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Dr. Muhammad Ehsan
  • Dr. Muhammad Ehsan

  • Assistant Professor
    PhD, PostDoc
  •  https://www.facebook.com/Dr.MuhammadEhsan
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About

Dr. Muhammad Ehsan obtained Bachelor degree in Doctor of Veterinary Medicine (DVM) in 2011 and Master of Philosophy (M.Phil) in Veterinary Parasitology in 2014 from Sindh Agriculture University Tandojam, Sindh Pakistan. Dr. Ehsan got his Doctor of Philosophy degree in Veterinary Parasitology from College of Veterinary Medicine, Nanjing Agricultural University, China in 2018. He has also worked for two years as a Post-doctoral Fellowship/Researcher under High Talent program of China, at Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences (LVRI-CAAS) from 2019-2021. His current research interests focus on the epidemiology and control strategies of parasitic infections, host-parasite interactions and parasite vaccines. He has published various research articles in well reputed SCI journals such as Frontiers in Immunology, Frontiers in Microbiology, Parasite Immunology, Veterinary Parasitology, International Journal for Parasitology, Vaccines, Pathogens, Microorganisms, PloS One, Parasites & Vectors, Eukaryotic microbiology, Research in Veterinary Sciences and so on.

Currently Dr. Muhammad Ehsan is working as Assistant Professor of Parasitology at Department of Parasitology, Faculty of Veterinary and Animal Sciences, The Islamia University of Bahawalpur, Punjab Pakistan.

The list of publication:

https://www.researchgate.net/profile/Muhammad-Ehsan-16/

Phone:0316-0538042 06229255567
Email:muhammad.ehsan@iub.edu.pk
Address:Department of Parasitology, Faculty of Veterinary and Animal Sciences, The Islamia University of Bahawalpur

Research Interests

Epidemiology of parasite infection, control strategies of parasitic infections, molecular cloning and characterization, host-parasite interactions and parasite vaccines development.

Awards and Honors

  1. Certificate/Award of Honor for “Excellent International student” in first   semester of 2016-2017, at Nanjing Agricultural University, Jiangsu province, Nanjing China.
  2. Certificate/Award of Honor for “Excellent International student” in second semester of 2016-2017, at Nanjing Agricultural University, Jiangsu province, Nanjing China.
  3. Award of full length scholarship funded by “Chinese Scholarship Council” throughout duration of PhD program (Sept, 2014-July-2018).

Publications

international: 45

Publications as First Author:

