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Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite

Leishmania is an obligate intracellular protozoan parasite, which resides in human macrophage vacuoles that are referred to as parasitophorus vacuoles. Amphotericin B (AmB) is the first-line drug with 99% cure rates; however, overdose-induced toxic side effects are a major limitation. To improve the...

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Autores principales: Singh, Aakriti, Sharma, Sandeep, Yadagiri, Ganesh, Parvez, Shabi, Gupta, Ritika, Singhal, Nitin Kumar, Koratkar, Nikhil, Singh, Om Prakash, Sundar, Shyam, Shanmugam, Vijayakumar, Mudavath, Shyam Lal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055620/
https://www.ncbi.nlm.nih.gov/pubmed/35516949
http://dx.doi.org/10.1039/d0ra04266h
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author Singh, Aakriti
Sharma, Sandeep
Yadagiri, Ganesh
Parvez, Shabi
Gupta, Ritika
Singhal, Nitin Kumar
Koratkar, Nikhil
Singh, Om Prakash
Sundar, Shyam
Shanmugam, Vijayakumar
Mudavath, Shyam Lal
author_facet Singh, Aakriti
Sharma, Sandeep
Yadagiri, Ganesh
Parvez, Shabi
Gupta, Ritika
Singhal, Nitin Kumar
Koratkar, Nikhil
Singh, Om Prakash
Sundar, Shyam
Shanmugam, Vijayakumar
Mudavath, Shyam Lal
author_sort Singh, Aakriti
collection PubMed
description Leishmania is an obligate intracellular protozoan parasite, which resides in human macrophage vacuoles that are referred to as parasitophorus vacuoles. Amphotericin B (AmB) is the first-line drug with 99% cure rates; however, overdose-induced toxic side effects are a major limitation. To improve the efficacy at lower dose and subsequently to avoid toxicity and to further investigate the role of charge dynamics on the efficacy, a graphene oxide (GO)-based composite of AmB was developed with native negatively charged GO and amine-conjugated positively charged AGO. The AGO composite resulted in enhanced uptake as confirmed by confocal and FACS analysis. Thus, AGO caused a strong inhibition of amastigotes, with IC(50) values 5-fold lower than free AmB. The parasitophorus vacuoles harbour a hydrolytic and acidic environment, which is favourable for the parasites, as they don't attenuate this condition. AGO–AmB was able to modify the intracellular pH of the Leishmania donovani-infected macrophages, generating unfavourable conditions for the amastigote, and thus improving its efficacy.
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spelling pubmed-90556202022-05-04 Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite Singh, Aakriti Sharma, Sandeep Yadagiri, Ganesh Parvez, Shabi Gupta, Ritika Singhal, Nitin Kumar Koratkar, Nikhil Singh, Om Prakash Sundar, Shyam Shanmugam, Vijayakumar Mudavath, Shyam Lal RSC Adv Chemistry Leishmania is an obligate intracellular protozoan parasite, which resides in human macrophage vacuoles that are referred to as parasitophorus vacuoles. Amphotericin B (AmB) is the first-line drug with 99% cure rates; however, overdose-induced toxic side effects are a major limitation. To improve the efficacy at lower dose and subsequently to avoid toxicity and to further investigate the role of charge dynamics on the efficacy, a graphene oxide (GO)-based composite of AmB was developed with native negatively charged GO and amine-conjugated positively charged AGO. The AGO composite resulted in enhanced uptake as confirmed by confocal and FACS analysis. Thus, AGO caused a strong inhibition of amastigotes, with IC(50) values 5-fold lower than free AmB. The parasitophorus vacuoles harbour a hydrolytic and acidic environment, which is favourable for the parasites, as they don't attenuate this condition. AGO–AmB was able to modify the intracellular pH of the Leishmania donovani-infected macrophages, generating unfavourable conditions for the amastigote, and thus improving its efficacy. The Royal Society of Chemistry 2020-07-22 /pmc/articles/PMC9055620/ /pubmed/35516949 http://dx.doi.org/10.1039/d0ra04266h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Singh, Aakriti
Sharma, Sandeep
Yadagiri, Ganesh
Parvez, Shabi
Gupta, Ritika
Singhal, Nitin Kumar
Koratkar, Nikhil
Singh, Om Prakash
Sundar, Shyam
Shanmugam, Vijayakumar
Mudavath, Shyam Lal
Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite
title Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite
title_full Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite
title_fullStr Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite
title_full_unstemmed Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite
title_short Sensible graphene oxide differentiates macrophages and Leishmania: a bio-nano interplay in attenuating intracellular parasite
title_sort sensible graphene oxide differentiates macrophages and leishmania: a bio-nano interplay in attenuating intracellular parasite
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055620/
https://www.ncbi.nlm.nih.gov/pubmed/35516949
http://dx.doi.org/10.1039/d0ra04266h
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