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"Ali Khamesipour"

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"Ali Khamesipour"

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Cutaneous Leishmaniasis Situation and Predicting the Distribution of Phlebotomus papatasi and P. sergenti as Vectors of Leishmaniasis in Ardabil Province, Iran
Ali Khamesipour, Soheila Molaei, Navid Babaei-Pouya, Eslam Moradi-Asl
Korean J Parasitol 2020;58(3):229-236.
Published online June 26, 2020
DOI: https://doi.org/10.3347/kjp.2020.58.3.229
Cutaneous leishmaniosis (CL) is the most common form of leishmaniasis.CL caused by L. major and L. tropica is endemic in 17 provinces of Iran. This study was carried out to elucidate situation of CL in Ardabil province and to predict distribution of Phlebotomus papatasi and Phlebotomus sergenti (Diptera: Psychodidae) as vectors of CL in the region. In this cross-sectional study, data on CL patients were collected from local health centers of Ardabil province, Iran during 2006-2018 to establish a geodatabase using ArcGIS10.3. A total of 20 CL cases were selected randomly and skin samples were collected and analyzed by PCR method. MaxEnt 3.3.3 model was used to determine ecologically suitable niches for the main vectors. A total, 309 CL human cases were reported and the highest incidence rate of disease was occurred in Bilasavar (37/100,000) and Germi (35/100,000). A total of 2,794 sand flies were collected during May to October 2018. The environmentally suitable habitats for P. papatasi and P. sergenti were predicted to be present in northern and central areas of Ardabil province. The most variable that contributed ratio in the modeling were Isothermality and slope factors. Ardabil province is possibly an endemic are for CL. The presence of P. papatasi and P. sergenti justifies local transmission while the vectors of CL are existing in the northern and central areas of the province.

