Molecular Test Improves Diagnosis of Human Babesiosis
By LabMedica International staff writers Posted on 18 Jan 2017 |

Image: Babesia microti in a thin blood smear stained with Giemsa (Photo courtesy of Spencer S. Eccles Health Sciences Library).
Babesia species are tick-borne apicomplexan parasites that infect erythrocytes and several species including B. microti, B. duncani, B. venatorum, B. divergens and B. divergens-like organisms can infect humans.
Babesia infections often are asymptomatic but immunocompromised individuals and even some immunocompetent persons can experience serious, life-threatening manifestations such as splenic rupture, respiratory distress or renal failure. Asymptomatic infected blood donors often are unaware of their infections.
Medical microbiologists and their colleagues at the University of Washington obtained B. microti-containing whole blood samples and negative whole blood samples from de-identified leftover EDTA-anticoagulated clinical samples. The team developed one-step reverse transcription polymerase chain reaction (RT-PCR) for B. microti 18S ribosomal ribonucleic acid (rRNA) as a diagnostic test to take advantage of the biological enrichment of B. microti 18S rRNA as compared to 18S rDNA. This general approach can in future be applied to other Babesia species as well for species specific or pan-Babesia 18S rRNA detection.
Babesia 18S rRNA RT-PCR was performed on an m2000 RealTime System. Nominal densities of B. microti-infected blood samples used for standard curves were measured by counting Giemsa-stained blood smears by microscopy (number of parasites per 2,000 erythrocytes). B. microti-specific primer/probe set was optimized for RT-PCR to generate a highly efficient reaction capable of sub-microscopic B. microti detection.
The assay detected B. microti 18S rRNA in 11 of 11 samples from patients with active or recent B. microti infections. The RT-PCR could detect some samples that may be missed by a PCR-only approach. B. microti 18S rRNA is over 1,000-fold more abundant than its coding genes, making reverse transcription PCR (RT-PCR) much more sensitive than PCR. There was no cross-reactivity against five uninfected blood samples or two high-density Plasmodium falciparum-infected blood samples.
The authors concluded that molecular screening tests for B. microti should be able to detect a single organism in a test volume of ~50–500 μL of whole blood to provide an ultrasensitive limit of detection for use in blood product testing. This limit of detection can likely be achieved using a RT-PCR-based approach and therefore may be useful for screening the blood supply. The study was published on December 5, 2016, in the journal Diagnostic Microbiology and Infectious Disease.
Babesia infections often are asymptomatic but immunocompromised individuals and even some immunocompetent persons can experience serious, life-threatening manifestations such as splenic rupture, respiratory distress or renal failure. Asymptomatic infected blood donors often are unaware of their infections.
Medical microbiologists and their colleagues at the University of Washington obtained B. microti-containing whole blood samples and negative whole blood samples from de-identified leftover EDTA-anticoagulated clinical samples. The team developed one-step reverse transcription polymerase chain reaction (RT-PCR) for B. microti 18S ribosomal ribonucleic acid (rRNA) as a diagnostic test to take advantage of the biological enrichment of B. microti 18S rRNA as compared to 18S rDNA. This general approach can in future be applied to other Babesia species as well for species specific or pan-Babesia 18S rRNA detection.
Babesia 18S rRNA RT-PCR was performed on an m2000 RealTime System. Nominal densities of B. microti-infected blood samples used for standard curves were measured by counting Giemsa-stained blood smears by microscopy (number of parasites per 2,000 erythrocytes). B. microti-specific primer/probe set was optimized for RT-PCR to generate a highly efficient reaction capable of sub-microscopic B. microti detection.
The assay detected B. microti 18S rRNA in 11 of 11 samples from patients with active or recent B. microti infections. The RT-PCR could detect some samples that may be missed by a PCR-only approach. B. microti 18S rRNA is over 1,000-fold more abundant than its coding genes, making reverse transcription PCR (RT-PCR) much more sensitive than PCR. There was no cross-reactivity against five uninfected blood samples or two high-density Plasmodium falciparum-infected blood samples.
