Carrier effects on biological activity of amphotericin B.
- 1 October 1996
- journal article
- review article
- Vol. 9 (4) , 512-31
Abstract
Amphotericin B (AmB), the drug of choice for the treatment of most systemic fungal infections, is marketed under the trademark Fungizone, as an AmB-deoxycholate complex suitable for intravenous administration. The association between AmB and deoxycholate is relatively weak; therefore, dissociation occurs in the blood. The drug itself interacts with both mammalian and fungal cell membranes to damage cells, but the greater susceptibility of fungal cells to its effects forms the basis for its clinical usefulness. The ability of the drug to form stable complexes with lipids has allowed the development of new formulations of AmB based on this property. Several lipid-based formulations of the drug which are more selective in damaging fungal or parasitic cells than mammalian cells and some of which also have a better therapeutic index than Fungizone have been developed. In vitro investigations have led to the conclusion that the increase in selectivity observed is due to the selective transfer of AmB from lipid complexes to fungal cells or to the higher thermodynamic stability of lipid formulations. Association with lipids modulates AmB binding to lipoproteins in vivo, thus influencing tissue distribution and toxicity. For example, lipid complexes of AmB can be internalized by macrophages, and the macrophages then serve as a reservoir for the drug. Furthermore, stable AmB-lipid complexes are much less toxic to the host than Fungizone and can therefore be administered in higher doses. Experimentally, the efficacy of AmB-lipid formulations compared with Fungizone depends on the animal model used. Improved therapeutic indices for AmB-lipid formations have been demonstrated in clinical trials, but the definitive trials leading to the selection of an optimal formulation and therapeutic regimen have not been done.This publication has 100 references indexed in Scilit:
- How do the polyene macrolide antibiotics affect the cellular membrane properties?Published by Elsevier ,2003
- Liposomal and Lipid Formulations of Amphotericin BClinical Pharmacokinetics, 1992
- Clinical evaluation of a new lipid-based delivery system for intravenous administration of amphotericin BEuropean Journal of Clinical Microbiology & Infectious Diseases, 1992
- Inhibition of the interaction between lipoproteins and amphotericin B by some delivery systemsBiochemical and Biophysical Research Communications, 1991
- Comparison of the in vitro antifungal activity of free and liposome-encapsulated amphotericin BEuropean Journal of Clinical Microbiology & Infectious Diseases, 1991
- In-vitro evaluation of the antifungal activity of amphotericin B entrapped into liposomes during storage for one yearJournal of Antimicrobial Chemotherapy, 1990
- The polyene antibiotic amphotericin B inhibits the Na+/K+ pump of human erythrocytesBiochemical and Biophysical Research Communications, 1988
- Effects of the detergent sucrose monolaurate on binding of amphotericin B to sterols and its toxicity for cellsBiochemical and Biophysical Research Communications, 1988
- Amphotericin B-resistant yeast infection in severely immunocompromised patientsThe American Journal of Medicine, 1988
- Concentration- and time-dependence of amphotericin-B induced permeability changes across ergosterol-containing liposomesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1986