Citations

Citations to this article as recorded by  Crossref logo
  • Association Between Wolbachia Infection and Susceptibility to Deltamethrin Insecticide in Phlebotomus papatasi (Diptera: Psychodidae), the Main Vector of Zoonotic Cutaneous Leishmaniasis
    Amrollah Azarm, Mona Koosha, Abdolhossein Dalimi, Alireza Zahraie-Ramazani, Amir Ahmad Akhavan, Zahra Saeidi, Mehdi Mohebali, Kamal Azam, Hassan Vatandoost, Mohammad Ali Oshaghi
    Vector-Borne and Zoonotic Diseases.2024; 24(3): 159.     CrossRef
  • In silico prediction of CD8+ and CD4+ T cell epitopes in Leishmania major proteome: Using immunoinformatics
    Mohammad Kashif, Mohd Waseem, Naidu Subbarao
    Journal of Molecular Graphics and Modelling.2024; 129: 108759.     CrossRef
  • Cutaneous leishmaniasis situation analysis in the Islamic Republic of Iran in preparation for an elimination plan
    Iraj Sharifi, Ahmad Khosravi, Mohammad Reza Aflatoonian, Ehsan Salarkia, Mehdi Bamorovat, Ali Karamoozian, Mahmoud Nekoei Moghadam, Fatemeh Sharifi, Abbas Aghaei Afshar, Setareh Agha Kuchak Afshari, Faranak Gharachorloo, Mohammad Reza Shirzadi, Behzad Ami
    Frontiers in Public Health.2023;[Epub]     CrossRef
  • Integration of machine learning algorithms and GIS-based approaches to cutaneous leishmaniasis prevalence risk mapping
    Negar Shabanpour, Seyed Vahid Razavi-Termeh, Abolghasem Sadeghi-Niaraki, Soo-Mi Choi, Tamer Abuhmed
    International Journal of Applied Earth Observation and Geoinformation.2022; 112: 102854.     CrossRef
  • A systematic review and global analysis of the seasonal activity of Phlebotomus (Paraphlebotomus) sergenti, the primary vectors of L. tropica
    Ahmed Karmaoui, Denis Sereno, Samir El Jaafari, Lhoussain Hajji, Shan Lv
    PLOS Neglected Tropical Diseases.2022; 16(12): e0010886.     CrossRef
  • Spatio-temporal analysis and determination of the ecological niche model of Giardia Lamblia (Lambl, 1859) in Ardabil province, northwestern Iran
    Hafez Mirzanejad-Asl, Afshin Karimi, Navid Babaei pouya, Eslam Moradi-Asl
    Journal of Parasitic Diseases.2021; 45(3): 706.     CrossRef
  • Adjuvant effects of TLR agonist gardiquimod admixed with Leishmania vaccine in mice model of visceral leishmaniasis
    Deepak Kumar Goyal, Poonam Keshav, Sukhbir Kaur
    Infection, Genetics and Evolution.2021; 93: 104947.     CrossRef
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  • 6 Web of Science
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Genetic Diversity and Phylogenetic Analysis of the Iranian Leishmania Parasites Based on HSP70 Gene PCR-RFLP and Sequence Analysis
Sara Nemati, Asghar Fazaeli, Homa Hajjaran, Ali Khamesipour, Mohsen Falahati Anbaran, Arezoo Bozorgomid, Fatah Zarei
Korean J Parasitol 2017;55(4):367-374.
Published online August 31, 2017
DOI: https://doi.org/10.3347/kjp.2017.55.4.367
Despite the broad distribution of leishmaniasis among Iranians and animals across the country, little is known about the genetic characteristics of the causative agents. Applying both HSP70 PCR-RFLP and sequence analyses, this study aimed to evaluate the genetic diversity and phylogenetic relationships among Leishmania spp. isolated from Iranian endemic foci and available reference strains. A total of 36 Leishmania isolates from almost all districts across the country were genetically analyzed for the HSP70 gene using both PCR-RFLP and sequence analysis. The original HSP70 gene sequences were aligned along with homologous Leishmania sequences retrieved from NCBI, and subjected to the phylogenetic analysis. Basic parameters of genetic diversity were also estimated. The HSP70 PCR-RFLP presented 3 different electrophoretic patterns, with no further intraspecific variation, corresponding to 3 Leishmania species available in the country, L. tropica, L. major, and L. infantum. Phylogenetic analyses presented 5 major clades, corresponding to 5 species complexes. Iranian lineages, including L. major, L. tropica, and L. infantum, were distributed among 3 complexes L. major, L. tropica, and L. donovani. However, within the L. major and L. donovani species complexes, the HSP70 phylogeny was not able to distinguish clearly between the L. major and L. turanica isolates, and between the L. infantum, L. donovani, and L. chagasi isolates, respectively. Our results indicated that both HSP70 PCR-RFLP and sequence analyses are medically applicable tools for identification of Leishmania species in Iranian patients. However, the reduced genetic diversity of the target gene makes it inevitable that its phylogeny only resolves the major groups, namely, the species complexes.

