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  • Polyanhydride Nanoparticle Delivery Platform Dramatically Enhances Killing of Filarial Worms.

Polyanhydride Nanoparticle Delivery Platform Dramatically Enhances Killing of Filarial Worms.

PLoS neglected tropical diseases (2015-10-27)
Andrea M Binnebose, Shannon L Haughney, Richard Martin, Paula M Imerman, Balaji Narasimhan, Bryan H Bellaire
ABSTRACT

Filarial diseases represent a significant social and economic burden to over 120 million people worldwide and are caused by endoparasites that require the presence of symbiotic bacteria of the genus Wolbachia for fertility and viability of the host parasite. Targeting Wolbachia for elimination is a therapeutic approach that shows promise in the treatment of onchocerciasis and lymphatic filariasis. Here we demonstrate the use of a biodegradable polyanhydride nanoparticle-based platform for the co-delivery of the antibiotic doxycycline with the antiparasitic drug, ivermectin, to reduce microfilarial burden and rapidly kill adult worms. When doxycycline and ivermectin were co-delivered within polyanhydride nanoparticles, effective killing of adult female Brugia malayi filarial worms was achieved with approximately 4,000-fold reduction in the amount of drug used. Additionally the time to death of the macrofilaria was also significantly reduced (five-fold) when the anti-filarial drug cocktail was delivered within polyanhydride nanoparticles. We hypothesize that the mechanism behind this dramatically enhanced killing of the macrofilaria is the ability of the polyanhydride nanoparticles to behave as a Trojan horse and penetrate the cuticle, bypassing excretory pumps of B. malayi, and effectively deliver drug directly to both the worm and Wolbachia at high enough microenvironmental concentrations to cause death. These provocative findings may have significant consequences for the reduction in the amount of drug and the length of treatment required for filarial infections in terms of patient compliance and reduced cost of treatment.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Acetone, for residue analysis, JIS 5000
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Diethyl ether, for residue analysis, JIS 5000
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Acetone, suitable for HPLC
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Acetonitrile solution, contains 0.05 % (w/v) ammonium formate, 5 % (v/v) water, 0.1 % (v/v) formic acid, suitable for HPLC
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Acetone, SAJ first grade, ≥99.0%
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Sodium hydroxide solution, 0.1 M
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Sodium hydroxide solution, 4 M
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Sulfuric acid, SAJ first grade, ≥95.0%
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Acetic acid, 99.5-100.0%
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Sulfuric acid solution, 0.1 M
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N,N-Dimethylformamide, JIS special grade, ≥99.5%
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Sodium hydroxide solution, 7 M
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Acetone, ≥99.5%, for residue analysis
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Sulfuric acid solution, 0.05 M
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Sulfuric acid solution, 5 mM
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Acetic acid, SAJ first grade, ≥99.0%
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Sodium hydroxide solution, 6 M
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Acetic acid, JIS special grade, ≥99.7%
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Acetic acid solution, 1 M, 1 N
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Sulfuric acid solution, 0.025 M
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Sulfuric acid solution, 0.5 M
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Acetic acid, ≥99.7%
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Sodium hydroxide solution, 0.01 M
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Acetic acid, ≥99.7%
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Sodium hydroxide solution, 1 M
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Acetone, for residue analysis, ≥99.5%
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Sodium hydroxide solution, 0.05 M
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Chloroform, JIS 300, ≥99.0%, for residue analysis
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Diethyl ether, ≥99.5%
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Acetone, JIS special grade, ≥99.5%