  1. Ehsan, M., Hu, R-S., Hou, J.-L., Elsheikha, H M., Li, X-D., Liang, P., Zhang, Z-W., Zhu, X-Q., 2021. Fasciola gigantica tegumental calcium-binding EF-hand protein 4 (Fg-CaBP4) exerts immunomodulatory effects on goat monocytes. Paeasite & Vectors. 14: 276. (IF=3.876)
  2. Ehsan, M., Hu, R-S., Liang, Q-L., Hou, J.-L., Song, X., Yan, R., Zhu, X.-Q., Li, X., 2020. Advances in the Development of Anti-Haemonchus contortus Vaccines: Challenges, Opportunities, and Perspectives. Vaccines 8, 555.(IF=4.422)
  3. Ehsan M, Haseeb, M., Hu, R., Ali, H., Memon, M.A., Yan, R., Xu, L., Song, X., Zhu, X., Li, X., 2020. Tropomyosin: An Excretory/Secretory Protein from Haemonchus contortus Mediates the Immuno-Suppressive Potential of Goat Peripheral Blood Mononuclear Cells In Vitro. Vaccines 8(1):109.(IF=4.422)
  4. Ehsan, M., Gadahi, J.A., Hasan, M.W., Haseeb, M., Ali, H., Yan, R., Xu, L., Song, X., Zhu, X., Li, X. 2020.Characterization of Haemonchus contortus Excretory/Secretory Antigen (ES-15) and its Modulatory Functions on Goat Immune Cells In Vitro. Pathogens 9, 162.(IF=3.492)
  5. Ehsan, M., Gadahi, J.A., Liu, T., Lu, M., Wang, Y., Hasan, M. W., Haseeb, M.,Yan, R., Xu, L., Song, X., Zhu, X., Li, X. 2020.Identification of a novel Methyltransferase-Type 12 protein from Haemonchus contortus and its effects on functions of goat PBMCs. Parasites & Vectors 13, 154.(IF=3.876)
  6. Ehsan, M., Gadahi, J.A., Lu, M., Wang, Y., Hasan, M.W., Haseeb, M., Liu, X., Yan, R., Xu, L., Song, X., Zhu, X., Du, A., Hu, M., Li, X. 2020. Recombinant Elongation factor 1 alpha of Haemonchus contortus affects the functions of goat peripheral blood mononuclear cells (PBMCs). Parasite Immunology 42(5): e12703. (IF=2.280)
  7. Ehsan, M., Wang, W., Gadahi, J.A., Hasan, M.W., Lu, M., Wang, Y., Liu, X., Haseeb, M., Yan, R., Xu, L., Song, X., Li, X., 2018. The Serine/Threonine-Protein Phosphatase 1 from Haemonchus contortus Actively Involved in Suppressive Regulatory Roles on Immune Functions of Goat PBMCs. Frontiers in Immunology 9:1627. doi: 10.3389/fimmu.2018.01627. (IF=4.716)
  8. Ehsan, M., Gao, W., Gadahi, J.A., Lu, M., Liu, X., Wang, Y., Yan, R., Xu, L., Song, X., Li, X., 2017. Arginine kinase from Haemonchus contortus decreased the proliferation and increased the apoptosis of goat PBMCs in vitro. Parasites & Vectors10, 311.(IF=3.163)
  9. Ehsan, M., Akhter, N., Bhutto, B., Arijo, A., Ali Gadahi, J., 2017. Prevalence and genotypic characterization of bovine Echinococcus granulosus isolates by using cytochrome oxidase 1 (Co1) gene in Hyderabad, Pakistan. Veterinary Parasitology239, 80-85.(IF=2.422)

Publications as Equal contributor:

  1. *Gadahi, J.A.,*Ehsan, M., Wang, S., Zhang, Z., Wang, Y., Yan, R., Song, X., Xu, L., Li, X., 2016. Recombinant protein of Haemonchus contortus 14-3-3 isoform 2 (rHcftt-2) decreased the production of IL-4 and suppressed the proliferation of goat PBMCs in vitro. Experimental  Parasitology 171, 57-66. (*Equal contribution) (IF=1.724)
  2. *Gadahi, J.A., Li, B., *Ehsan, M., Wang, S., Zhang, Z., Wang, Y., Hasan, M.W., Yan, R., Song, X., Xu, L., 2016. Recombinant Haemonchus contortus 24 kDa excretory/secretory protein (rHcES-24) modulate the immune functions of goat PBMCs in vitro. Oncotarget 7, 83926-83937. (*Equal contribution) (IF=5.168)

Publications as Co-Author:

  1. Hu R-S, Zhang F-K, Ma Q-N, Ehsan M, Zhao Q, Zhu X-Q, 2022. Transcriptomic landscape of hepatic lymph nodes, peripheral blood lymphocytes and spleen of swamp buffaloes infected with the tropical liver fluke Fasciola gigantica. PLOS Neglected Tropical Diseases 16: e0010286. (IF=4.33)
  2. Haseeb M, Huang J, Lakho SA, Yang Z, Hasan MW, Ehsan M, Aleem MT, Memon MA, Ali H, Song X, Yan Ruofeng, Xu Lixin, Li X, 2022. Em14-3-3 delivered by PLGA and chitosan nanoparticles conferred improved protection in chicken against Eimeria maxima. Parasitology Research, 121(2):675-689. (IF=2.289)
  3. Liu X, Li C, Li X, Ehsan M, Lu M, Li Ke, Xu Lixin, Yan Ruofeng, Song Xiaokai, Li X, 2021. Proteomics analysis reveals that the proto-oncogene eIF-5A indirectly influences the growth, invasion and replication of Toxoplasma gondii tachyzoite. Parasites & Vectors 14: 283. (IF=3.876)
  4. Liang P, Li Y, Mao L, Liu T, Zhang S, Ehsan M, Wang L, Guo A, Chen G, Luo X 2021. Transcriptome Analysis and Autophagy Investigation of LoVo Cells Stimulated with Exosomes Derived from T. asiatica Adult Worms. Microorganisms 9(5):994. (IF=4.128)
  5. Suleman, Muhammad N, Khan M S, Tkach V V, Ullah H, Ehsan M, Ma J, Zhu X-Q, 2021. Mitochondrial genomes of two eucotylids as the first representatives from the superfamily Microphalloidea (Trematoda) and phylogenetic implications. Parasites & Vectors 14: 48. (IF=3.876)
  6. Hu R-S, Zhang X-X, Ma Q-N, Elsheikha H M, Ehsan M, Zhao Q, Fromm B, Zhu X-Q 2021. Differential expression of microRNAs and tRNA fragments mediate the adaptation of the liver fluke Fasciola gigantica to its intermediate snail and definitive mammalian hosts. International Journal for Parasitology 51: 405-14. (IF=3.981)
  7. Hasan M W, Haseeb M, Ehsan M, Gadahi J A, Wang Q, Memon M A, Aleem, M T, Lakho S A, Yan, R., Song, X., Xu, L., and Li, X., 2021. The immunogenic maturation of goat monocyte-derived dendritic cells and upregulation of toll-like receptors by five antigens of Haemonchus contortus in-vitro. Research in Veterinary Science 136: 247-58. (IF=1.892)
  8. Hasan, M.W.; Haseeb, M.; Ehsan, M.;Gadahi, J.A.;Naqvi, M.A.;Wang, Q.Q.; Liu, X.; Lakho, S.A.; Yan, R.; Xu, L.; Song, X.; Li, X, 2020. Nanoparticles (PLGA and Chitosan)-Entrapped ADP-Ribosylation Factor 1 of Haemonchus contortus Enhances the Immune Responses in ICR Mice. Pathogens.2020, 8.(IF=3.492)
  9. Hu, R.-S.; Zhang, F.-K.; Elsheikha, H.M.; Ma, Q.-N.; Ehsan, M.; Zhao, Q.; Zhu, X.-Q. Proteomic Profiling of the Liver, Hepatic Lymph Nodes, and Spleen of Buffaloes Infected with Fasciola gigantica. Pathogens.2020; 9, (12) 982. (IF=3.492)
  10. Wang, Y.; Ehsan, M.; Wang, S.; Tian, X.; Yan, R.; Song, X.; Xu, L.; Li, X.; 2020. Modulatory functions of recombinant electron transfer flavoprotein α subunit protein from Haemonchus contortus on goat immune cells in vitro. Veterinary Parasitology 288, 109300. (IF=2.738)
  11. Hu, R-S.; He, J-J.; Elsheikha, HM.; Zou, Y.; Ehsan, M.; Ma, Q-N.; Zhu, X-Q.; Cong, W.; 2020. Transcriptomic Profiling of Mouse Brain During Acute and Chronic Infections by Toxoplasma gondii Oocysts. Frontiers in Microbiology. 11:570903. (IF=5.640)