Citations

Citations to this article as recorded by  Crossref logo
  • Existing and newly emerging human cutaneous Leishmania isolates in Ethiopia: a systematic review
    Abiy Ayele Angelo, Getu Girmay, Dereje Mengesha Berta, Bisrat Birke Teketelew, Elias Chane, Negesse Cherie, Muluneh Assefa, Zufan Yiheyis Abriham, Mebratu Tamir
    Discover Medicine.2025;[Epub]     CrossRef
  • Update on the Seroepidemiology of Human Cystic Echinococcosis and Associated Risk Factors in Iran: A Systematic Review and Meta‐Analysis
    Nashmin Mohemmi, Mohammad Taghi Khodayari, Seyed Ahmad Karamati, Mohammad Reza Shiee, Hossein Effatpanah, Afshin Davari, Ali Reza Ghorbani, Arezoo Bozorgomid
    Health Science Reports.2025;[Epub]     CrossRef
  • Genetic Diversity and Chromosomal Variations in the Iranian Leishmania major Strain: Insights into Pathogenicity and Drug Resistance
    Hanieh Sharifian, Anis Khalafiyan, Mahmood Fadaie, Hossein Khanahmad, Zabihollah Shahmoradi, Erfan Zaker, Parisa Mousavi, Nadia Pourmoshir, Azadeh Zolfaghari
    Advanced Biomedical Research.2025;[Epub]     CrossRef
  • Genetic diversity and epidemiological insights into cutaneous leishmaniasis in Pakistan: a comprehensive study on clinical manifestations and molecular characterization of Leishmania species
    Shumaila Naz, Muhammed Nalcaci, Obaid Hayat, Seray Toz, Azhar Minhas, Shahid Waseem, Yusuf Ozbel
    Parasitology Research.2024;[Epub]     CrossRef
  • Assessment of genetic markers for multilocus sequence typing (MLST) of Fasciola isolates from Iran
    Naser Nazari, Mohamad Bagher Rokni, Madoka Ichikawa‐Seki, Saber Raeghi, Homa Hajjaran, Shahab Falahi, Yazdan Hamzavi, Peyman Heydarian, Afshin Davari, Keyphobad Ghadiri, Arezoo Bozorgomid
    Veterinary Medicine and Science.2023; 9(2): 924.     CrossRef
  • Real‐time impact of COVID‐19 pandemic on cutaneous leishmaniasis case finding and strategic planning, preventive interventions, control and epidemiology in a region with a high burden of cutaneous leishmaniasis and COVID‐19: A cross‐sectional descriptive
    Morteza Shams, Ayoub Rashidi, Jasem Mohamadi, Mohamad Moradi, Reza Pakzad, Razi Naserifar, Jahangir Abdi, Fariba Ghelichi, Arezoo Bozorgomid, Nahid Maspi, Azra Kenarkoohi, Yasin Mohammadi, Amir Abdoli, Shahab Falahi
    Health Science Reports.2023;[Epub]     CrossRef
  • An overview of the trypanosomatid (Kinetoplastida: Trypanosomatidae) parasites infecting several mammal species in Colombia
    Adriana C. Castillo-Castañeda, Luz H. Patiño, Maria Fernanda Zuñiga, Omar Cantillo-Barraza, Martha S. Ayala, Maryi Segura, Jessica Bautista, Plutarco Urbano, Jeiczon Jaimes-Dueñez, Juan David Ramírez
    Parasites & Vectors.2022;[Epub]     CrossRef
  • Taxonomy, Population Structure and Genetic Diversity of Iranian Leishmania Strains of Cutaneous and Visceral Leishmaniasis
    Sara Nemati, Homa Hajjaran, Soudabeh Heydari, Asghar Fazaeli, Ali Khamesipour, Mohsen Falahati Anbaran, Mehdi Mohebali, Hamed Mirjalali
    Acta Parasitologica.2021; 66(4): 1274.     CrossRef
  • The Geographical Distribution of Human Cutaneous and Visceral Leishmania Species Identified by Molecular Methods in Iran: A Systematic Review With Meta-Analysis
    Homa Hajjaran, Reza Saberi, Alireza Borjian, Mahdi Fakhar, Seyed Abdollah Hosseini, Sajjad Ghodrati, Mehdi Mohebali
    Frontiers in Public Health.2021;[Epub]     CrossRef
  • Development of a Multilocus sequence typing (MLST) scheme for Pan-Leishmania
    Juan Jose Lauthier, Paula Ruybal, Paola Andrea Barroso, Yoshihisa Hashiguchi, Jorge Diego Marco, Masataka Korenaga
    Acta Tropica.2020; 201: 105189.     CrossRef
  • Isolation and Molecular Identification of Leishmania spp. in Patients With Cutaneous Leishmaniasis in Golestan Province, Iran
    Ali Fattahi Bafghi, Gilda Eslami, Oghol Niazjorjani, Farzaneh Mirzaei, Javad Namrodi
    International Journal of Epidemiologic Research.2019; 6(1): 8.     CrossRef
  • Description of Leishmania species among dogs and humans in Colombian Visceral Leishmaniasis outbreaks
    Giovanny Herrera, Adriana Higuera, Luz Helena Patiño, Martha S. Ayala, Juan David Ramírez
    Infection, Genetics and Evolution.2018; 64: 135.     CrossRef
  • Cutaneous leishmaniasis in Qasr-e Shirin, a border area in the west of Iran
    Yazdan Hamzavi, Naser Nazari, Nahid Khademi, Keivan Hassani, Arezoo Bozorgomid
    Veterinary World.2018; : 1692.     CrossRef
  • 10,810 View
  • 234 Download
  • 13 Web of Science
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Overexpression of Ubiquitin and Amino Acid Permease Genes in Association with Antimony Resistance in Leishmania tropica Field Isolates
Elham Kazemi-Rad, Mehdi Mohebali, Mohammad Bagher Khadem-Erfan, Homa Hajjaran, Ramtin Hadighi, Ali Khamesipour, Sassan Rezaie, Mojtaba Saffari, Reza Raoofian, Mansour Heidari
Korean J Parasitol 2013;51(4):413-419.
Published online August 30, 2013
DOI: https://doi.org/10.3347/kjp.2013.51.4.413

