SYNTHESIS OF OXYGEN-SUBSTITUTED N-ALKYL 1-DEOXYNOJIRIMYCIN DERIVATIVES - AZA SUGAR ALPHA-GLUCOSIDASE INHIBITORS SHOWING ANTIVIRAL (HIV-1) AND IMMUNOSUPPRESSIVE ACTIVITY

Citation
Lagm. Vandenbroek et al., SYNTHESIS OF OXYGEN-SUBSTITUTED N-ALKYL 1-DEOXYNOJIRIMYCIN DERIVATIVES - AZA SUGAR ALPHA-GLUCOSIDASE INHIBITORS SHOWING ANTIVIRAL (HIV-1) AND IMMUNOSUPPRESSIVE ACTIVITY, Recueil des travaux chimiques des Pays-Bas, 113(11), 1994, pp. 507-516
Citations number
45
Categorie Soggetti
Chemistry
ISSN journal
01650513
Volume
113
Issue
11
Year of publication
1994
Pages
507 - 516
Database
ISI
SICI code
0165-0513(1994)113:11<507:SOON1D>2.0.ZU;2-D
Abstract
The synthesis of a series of six less-lipophilic analogues of the alph a-glucosidase inhibitor N-decyl-l-deoxynojirimycin (N-decyl-dNM, 5) is described. With the incorporation of a single oxygen atom, particular ly at position seven in the N-decyl side-chain to give N-(7-oxadecyl)- dNM (8), the therapeutic ratio (alpha-glucosidase I inhibitory activit y over toxicity in HepG2 cells) increases considerably. Compound 8 inh ibits purified porcine liver alpha-glucosidase I with an IC50 value of 0.28 muM. The position of the oxygen atom in the N-decyl side-chain i s of importance since N-(3-oxadecyl)-dNM (7) is less active than 8 and , moreover, is toxic to HepG2 cells at 3 mM. Subsequently, the synthes is of eight ester derivatives of N-(7-oxadecyl)-dNM is described. All of these ester analogues are less active alpha-glucosidase inhibitors than the parent compound 8 in HepG2 cells. The compounds were further analyzed for antiviral and immunomodulatory activity in vitro. It is f ound that the most potent alpha-glucosidase I inhibitor from this stud y N-(7-oxadecyl)-dNM (8) inhibits HIV-1-induced syncytia formation and lymphocyte proliferation in vitro. Finally, compound 8 was investigat ed in vivo. N-(7-Oxadecyl)-dNM (8) reduced adjuvant-induced arthritis in rats making this compound a potential candidate for treating autoim mune diseases like rheumatoid arthritis.