Literature DB >> 27537475

Transfusion-transmitted babesiosis: is it time to screen the blood supply?

Andrew E Levin1, Peter J Krause.   

Abstract

PURPOSE OF REVIEW: This review summarizes the current status of blood screening to prevent transfusion-transmitted babesiosis (TTB). RECENT
FINDINGS: Babesia microti has recently been determined to be the most common transfusion-transmitted pathogen in the United States. Patients who acquire TTB often experience severe illness with an associated mortality rate of about 20%. Recent studies have demonstrated that laboratory screening using B. microti antibody and/or PCR assays can effectively identify infectious blood donors and that this approach may offer a cost- effective means of intervention. Pathogen inactivation methods may offer an alternative solution. None of these methods has yet been licensed by US Food and Drug Administration, however, and current efforts to prevent TTB rely on excluding blood donors who report having had babesiosis.
SUMMARY: TTB imposes a significant health burden on the United States population. Further research is needed to better inform decisions on optimal screening strategies and reentry criteria, but given the acute need and the currently available screening tools, initiation of blood donor screening to prevent TTB should be given high priority.

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Mesh:

Year:  2016        PMID: 27537475      PMCID: PMC5241272          DOI: 10.1097/MOH.0000000000000287

Source DB:  PubMed          Journal:  Curr Opin Hematol        ISSN: 1065-6251            Impact factor:   3.284


  44 in total

Review 1.  Coinfection by Ixodes Tick-Borne Pathogens: Ecological, Epidemiological, and Clinical Consequences.

Authors:  Maria A Diuk-Wasser; Edouard Vannier; Peter J Krause
Journal:  Trends Parasitol       Date:  2015-11-21

2.  A global map of genetic diversity in Babesia microti reveals strong population structure and identifies variants associated with clinical relapse.

Authors:  Jacob E Lemieux; Alice D Tran; Lisa Freimark; Stephen F Schaffner; Heidi Goethert; Kristian G Andersen; Suzane Bazner; Amy Li; Graham McGrath; Lynne Sloan; Edouard Vannier; Dan Milner; Bobbi Pritt; Eric Rosenberg; Sam Telford; Jeffrey A Bailey; Pardis C Sabeti
Journal:  Nat Microbiol       Date:  2016-06-13       Impact factor: 17.745

3.  Babesia microti infection in man: evaluation of an indirect immunofluorescent antibody test.

Authors:  E S Chisholm; T K Ruebush; A J Sulzer; G R Healy
Journal:  Am J Trop Med Hyg       Date:  1978-01       Impact factor: 2.345

4.  Seroprevalence of Babesia microti in blood donors from Babesia-endemic areas of the northeastern United States: 2000 through 2007.

Authors:  Stephanie T Johnson; Ritchard G Cable; Laura Tonnetti; Bryan Spencer; Jorge Rios; David A Leiby
Journal:  Transfusion       Date:  2009-10-10       Impact factor: 3.157

5.  Quantitative PCR for detection of Babesia microti in Ixodes scapularis ticks and in human blood.

Authors:  Lindsay Rollend; Stephen J Bent; Peter J Krause; Sahar Usmani-Brown; Tanner K Steeves; Sarah L States; Timothy Lepore; Raymond Ryan; Fil Dias; Choukri Ben Mamoun; Durland Fish; Maria A Diuk-Wasser
Journal:  Vector Borne Zoonotic Dis       Date:  2013-10-09       Impact factor: 2.133

6.  Development of a real-time polymerase chain reaction assay for sensitive detection and quantitation of Babesia microti infection.

Authors:  Evan M Bloch; Tzong-Hae Lee; Peter J Krause; Sam R Telford; Lani Montalvo; Daniel Chafets; Sahar Usmani-Brown; Timothy J Lepore; Michael P Busch
Journal:  Transfusion       Date:  2013-01-30       Impact factor: 3.157

7.  Evaluation of the Mirasol pathogen [corrected] reduction technology system against Babesia microti in apheresis platelets and plasma.

Authors:  Laura Tonnetti; Melanie C Proctor; Heather L Reddy; Raymond P Goodrich; David A Leiby
Journal:  Transfusion       Date:  2009-12-18       Impact factor: 3.157

8.  Babesia: an emerging infectious threat in transfusion medicine.

Authors:  Cheryl A Lobo; Jeny R Cursino-Santos; Andy Alhassan; Marilis Rodrigues
Journal:  PLoS Pathog       Date:  2013-07-11       Impact factor: 6.823

9.  Whole genome mapping and re-organization of the nuclear and mitochondrial genomes of Babesia microti isolates.

Authors:  Emmanuel Cornillot; Amina Dassouli; Aprajita Garg; Niseema Pachikara; Sylvie Randazzo; Delphine Depoix; Bernard Carcy; Stéphane Delbecq; Roger Frutos; Joana C Silva; Richard Sutton; Peter J Krause; Choukri Ben Mamoun
Journal:  PLoS One       Date:  2013-09-04       Impact factor: 3.240

10.  Determination of Babesia microti seroprevalence in blood donor populations using an investigational enzyme immunoassay.