The mainstay therapy against leishmaniasis is still pentavalent antimonial drugs; however, the rate of antimony resistance is increasing in endemic regions such as Iran. Understanding the molecular basis of resistance to antimonials could be helpful to improve treatment strategies. This study aimed to recognize genes involved in antimony resistance of Leishmania tropica field isolates. Sensitive and resistant L. tropica parasites were isolated from anthroponotic cutaneous leishmaniasis patients and drug susceptibility of parasites to meglumine antimoniate (Glucantime®) was confirmed using in vitro assay. Then, complementary DNA-amplified fragment length polymorphism (cDNA-AFLP) and real-time reverse transcriptase-PCR (RT-PCR) approaches were utilized on mRNAs from resistant and sensitive L. tropica isolates. We identified 2 known genes, ubiquitin implicated in protein degradation and amino acid permease (AAP3) involved in arginine uptake. Also, we identified 1 gene encoding hypothetical protein. Real-time RT-PCR revealed a significant upregulation of ubiquitin (2.54-fold), and AAP3 (2.86-fold) (P<0.05) in a resistant isolate compared to a sensitive one. Our results suggest that overexpression of ubiquitin and AAP3 could potentially implicated in natural antimony resistance.

Citations

Citations to this article as recorded by  Crossref logo
  • Comparative transcriptomics of naturally susceptible and resistant Trypanosoma cruzi strains in response to Benznidazole
    Carlos Ospina, Tatiana Cáceres, Stivenn Gutiérrez, Luz Helena Patiño, Luis David Sáenz-Pérez, Karen Moreno Medina, Juan Carlos Villar, Juan David Ramírez
    International Journal for Parasitology: Drugs and Drug Resistance.2025; 29: 100623.     CrossRef
  • Leishmania spp. genetic factors associated with cutaneous leishmaniasis antimony pentavalent drug resistance: a systematic review
    Raphaela Lisboa Andrade Nery, Thaline Mabel Sousa Santos, Luana Leandro Gois, Aldina Barral, Ricardo Khouri, Caroline Alves Feitosa, Luciane Amorim Santos
    Memórias do Instituto Oswaldo Cruz.2024;[Epub]     CrossRef
  • Transcriptomic analysis of benznidazole-resistant and susceptible Trypanosoma cruzi populations
    Davi Alvarenga Lima, Leilane Oliveira Gonçalves, João Luís Reis-Cunha, Paul Anderson Souza Guimarães, Jeronimo Conceição Ruiz, Daniel Barbosa Liarte, Silvane Maria Fonseca Murta
    Parasites & Vectors.2023;[Epub]     CrossRef
  • Quantitative proteomic analysis reveals differential modulation of crucial stage specific proteins during promastigote to amastigote differentiation in Leishmania donovani
    Chinmayee Bar Routaray, Vaibhavee Choudhari, Divya Prakash, Rajendra Patil, Surabhi Jagtap, Shakuntala Bai, Mahesh J. Kulkarni, Suresh V. Kuchipudi, Kalpana Pai
    Journal of Proteins and Proteomics.2022; 13(1): 17.     CrossRef
  • Leishmania infantum UBC1 in Metacyclic Promastigotes from Phlebotomus perniciosus, a Vaccine Candidate for Zoonotic Visceral Leishmaniasis
    Jaime Larraga, Pedro Alcolea, Ana Alonso, Luis Martins, Inmaculada Moreno, Mercedes Domínguez, Vicente Larraga
    Vaccines.2022; 10(2): 231.     CrossRef
  • Global distribution of treatment resistance gene markers for leishmaniasis
    Samira Salari, Mehdi Bamorovat, Iraj Sharifi, Pooya Ghasemi Nejad Almani
    Journal of Clinical Laboratory Analysis.2022;[Epub]     CrossRef
  • Elucidation of the Flavor Aspects and Flavor-Associated Genomic Regions in Bottle Gourd (Lagenaria siceraria) by Metabolomic Analysis and QTL-seq
