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1.
Proc Natl Acad Sci U S A ; 114(45): E9712-E9721, 2017 11 07.
Article in English | MEDLINE | ID: mdl-29078351

ABSTRACT

Elimination of filariasis requires a macrofilaricide treatment that can be delivered within a 7-day period. Here we have identified a synergy between the anthelmintic albendazole (ABZ) and drugs depleting the filarial endosymbiont Wolbachia, a proven macrofilaricide target, which reduces treatment from several weeks to 7 days in preclinical models. ABZ had negligible effects on Wolbachia but synergized with minocycline or rifampicin (RIF) to deplete symbionts, block embryogenesis, and stop microfilariae production. Greater than 99% Wolbachia depletion following 7-day combination of RIF+ABZ also led to accelerated macrofilaricidal activity. Thus, we provide preclinical proof-of-concept of treatment shortening using antibiotic+ABZ combinations to deliver anti-Wolbachia sterilizing and macrofilaricidal effects. Our data are of immediate public health importance as RIF+ABZ are registered drugs and thus immediately implementable to deliver a 1-wk macrofilaricide. They also suggest that novel, more potent anti-Wolbachia drugs under development may be capable of delivering further treatment shortening, to days rather than weeks, if combined with benzimidazoles.


Subject(s)
Albendazole/pharmacology , Anti-Bacterial Agents/pharmacology , Filariasis/drug therapy , Wolbachia/drug effects , Animals , Benzimidazoles/pharmacology , Brugia malayi/microbiology , Drug Synergism , Female , Male , Mice , Mice, Inbred BALB C , Minocycline/pharmacology , Rifampin/pharmacology
2.
Sci Rep ; 6: 23458, 2016 Mar 21.
Article in English | MEDLINE | ID: mdl-26996237

ABSTRACT

Lymphatic filariasis and onchocerciasis are parasitic helminth diseases, which cause severe morbidities such as elephantiasis, skin disease and blindness, presenting a major public health burden in endemic communities. The anti-Wolbachia consortium (A·WOL: http://www.a-wol.com/) has identified a number of registered antibiotics that target the endosymbiotic bacterium, Wolbachia, delivering macrofilaricidal activity. Here we use pharmacokinetics/pharmacodynamics (PK/PD) analysis to rationally develop an anti-Wolbachia chemotherapy by linking drug exposure to pharmacological effect. We compare the pharmacokinetics and anti-Wolbachia efficacy in a murine Brugia malayi model of minocycline versus doxycycline. Doxycycline exhibits superior PK in comparison to minocycline resulting in a 3-fold greater exposure in SCID mice. Monte-Carlo simulations confirmed that a bi-daily 25-40 mg/Kg regimen is bioequivalent to a clinically effective 100-200 mg/day dose for these tetracyclines. Pharmacodynamic studies showed that minocycline depletes Wolbachia more effectively than doxycycline (99.51% vs. 90.35%) after 28 day 25 mg/Kg bid regimens with a more potent block in microfilarial production. PK/PD analysis predicts that minocycline would be expected to be 1.7 fold more effective than doxycycline in man despite lower exposure in our infection models. Our findings warrant onward clinical investigations to examine the clinical efficacy of minocycline treatment regimens against lymphatic filariasis and onchocerciasis.


Subject(s)
Anti-Bacterial Agents/administration & dosage , Elephantiasis, Filarial/prevention & control , Minocycline/administration & dosage , Wolbachia/drug effects , Animals , Anti-Bacterial Agents/pharmacokinetics , Brugia malayi/drug effects , Brugia malayi/parasitology , Disease Models, Animal , Dose-Response Relationship, Drug , Doxycycline/administration & dosage , Doxycycline/pharmacokinetics , Elephantiasis, Filarial/parasitology , Female , Male , Mice , Mice, Inbred BALB C , Mice, SCID , Minocycline/pharmacokinetics , Wolbachia/pathogenicity
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