Published June 15, 2021 | Version v1
Dataset Open

Biogenic nanoporous silicon carrier improves the efficacy of buparvaquone against resistant visceral leishmaniasis

Description

Visceral leishmaniasis is a vector-borne protozoan infection that is fatal if untreated. There is no vaccination against the disease, and the current chemotherapeutic agents are ineffective due to increased resistance and severe side effects. Buparvaquone is a potential drug against leishmaniases but it is highly hydrophobic resulting in poor bioavailability and low therapeutic efficacy. Herein, we loaded the drug into silicon nanoparticles produced from barley husk, which is an agricultural residue and widely available. The buparvaquone-loaded nanoparticles were several times more selective to kill the intracellular parasites being non-toxic to macrophages compared to the pure buparvaquone and other conventionally used anti-leishmanial agents. Furthermore, the in vivo results revealed that the intraperitoneally injected buparvaquone-loaded nanoparticles suppressed the parasite burden close to 100 %. By contrast, pure buparvaquone suppressed the burden only by 50 % with corresponding doses. In the conclusion, the low-cost biogenic silicon nanoparticles are promising carriers to significantly improve the therapeutic efficacy and selectivity of buparvaquone against resistant visceral leishmaniasis opening a new avenue for low-cost treatment against this neglected tropical disease threatening especially the poor people in developing nations.

Table of contents

biomarker.xlsl contains raw data of the biomarker analyses. DLS raw data consists of raw data from dynamic light scattering measurement of the material before and after the lyophilization. Tristar.xls contains raw data of n2 adsorption/desorption measurements and pore size distribution regarding the material characterization. XRD contains raw data of diffractograms obtained by x-ray diffraction measurements of the material. HPLC raw data consists of the peak area values of the buparvaquone used to calculate the loading and release studies with the nanoparticles.

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HPLC analyses, BPQ loading.pdf

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Additional details

Identifiers

B2SHARE Legacy Record ID
e36717d030bd4db3b444881b6291342d
B2SHARE Legacy Record ID
76cac7ff9d4241e88dc16728b576b77a

Funding

Academy of Finland

Instruments

HPLC, Tristar, DLS, XRD
undefined (Other)

Details

Expansion error: Instrument is not eligible for expansion