| Literature DB >> 31557624 |
Lorenzo Guazzelli1, Felicia D'Andrea2, Stefania Sartini1, Francesco Giorgelli1, Gianluca Confini1, Luca Quattrini1, Ilaria Piano1, Susanna Nencetti1, Elisabetta Orlandini3, Claudia Gargini1, Concettina La Motta4.
Abstract
Diabetes is a multi-factorial disorder that should be treated with multi-effective compounds. Here we describe the access to polyhydroxylated pyrrolidines, belonging to the d-gluco and d-galacto series, through aminocyclization reactions of two differentially protected d-xylo-hexos-4-ulose derivatives. The prepared compounds proved to inhibit both alpha-glucosidase, responsible for the emergence of hyperglycemic spikes, and aldose reductase, accountable for the development of abnormalities in diabetic tissues. Accordingly, they show the dual inhibitory profile deemed as ideal for diabetes treatment. Significantly, compound 17b reduced the process of cell death and restored the physiological levels of oxidative stress when tested in the photoreceptor-like 661w cell line, thus proving to be effective in an in vitro model of diabetic retinopathy.Entities:
Keywords: Aldose reductase; Aldose reductase inhibitors; Aminocyclization; Azafuranose; Diabetes; Glucosidase; Glucosidase inhibitors; Pyrrolidine
Year: 2019 PMID: 31557624 DOI: 10.1016/j.bioorg.2019.103298
Source DB: PubMed Journal: Bioorg Chem ISSN: 0045-2068 Impact factor: 5.275