Molecular Docking, Synthesis and Biological Evaluation of Sulphonylureas/ Guanidine Derivatives as Promising Antidiabetic Agent. 2018

Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Parul University, Vadodara, Gujarat, India.

A series of novel sulphonylureas/guanidine derivatives was designed, synthesized, and evaluated for the treatment of diabetes mellitus. In this study, the designed compounds were docked with AKR1C1 complexes by using glide docking program and docking calculations were performed to predict the binding affinity of the designed compounds with the binding pocket of protein 4YVP and QikProp program was used to predict the ADME/T properties of the analogues. All the targeted derivatives were synthesized and purified by recrystallization. Synthesized compounds were characterized by various physicochemical and various spectroscopic techniques like melting point, thin layer chromatography, infrared spectroscopy (KBr pellets), mass spectroscopy(m/z), 1H NMR (DMSO-d6), and 13C NMR. The synthesized compounds were further studied for biological evolution by alloxan (150 mg/dl, intraperitonial) induced diabetic rat model for in-vivo studies. Among all the synthesized derivatives, 5c and 5d were most potent as per binding energy. Compound 5i have shown a better plasma glucose reduction compared to glibenclamide. Hence, it will be further used as a lead compound to develop a more such kind of agent. The docking study revealed that in all designed sulphonylureas/ guanidine series of compounds 5c and 5d were found to be most potent compounds as per the binding energy compared to glibenclamide. With the help of detailed study of in vivo biological activity, we observed that compound 5i gives better result compared to glibenclamide as standard.

UI MeSH Term Description Entries
D007004 Hypoglycemic Agents Substances which lower blood glucose levels. Antidiabetic,Antidiabetic Agent,Antidiabetic Drug,Antidiabetics,Antihyperglycemic,Antihyperglycemic Agent,Hypoglycemic,Hypoglycemic Agent,Hypoglycemic Drug,Antidiabetic Agents,Antidiabetic Drugs,Antihyperglycemic Agents,Antihyperglycemics,Hypoglycemic Drugs,Hypoglycemic Effect,Hypoglycemic Effects,Hypoglycemics,Agent, Antidiabetic,Agent, Antihyperglycemic,Agent, Hypoglycemic,Agents, Antidiabetic,Agents, Antihyperglycemic,Agents, Hypoglycemic,Drug, Antidiabetic,Drug, Hypoglycemic,Drugs, Antidiabetic,Drugs, Hypoglycemic,Effect, Hypoglycemic,Effects, Hypoglycemic
D008297 Male Males
D011485 Protein Binding The process in which substances, either endogenous or exogenous, bind to proteins, peptides, enzymes, protein precursors, or allied compounds. Specific protein-binding measures are often used as assays in diagnostic assessments. Plasma Protein Binding Capacity,Binding, Protein
D002626 Chemistry, Pharmaceutical Chemistry dealing with the composition and preparation of agents having PHARMACOLOGIC ACTIONS or diagnostic use. Medicinal Chemistry,Chemistry, Pharmaceutic,Pharmaceutic Chemistry,Pharmaceutical Chemistry,Chemistry, Medicinal
D003921 Diabetes Mellitus, Experimental Diabetes mellitus induced experimentally by administration of various diabetogenic agents or by PANCREATECTOMY. Alloxan Diabetes,Streptozocin Diabetes,Streptozotocin Diabetes,Experimental Diabetes Mellitus,Diabete, Streptozocin,Diabetes, Alloxan,Diabetes, Streptozocin,Diabetes, Streptozotocin,Streptozocin Diabete
D006146 Guanidines A family of iminourea derivatives. The parent compound has been isolated from mushrooms, corn germ, rice hulls, mussels, earthworms, and turnip juice. Derivatives may have antiviral and antifungal properties.
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000496 Alloxan Acidic compound formed by oxidation of URIC ACID. It is isolated as an efflorescent crystalline hydrate.
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013453 Sulfonylurea Compounds A class of compounds in which a sulfone functional group is attached to UREA. Compounds, Sulfonylurea

Related Publications

Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
January 2020, Bioorganic chemistry,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
March 2020, Pakistan journal of pharmaceutical sciences,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
January 2019, Current topics in medicinal chemistry,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
December 2010, Bioorganic & medicinal chemistry,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
September 2016, International journal of molecular sciences,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
August 2020, ACS medicinal chemistry letters,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
January 2018, Chemical & pharmaceutical bulletin,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
January 2020, Current Alzheimer research,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
December 2010, Chemical biology & drug design,
Ishan I Panchal, and Dhrubo Jyoti Sen, and Ashish D Patel, and Umang Shah, and Mehul Patel, and Archana Navale, and Vashisth Bhavsar
February 2024, Molecular diversity,
Copied contents to your clipboard!