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Improvement of amphotericin B activity during experimental cryptococcosis by incorporation into specific
1Institut National de la Santé et de la Recherche Médicale U 283, Université Paris VI, France.
Abstract:
Cryptococcosis is an opportunistic infection that is responsible for increased morbidity and mortality in patients with the acquired immunodeficiency syndrome. The high toxicity of the antifungal agent that is mainly used against cryptococcosis, amphotericin B (AMB), accounts for the need for new treatments, especially in patients with the acquired immunodeficiency syndrome because of the high relapse rate of cryptococcosis. Drug targeting may be one of these alternate treatments. Since we have demonstrated that an immunoglobulin G1 (IgG1) anti-Cryptococcus neoformans serotype A monoclonal antibody (E1) was protective during experimental cryptococcosis in mice, we investigated whether specific targeting of AMB with liposomes that bear E1 would improve the therapeutic index of the drug. For that purpose, in vitro and in vivo experiments were designed to compare the specificities and activities of these liposomes with those of control immunoliposomes bearing a nonrelated IgG1 monoclonal antibody (CY34). The immunoliposomes were prepared by covalently linking E1 or CY34 and small unilamellar vesicles. When immunoliposomes were incubated with yeast cells, only E1-bearing liposomes recognized C. neoformans. In vivo, mice that were treated 24 h after infection with one injection of AMB (0.12 mg/kg of body weight) intercalated into E1-bearing liposomes survived significantly longer than did those given the same dose of AMB alone or AMB intercalated into nontargeted liposomes or control immunoliposomes. None of the mice that were given control treatments did statistically better than those that were given AMB. Keeping in mind that this kind of therapy requires knowledge of the antigenic type of the infecting organism, the results suggest that specific targeting of small doses of AMB improve the efficacy of AMB and might be an alternative to the use of larger doses of AMB.
Insights
Targeting amphotericin B (AMB) with E1 immunoliposomes significantly improved survival in cryptococcosis models. This targeted drug delivery enhances AMB efficacy, offering a potential alternative to higher AMB doses.
Area of Science:
- Mycology
- Immunology
- Pharmacology
Background:
- Cryptococcosis is a significant opportunistic infection, particularly in immunocompromised individuals.
- High toxicity and relapse rates necessitate improved antifungal treatments, especially for amphotericin B (AMB).
- Targeted drug delivery presents a promising strategy to enhance therapeutic efficacy and reduce toxicity.
Purpose of the Study:
- To investigate the therapeutic potential of targeting amphotericin B (AMB) using E1 immunoliposomes.
- To compare the efficacy and specificity of E1-targeted liposomes against Cryptococcus neoformans with control formulations.
Main Methods:
- Preparation of immunoliposomes by covalently linking anti-Cryptococcus neoformans monoclonal antibody (E1) or a control antibody (CY34) to small unilamellar vesicles.
- In vitro assessment of liposome specificity for C. neoformans.
- In vivo efficacy study in a murine model of cryptococcosis, comparing E1-immunoliposomes with free AMB and non-targeted liposomes.
Main Results:
- E1-bearing liposomes specifically recognized and bound to C. neoformans in vitro.
- Mice treated with E1-immunoliposomes showed significantly prolonged survival compared to those receiving AMB alone or non-targeted liposomes.
- Targeted delivery of AMB improved its therapeutic index without increasing the administered dose.
Conclusions:
- Specific targeting of AMB with E1 immunoliposomes enhances its efficacy against experimental cryptococcosis.
- This approach may offer an alternative strategy to using higher doses of conventional AMB, potentially reducing toxicity.
- Further research is warranted, considering the need for pathogen-specific antigen identification for targeted therapy.