parmar SS, Raman K, Stenberg VI. Chemistry and biological activity of thiazolidinones. Chem Rev. 1981;81(2):175–203.[7]