Authors:  Andrew E Levin; Phillip C Williamson; James L Erwin; Sherri Cyrus; Evan M Bloch; Beth H Shaz; Debra Kessler; Sam R Telford; Peter J Krause; Gary P Wormser; Xiaoyan Ni; Haihong Wang; Neil X Krueger; Sally Caglioti; Michael P Busch
Journal:  Transfusion       Date:  2014-07-04       Impact factor: 3.157

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  16 in total

Review 1.  Babesia microti: from Mice to Ticks to an Increasing Number of Highly Susceptible Humans.

Authors:  Lars F Westblade; Matthew S Simon; Blaine A Mathison; Laura A Kirkman
Journal:  J Clin Microbiol       Date:  2017-07-26       Impact factor: 5.948

Review 2.  Emerging Tick-Borne Diseases.

Authors:  Susan Madison-Antenucci; Laura D Kramer; Linda L Gebhardt; Elizabeth Kauffman
Journal:  Clin Microbiol Rev       Date:  2020-01-02       Impact factor: 26.132

3.  Robust adaptive immune response against Babesia microti infection marked by low parasitemia in a murine model of sickle cell disease.

Authors:  Woelsung Yi; Weili Bao; Marilis Rodriguez; Yunfeng Liu; Manpreet Singh; Vijendra Ramlall; Jeny R Cursino-Santos; Hui Zhong; Catherine M Elton; Gavin J Wright; Avital Mendelson; Xiuli An; Cheryl A Lobo; Karina Yazdanbakhsh
Journal:  Blood Adv       Date:  2018-12-11

4.  Transfusion-associated adverse events and implementation of blood safety measures - findings from the 2017 National Blood Collection and Utilization Survey.

Authors:  Alexandra A Savinkina; Kathryn A Haass; Mathew R P Sapiano; Richard A Henry; James J Berger; Sridhar V Basavaraju; Jefferson M Jones
Journal:  Transfusion       Date:  2020-03       Impact factor: 3.337

5.  High-resolution melting PCR assay, applicable for diagnostics and screening studies, allowing detection and differentiation of several Babesia spp. infecting humans and animals.

Authors:  Wioletta Rozej-Bielicka; Aleksander Masny; Elzbieta Golab
Journal:  Parasitol Res       Date:  2017-08-10       Impact factor: 2.289

Review 6.  Splenic Rupture as the First Manifestation of Babesia Microti Infection: Report of a Case and Review of Literature.

Authors:  Igor Dumic; Janki Patel; Melissa Hart; Eric R Niendorf; Scott Martin; Poornima Ramanan
Journal:  Am J Case Rep       Date:  2018-03-23

7.  Rise in Babesiosis Cases, Pennsylvania, USA, 2005-2018.

Authors:  David Ingram; Tonya Crook
Journal:  Emerg Infect Dis       Date:  2020-08       Impact factor: 6.883

8.  Effective Therapy Targeting Cytochrome bc1 Prevents Babesia Erythrocytic Development and Protects from Lethal Infection.

Authors:  Joy E Chiu; Isaline Renard; Anasuya C Pal; Pallavi Singh; Pratap Vydyam; Jose Thekkiniath; Madelyn Kumar; Shalev Gihaz; Sovitj Pou; Rolf W Winter; Rozalia Dodean; Lisa Frueh; Aaron C Nilsen; Michael K Riscoe; J Stone Doggett; Choukri Ben Mamoun
Journal:  Antimicrob Agents Chemother       Date:  2021-08-17       Impact factor: 5.191

Review 9.  Inactivation of a broad spectrum of viruses and parasites by photochemical treatment of plasma and platelets using amotosalen and ultraviolet A light.

Authors:  Marion C Lanteri; Felicia Santa-Maria; Andrew Laughhunn; Yvette A Girard; Marcus Picard-Maureau; Jean-Marc Payrat; Johannes Irsch; Adonis Stassinopoulos; Peter Bringmann
Journal:  Transfusion       Date:  2020-04-24       Impact factor: 3.157

10.  Educational Case: Babesiosis and Transfusion-Transmitted Infections.

Authors:  Maureen J Miller; Lauren McVoy; Amy Rapkiewicz
Journal:  Acad Pathol       Date:  2020-07-17
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