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Discovery of Novel Protocols for the Stereoselective Synthesis of Hydroxymethyne C-Glycosides and Chiral-Carbocycles

Implementing Organization

Principal Investigator
Dr. Perali Ramu Sridhar
University Of Hyderabad
p_ramu_sridhar@uohyd.ac.in

Project Overview

C-hydroxymethyne glycosides, a type of C-glycosides, have attracted the glyco-chemists and biologists due to their occurrence in various bioactive natural products 1-4 (Figure 1). It was assumed that the hydroxymethyne functionality at the anomeric position would mimic the function of the endocyclic oxygen of the pyranose ring in carbohydrates. As a result, carbohydrate derivatives with a hydroxymethyl group at the anomeric position not only provide stability, being a C-glcoside, but also enhance the biological interaction. The hydroxymethyne group at the anomeric position would act as a biosimilar to a sugar unit. For example, some of the C-mannosides studied for the treatment of urinary tract infection, the hydroxymethylene C-glycoside 5 (HAI 31 nM) showed a 60-fold higher activity when compared with methylene C-glycoside 6 (HAI 6000 nM). Interestingly, the O-glycoside 7 has shown HAI 61 nM, though its stability is low when compared to 2 or 3 (Figure 2). Compound 5 (GSK3882347) is a drug developed by GlaxoSmithKline (GSK) for treating Urinary Tract Infections (UTIs) and is under phase II clinical trials. This observation clearly demonstrates the importance of hyroxymethyne linkers in sugar-based drug design and discovery. Although several methods have been reported for the preparation of C-glycosides, there are very few reactions that deliver the hydroxymethyne C-glycosides. Hence, the development of novel synthetic methods is critical for the exploration of their biological activity. We recently reported an interesting method for the synthesis of 2,3-unsaturated hydroxymethyne C-glycosides involving Wittig rearrangement.1 As shown in scheme 1, 3-O-allyl glycal derivative 8, upon exposure to n-butyl lithium in THF, provided the hydroxymethyne C-glycoside 9 as a single diastereomer. This reaction prompted us to investigate the application of the Wittig rearrangement reaction for the facile synthesis of hydroxymethyne C-glycosides. The success of the present protocol will definitely provide an economic procedure to synthesise various alkyl, hydroxymethyne C-glycosides. It also gives a deep understanding of the Wittig rearrangement in carbohydrates. In addition, the synthetic technology will pave the way for the construction of various chiral carbocycles from chiral pool starting materials.
Funding Organization
Quick Information
Area of Research
Chemical Sciences
Focus Area
Organic Chemistry
Start Date
16 Mar 2026
End Date
15 Mar 2031
Status
ongoing
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
Publications
00
No. of Patents
Filed : 00
Grant : 00
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