  12. Wang, Y.; Wang, W.; Ehsan, M.; Zhang, Y.; Yan, R.; Song, X.; Xu, L.; Zhang, X.; Li, X.; 2020. Characterization of a PhosphoTyrosyl Phosphatase Activator homologue of the parasitic nematode Haemonchus contortus and its immune-modulatory effect on goat PBMCs in vitro. International Journal for Parasitology. 50, 1157-1166(IF=3.981)
  13. Wang, Y.; Ehsan, M.; Huang, J.; Aimulajiang, K.; Yan, R.; Song, X.; Xu, L.; Li, X.; 2020. Characterization of a rhodanese homologue from Haemonchus contortus and its immune-modulatory effects on goat immune cells in vitro. Parasites & Vectors 13, 454. (IF=3.876)
  14. Lu, M.; Tian, X.; Zhang, Y.; Aimulajiang, K.; Wang, W.; Ehsan, M.; Li, C.; Yan, R.; Xu, L.; Song, X.; Li, X.; 2020. Unveiling the immunomodulatory properties of Haemonchus contortus adhesion regulating molecule 1 interacting with goat T cells. Parasites & Vectors 13(1):424. (IF=3.876)
  15. Wang, L.; Liang, P.; Wei, Y.; Zhang, S.; Guo, A.; Liu, G.; Ehsan, M.; Liu, M.; Luo, X., 2020. Taenia solium insulin receptors: promising candidates for cysticercosis treatment and prevention. Acta Tropica 209:105552. (IF=3.112)
  16. Naqvi, MA-u-H.; Jamil, T.; Naqvi, SZ.; Memon, MA.; Aimulajiang, K.; Aleem, MT.; Ehsan, M.; Xu, L.; Song, X.; Li, X.; Yan, R.; 2020. Immunodiagnostic potential of recombinant tropomyosin during prepatent Haemonchus contortus infection in goat. Research in Veterinry Science 128,197-204.(IF=2.534)
  17. Tian, X.; Lu, M.; Wang, W.; Jia, C.; Ehsan, M.; Yan, R.; Xu, L.; Song, X.; Li, X.; 2019. HcTTR: a novel antagonist against goat interleukin 4 derived from the excretory and secretory products of Haemonchus contortus. BMC Veterinary Research  50(1):42. (IF=1.835)
  18. Wang, W., Wang, Y., Tian, X., Lu, M., Ehsan, M., Yan, R., Song, X., Xu, L., and Li, X., 2019. DY75B8A.8 (HC8) protein of Haemonchus contortus: an antagonistic molecule of host IL-2. Parasite Immunology, 10.1111/pim.12625.(IF=2.054)
  19. Liu, T., Huang, J., Ehsan, M., Wang, S., Fei H., Zhou, Z., Song, X., Yan, R., Xu, L., Li, X., 2018. Protective immunity against Eimeria maxima induced by vaccines of Em14-3-3 antigen. Veterinary Parasitology, 253:79-86. (IF=2.009)
  20. Liu, T., Huang, J., Li, Y., Ehsan, M., Wang, S., Zhou, Z., Song, X., Yan, R., Xu, L., Li, X., 2018. Molecular characterization and the protective immunity evaluation of Eimeria maxima surface antigen gene. Parasites & Vectors 11, 325. (IF=3.031)
  21. Liu, X., Li, Xiaoyu., Wang, Q., Sun, X., Lu, M., Ehsan, M., Xu, L., Yan, R., Song, X., and Li, X., 2018Toxoplasma gondii Histone 4 protein inhibited chemotaxis and proliferation of murine macrophages in vitro. The journal ofEukaryotic Microbiology Doi:10.1111/jeu.12630. (IF=2.361)
  22. Li, B., Gadahi, J.A., Gao, W., Zhang, Z., Ehsan, M., Xu, L., Song, X., Li, X., Yan, R., 2017. Characterization of a novel aspartyl protease inhibitor from Haemonchus contortus. Parasites & Vectors10, 191. (IF=3.163)
  23. Liu, X., Ma, Q., Sun, X., Lu, M., Ehsan, M., Hasan, M.W., Xu, L., Yan, R., Song, X., Li, X., 2017. Effects of Recombinant Toxoplasma gondii Citrate Synthase I on the Cellular Functions of Murine Macrophages In vitro. Frontiers in Microbiology8, 1376.(IF=4.019)
