Literature DB >> 31976829

Detection of Babesia, Borrelia, Anaplasma, and Rickettsia spp. in Adult Black-Legged Ticks (Ixodes scapularis) from Pennsylvania, United States, with a Luminex Multiplex Bead Assay.

Julia Livengood1, Michael L Hutchinson2, Nagaraja Thirumalapura1, Deepanker Tewari1.   

Abstract

Ixodes scapularis, the black-legged tick, harbors multiple organisms and transmits several pathogens to animals and humans. To determine the presence of tick-borne microorganisms carried by I. scapularis in Pennsylvania, 299 adult I. scapularis ticks were collected from across the state and tested with a multiplex bead panel targeting 20 microorganisms. The Luminex bead-based xMAP® MultiFLEX Mega Tick Panel detected microorganisms in these ticks, including Anaplasma spp. (1.7%), Borrelia spp. (45.8%), Babesia spp. (16.1%), and Rickettsia spp. (22.1%) at the genera level and identified Anaplasma phagocytophilum (1.7%), Babesia microti (0.7%), Borrelia burgdorferi sensu stricto (45.5%), Borrelia miyamotoi (0.3%), and Rickettsia parkeri (0.7%) at the species level. Babesia spp. reactivity was found to be due to Ba. odocoilei, and Rickettsia spp. reactivity was mainly due to rickettsial endosymbionts.

Entities:  

Keywords:  Ixodes scapularis; Luminex; PCR; Pennsylvania; tick-borne diseases; ticks

Year:  2020        PMID: 31976829     DOI: 10.1089/vbz.2019.2551

Source DB:  PubMed          Journal:  Vector Borne Zoonotic Dis        ISSN: 1530-3667            Impact factor:   2.133


  6 in total

1.  Development of a Multiplex PCR and Magnetic DNA Capture Assay for Detecting Six Species Pathogens of the Genera Anaplasma and Ehrlichia in Canine, Bovine, Caprine and Ovine Blood Samples from Grenada, West Indies.

Authors:  Bhumika Sharma; Roman R Ganta; Diana Stone; Andy Alhassan; Marta Lanza-Perea; Vanessa Matthew Belmar; Inga Karasek; Elizabeth Cooksey; Catherine M Butler; Kathryn Gibson; Melinda J Wilkerson
Journal:  Pathogens       Date:  2021-02-10

2.  The Ixodes scapularis Symbiont Rickettsia buchneri Inhibits Growth of Pathogenic Rickettsiaceae in Tick Cells: Implications for Vector Competence.

Authors:  Benjamin Cull; Nicole Y Burkhardt; Xin-Ru Wang; Cody J Thorpe; Jonathan D Oliver; Timothy J Kurtti; Ulrike G Munderloh
Journal:  Front Vet Sci       Date:  2022-01-06

3.  Tick-Borne Pathogens in Questing Blacklegged Ticks (Acari: Ixodidae) From Pike County, Pennsylvania.

Authors:  Sarah Schwartz; Elizabeth Calvente; Emily Rollinson; Destiny Sample Koon Koon; Nicole Chinnici
Journal:  J Med Entomol       Date:  2022-09-14       Impact factor: 2.435

4.  Detection of Anaplasma Phagocytophilum in Horses With Suspected Tick-Borne Disease in Northeastern United States by Metagenomic Sequencing.

Authors:  Murugan Subbiah; Nagaraja Thirumalapura; David Thompson; Suresh V Kuchipudi; Bhushan Jayarao; Deepanker Tewari
Journal:  Front Vet Sci       Date:  2021-06-09

5.  Pentaplex real-time PCR for differential detection of Yersinia pestis and Y. pseudotuberculosis and application for testing fleas collected during plague epizootics.

Authors:  Ying Bai; Vladimir Motin; Russell E Enscore; Lynn Osikowicz; Maria Rosales Rizzo; Andrias Hojgaard; Michael Kosoy; Rebecca J Eisen
Journal:  Microbiologyopen       Date:  2020-08-12       Impact factor: 3.139

Review 6.  Technologies for Detection of Babesia microti: Advances and Challenges.

Authors:  Scott Meredith; Miranda Oakley; Sanjai Kumar
Journal:  Pathogens       Date:  2021-11-30
  6 in total

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