In vitro antimicrosporidial activity of gold nanoparticles against Heterosporis saurida

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Abstract

Background: Worldwide, there is a need to expand the number of drugs available to treat parasitic infections in aquaculture. One of the new materials being tested is metal nanoparticles, which have unique chemical and physical characteristics owing to their extremely small size and high surface area to volume ratio. We examined the effectiveness of gold nanoparticles against the microsporidian parasite Heterosporis saurida, which causes severe economic losses in lizard fish, Saurida undosquamis aquaculture. Results: We synthesized gold nanoparticles by chemical reduction of tetrachloroauric acid as a metal precursor. We assessed the antimicrosporidial efficacy of the nanoparticles against H. saurida using an in vitro screening approach, which we had developed previously using the eel kidney cell line EK-1. The number of H. saurida spores produced in EK-1 cells was reduced in a proportional manner to the dosage of gold nanoparticles administered. A cell metabolic activity test (MTT) indicated that the gold nanoparticles did not appear to be toxic to the host cells. Conclusions: Gold nanoparticles can act as an effective antimicrosporidial agent and hold promise to reduce disease in lizardfish aquaculture. Metal nanoparticles should be considered as an alternate choice for development of new antimicrosporidial drugs to combat disease problems in aquaculture.

Figures

  • Fig. 1 The microsporidian parasite Heterosporis saurida infects the lizard fish Saurida undosquamis and forms white, cyst-like structures in the muscles
  • Fig. 2 TEM micrograph of gold nanoparticles showing that most of the gold nanoparticles are round/spherical with a size range of 11.06–14.22 nm
  • Fig. 3 Effect of gold nanoparticles against Heterosporis saurida in EK-1 cells. Cells were infected with the spores of H. saurida and incubated with different concentrations of gold nanoparticles. Data are mean (± SD) numbers of spores in 6 wells of infected EK-1 cells
  • Table 1 Effects of different concentrations of gold nanoparticles on proliferation of Heterosporis saurida and infectivity of the recovered spores in EK-1 cell cultures

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APA

Saleh, M., Kumar, G., Abdel-Baki, A. A., Al-Quraishy, S., & El-Matbouli, M. (2016). In vitro antimicrosporidial activity of gold nanoparticles against Heterosporis saurida. BMC Veterinary Research, 12(1). https://doi.org/10.1186/S12917-016-0668-X

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