  24. Lu, M., Tian, X., Yang, X., Yuan, C., Ehsan, M., Liu, X., Yan, R., Xu, L., Song, X., Li, X., 2017. The N- and C-terminal carbohydrate recognition domains of Haemonchus contortus galectin bind to distinct receptors of goat PBMC and contribute differently to its immunomodulatory functions in host-parasite interactions. Parasites & Vectors10, 409.(IF=3.163)
  25. Wang, Y., Lu, M., Wang, S., Ehsan, M., Yan, R., Song, X., Xu, L., Li, X., 2017. Characterization of a secreted macrophage migration inhibitory factor homologue of the parasitic nematode Haemonchus contortus acting at the parasite-host cell interface. Oncotarget8, 40052-40064. (IF=5.168)
  26. Wang, Y., Wen, Y., Wang, S., Ehsan, M., Yan, R., Song, X., Xu, L., Li, X., 2017. Modulation of goat monocyte function by HCcyst-2, a secreted cystatin from Haemonchus contortus. Oncotarget8, 44108-44120.(IF=5.168)
  27. Wang, Y., Wu, L., Liu, X., Wang, S., Ehsan, M., Yan, R., Song, X., Xu, L., Li, X., 2017. Characterization of a secreted cystatin of the parasitic nematode Haemonchus contortus and its immune-modulatory effect on goat monocytes. Parasites & Vectors10, 425.(IF=3.163)
  28. Wen, Y., Wang, Y., Wang, W., Lu, M., Ehsan, M., Tian, X., Yan, R., Song, X., Xu, L., Li, X., 2017. Recombinant Miro domain-containing protein of Haemonchus contortus (rMiro-1) activates goat peripheral blood mononuclear cells in vitro. Veterinary Parasitology243, 100-104.(IF=2.422)
  29. Gadahi, J.A., Ehsan, M., Wang, S., Zhang, Z., Yan, R., Song, X., Xu, L., Li, X., 2017. Recombinant protein of Haemonchus contortus small GTPase ADP-ribosylation factor 1 (HcARF1) modulate the cell mediated immune response in vitro. Oncotarget 8, 112211-112221. (IF=5.168)
  30. Rehman, S., Ahmad, MD., Ehsan, M., Hassan, MW., Memon, MA., Qureshi, NA., Ali, A., Haseeb, M. 2017. In Situ Latex Agglutination in Seroprevalance of Toxoplasmosis in Pastoral Herds of Goat and Attendants in Premises of Fort Munro Punjab, Pakistan. Veterinaria 5 (1):8-13. (IF=0.8)
  31. Gadahi, J.A., Wang, S., Bo, G., Ehsan, M., Yan, R., Song, X., Xu, L., Li, X., 2016. Proteomic Analysis of the Excretory and Secretory Proteins of Haemonchus contortus (HcESP) Binding to Goat PBMCs In Vivo Revealed Stage-Specific Binding Profiles. PloS one11, e0159796.(IF=2.806)
  32. Gadahi, J.A., Yongqian, B., Ehsan, M., Zhang, Z.C., Wang, S., Yan, R.F., Song, X.K., Xu, L.X., Li, X.R., 2016. Haemonchus contortus excretory and secretory proteins (HcESPs) suppress functions of goat PBMCs in vitro. Oncotarget  7, 35670-35679.(IF=5.168)
  33. Zhang, Z., Liu, X., Yang, X., Liu, L., Wang, S., Lu, M., Ehsan, M., Gadahi, J.A., Song, X., Xu, L., Yan, R., Li, X., 2016. The Molecular Characterization and Immunity Identification of Microneme 3 of Eimeria acervulina. The Journal of Eukaryotic Microbiology63, 709-721.(IF=2.692)
  34. Gadahi, J.A., Bhutto, B., Kashif, J., Shoaib, M., Ehsan, M., Javaid, S.B., Salman, M., 2013. Tick infestation in camels in Thar desert of Sindh-Pakistan. International Journal of Livestock Research, 3(1): 114-118. (NAAS score = 5.36)

Affiliations

Department of Parasitology, Faculty of Veterinary and Animal Sciences, The Islamia University of Bahawalpur, 63100, Punjab Pakistan.

© 2023 The Islamia University of Bahawalpur iub.edu.pk.