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"Shanta Dutta"

Brief Communication

Molecular Identification of Cryptosporidium viatorum Infection in a Patient Suffering from Unusual Cryptosporidiosis in West Bengal, India
Sanjib Kumar Sardar, Ajanta Ghosal, Yumiko Saito-Nakano, Shanta Dutta, Tomoyoshi Nozaki, Sandipan Ganguly
Korean J Parasitol 2021;59(4):409-413.
Published online August 18, 2021
DOI: https://doi.org/10.3347/kjp.2021.59.4.409
In this study, we have collected and screened a total of 268 stool samples from diarrheal patients admitted to an Infectious disease hospital in Kolkata for the presence of Cryptosporidium spp. The initial diagnosis was carried out by microscopy followed by genus specific polymerase chain reaction assays based on 70 kDa heat shock proteins (HSP70). DNA sequencing of the amplified locus has been employed for determination of genetic diversity of the local isolates. Out of 268 collected samples, 12 (4.48%) were positive for Cryptosporidium spp. Sequences analysis of 70 kDa heat shock proteins locus in 12 Cryptosporidium local isolates revealed that 2.24% and 1.86% of samples were showing 99% to 100% identity with C. parvum and C. hominis. Along with the other 2 major species one recently described globally distributed pathogenic species Cryptosporidium viatorum has been identified. The HSP70 locus sequence of the isolate showed 100% similarity with a previously described isolate of C. viatorum (Accession No. JX978274.1, JX978273.1, and JN846706.1) present in GenBank.

Citations

Citations to this article as recorded by  Crossref logo
  • Prevalence and genotype analysis of Cryptosporidium spp. in nine species of wild rodents in China
    Zhen-Qiu Gao, Hai-Tao Wang, Jing-Hao Li, Yi-Xuan Song, Qing-Yu Hou, Si-Yuan Qin, He Ma, Quan Zhao, Ya Qin
    Parasite.2025; 32: 19.     CrossRef
  • Cryptosporidium and cryptosporidiosis: An update of Asian perspectives in humans, water and food, 2015–2025
    Shahira Abdelaziz Ali Ahmed, Sonia Boughattas, Mohammad Reza Mahmoudi, Huma Khan, Simuzar Mamedova, Ardra Namboodiri, Frederick R. Masangkay, Panagiotis Karanis
    Current Research in Parasitology & Vector-Borne Diseases.2025; 8: 100311.     CrossRef
  • Critters and contamination: Zoonotic protozoans in urban rodents and water quality
    Siobhon Egan, Amanda D. Barbosa, Yaoyu Feng, Lihua Xiao, Una Ryan
    Water Research.2024; 251: 121165.     CrossRef
  • An Update on Zoonotic Cryptosporidium Species and Genotypes in Humans
    Una Ryan, Alireza Zahedi, Yaoyu Feng, Lihua Xiao
    Animals.2021; 11(11): 3307.     CrossRef
  • 4,449 View
  • 97 Download
  • 5 Web of Science
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Original Article
Pyruvate Protects Giardia Trophozoites from Cysteine-Ascorbate Deprived Medium Induced Cytotoxicity
Dibyendu Raj, Punam Chowdhury, Rituparna Sarkar, Yumiko Saito-Nakano, Keinosuke Okamoto, Shanta Dutta, Tomoyoshi Nozaki, Sandipan Ganguly
Korean J Parasitol 2018;56(1):1-9.
Published online February 28, 2018
DOI: https://doi.org/10.3347/kjp.2018.56.1.1
Giardia lamblia, an anaerobic, amitochondriate protozoan parasite causes parasitic infection giardiasis in children and young adults. It produces pyruvate, a major metabolic product for its fermentative metabolism. The current study was undertaken to explore the effects of pyruvate as a physiological antioxidant during oxidative stress in Giardia by cysteine-ascorbate deprivation and further investigation upon the hypothesis that oxidative stress due to metabolism was the reason behind the cytotoxicity. We have estimated intracellular reactive oxygen species generation due to cysteine-ascorbate deprivation in Giardia. In the present study, we have examined the effects of extracellular addition of pyruvate, during oxidative stress generated from cysteine-ascorbate deprivation in culture media on DNA damage in Giardia. The intracellular pyruvate concentrations at several time points were measured in the trophozoites during stress. Trophozoites viability under cysteine-ascorbate deprived (CAD) medium in presence and absence of extracellular pyruvate has also been measured. The exogenous addition of a physiologically relevant concentration of pyruvate to trophozoites suspension was shown to attenuate the rate of ROS generation. We have demonstrated that Giardia protects itself from destructive consequences of ROS by maintaining the intracellular pyruvate concentration. Pyruvate recovers Giardia trophozoites from oxidative stress by decreasing the number of DNA breaks that might favor DNA repair.

Citations

Citations to this article as recorded by  Crossref logo
  • A myeloid leukemia factor homolog is involved in tolerance to stresses and stress-induced protein metabolism in Giardia lamblia
    Jui-Hsuan Wu, Jen-Chi Lee, Chun-Che Ho, Pei-Wei Chiu, Chin-Hung Sun
    Biology Direct.2023;[Epub]     CrossRef
  • Escherichia coli mediated resistance of Entamoeba histolytica to oxidative stress is triggered by oxaloacetate
    Yana Shaulov, Chikako Shimokawa, Meirav Trebicz-Geffen, Shruti Nagaraja, Karen Methling, Michael Lalk, Lea Weiss-Cerem, Ayelet T. Lamm, Hajime Hisaeda, Serge Ankri, William A. Petri
    PLOS Pathogens.2018; 14(10): e1007295.     CrossRef
  • 9,094 View
  • 204 Download
  • 2 Web of Science
  • Crossref