    Ying Wang, Yanwei Li, Xiaohua Wu, Xinyi Wu, Zishan Feng, Jian Wang, Baogen Wang, Zhongfu Lu, Guojing Li
    Foods.2022; 11(16): 2450.     CrossRef
  • Effect of the variation in the extracellular concentration of l-arginine in the physiology of Leishmania (Viannia) braziliensis and its susceptibility to some antileishmanial drugs
    Manuela Giraldo, Yulieth A. Upegui, Jorge L. Higuita-Castro, Luis A. Gonzalez, Sneider Gutierrez, Sergio A. Pulido, Sara M. Robledo
    Experimental Parasitology.2022; 242: 108395.     CrossRef
  • HAS 1: A natural product from soil-isolated Streptomyces species with potent activity against cutaneous leishmaniasis caused by Leishmania tropica
    Bassel Awada, Maguy Hamie, Rana El Hajj, Ghada Derbaj, Rania Najm, Perla Makhoul, Dima Hajj Ali, Antoine G. Abou Fayad, Hiba El Hajj
    Frontiers in Pharmacology.2022;[Epub]     CrossRef
  • Metabolite Biomarkers of Leishmania Antimony Resistance
    Sneider Alexander Gutierrez Guarnizo, Zemfira N. Karamysheva, Elkin Galeano, Carlos E. Muskus
    Cells.2021; 10(5): 1063.     CrossRef
  • Voriconazole resistance genes in Aspergillus flavus clinical isolates
    F. Zaini, E. Lotfali, A. Fattahi, E. Siddig, S. Farahyar, E. Kouhsari, M. Saffari
    Journal de Mycologie Médicale.2020; 30(2): 100953.     CrossRef
  • Comparative transcriptomic analysis of antimony resistant and susceptible Leishmania infantum lines
    Juvana Moreira Andrade, Leilane Oliveira Gonçalves, Daniel Barbosa Liarte, Davi Alvarenga Lima, Frederico Gonçalves Guimarães, Daniela de Melo Resende, Ana Maria Murta Santi, Luciana Marcia de Oliveira, João Paulo Linhares Velloso, Renato Guimarães Delfin
    Parasites & Vectors.2020;[Epub]     CrossRef
  • An overview of leishmanization experience: A successful control measure and a tool to evaluate candidate vaccines
    Mehdi Mohebali, Abolhassan Nadim, Ali Khamesipour
    Acta Tropica.2019; 200: 105173.     CrossRef
  • Comparison of Cysteine Protease B Gene Expression between Clinical Isolates of Leishmania tropica, Leishmania major and Leishmania infantum
    Elham Kazemirad, Hossien Reisi Nafchi, Alireza Latifi, Reza Raoofian, Mehdi Mohebali, Homa Hajjaran
    Journal of Medical Microbiology and Infectious Diseases.2019; 7(3): 72.     CrossRef
  • Use of AFLP for the study of eukaryotic pathogens affecting humans
    Carlos M. Restrepo, Alejandro Llanes, Ricardo Lleonart
    Infection, Genetics and Evolution.2018; 63: 360.     CrossRef
  • Expression analysis of viscerotropic leishmaniasis gene in Leishmania species by real-time RT-PCR
    Hossein Reisi Nafchi, Elham Kazemi-Rad, Mehdi Mohebali, Reza Raoofian, Niloofar Bavarsad Ahmadpour, Mohammad Ali Oshaghi, Homa Hajjaran
    Acta Parasitologica.2016;[Epub]     CrossRef
  • Expression analysis of activated protein kinase C gene (LACK1) in antimony sensitive and resistant Leishmania tropica clinical isolates using real‐time RT‐PCR
    Homa Hajjaran, Elham Kazemi‐Rad, Mehdi Mohebali, Mohammad A. Oshaghi, Mohammad B. Khadem‐Erfan, Elham Hajaliloo, Hossein Reisi Nafchi, Reza Raoofian
    International Journal of Dermatology.2016; 55(9): 1020.     CrossRef
  • Visceral Leishmaniasis without Fever in an 11-Month-Old Infant: a Rare Clinical Feature of Kala-azar
    Shirin Sayyahfar, Shahla Ansari, Mehdi Mohebali, Babak Behnam
    The Korean Journal of Parasitology.2014; 52(2): 189.     CrossRef
  • 8,995 View
  • 90 Download
  • Crossref