The authors concluded that molecular screening tests for B. microti should be able to detect a single organism in a test volume of ~50–500 μL of whole blood to provide an ultrasensitive limit of detection for use in blood product testing. This limit of detection can likely be achieved using a RT-PCR-based approach and therefore may be useful for screening the blood supply. The study was published on December 5, 2016, in the journal Diagnostic Microbiology and Infectious Disease.
Latest Microbiology News
- New Blood Test Detects Up to Five Infectious Diseases at POC
- Molecular Stool Test Shows Potential for Diagnosing TB in Adults with HIV
- New Test Diagnoses Bacterial Meningitis Quickly and Accurately
- Handheld Device Delivers Low-Cost TB Results in Less Than One Hour
- New AI-Based Method Improves Diagnosis of Drug-Resistant Infections
- Breakthrough Diagnostic Technology Identifies Bacterial Infections with Almost 100% Accuracy within Three Hours
- Innovative ID/AST System to Help Diagnose Infectious Diseases and Combat AMR
- Gastrointestinal Panel Delivers Rapid Detection of Five Common Bacterial Pathogens for Outpatient Use
- Rapid PCR Testing in ICU Improves Antibiotic Stewardship
- Unique Genetic Signature Predicts Drug Resistance in Bacteria
- Unique Barcoding System Tracks Pneumonia-Causing Bacteria as They Infect Blood Stream
- Rapid Sepsis Diagnostic Test Demonstrates Improved Patient Care and Cost Savings in Hospital Application
- Rapid Diagnostic System to Detect Neonatal Sepsis Within Hours
- Novel Test to Diagnose Bacterial Pneumonia Directly from Whole Blood
- Interferon-γ Release Assay Effective in Patients with COPD Complicated with Pulmonary Tuberculosis
- New Point of Care Tests to Help Reduce Overuse of Antibiotics
Channels
Clinical Chemistry
view channel
AI-Powered Blood Test Accurately Detects Ovarian Cancer
Ovarian cancer ranks as the fifth leading cause of cancer-related deaths in women, largely due to late-stage diagnoses. Although over 90% of women exhibit symptoms in Stage I, only 20% are diagnosed in... Read more
Automated Decentralized cfDNA NGS Assay Identifies Alterations in Advanced Solid Tumors
Current circulating cell-free DNA (cfDNA) assays are typically centralized, requiring specialized handling and transportation of samples. Introducing a flexible, decentralized sequencing system at the... Read moreMass Spectrometry Detects Bacteria Without Time-Consuming Isolation and Multiplication
Speed and accuracy are essential when diagnosing diseases. Traditionally, diagnosing bacterial infections involves the labor-intensive process of isolating pathogens and cultivating bacterial cultures,... Read more
First Comprehensive Syphilis Test to Definitively Diagnose Active Infection In 10 Minutes
In the United States, syphilis cases have surged by nearly 80% from 2018 to 2023, with 209,253 cases recorded in the most recent year of data. Syphilis, which can be transmitted sexually or from mother... Read moreMolecular Diagnostics
view channel
POC Oral Swab Test to Increase Chances of Pregnancy in IVF
Approximately 15% of couples of reproductive age experience involuntary childlessness. A significant reason for this is the growing trend of delaying family planning, a global shift that is expected to... Read more
Microbial Cell-Free DNA Test Accurately Identifies Pathogens Causing Pneumonia and Other Lung Infections
Bronchoalveolar lavage (BAL) is a commonly used procedure for diagnosing lung infections, especially in immunocompromised patients. However, standard tests often fail to pinpoint the exact pathogen, leading... Read moreHematology
view channel
First Point-of-Care Heparin Monitoring Test Provides Results in Under 15 Minutes
Heparin dosing requires careful management to avoid both bleeding and clotting complications. In high-risk situations like extracorporeal membrane oxygenation (ECMO), mortality rates can reach about 50%,... Read more
New Scoring System Predicts Risk of Developing Cancer from Common Blood Disorder
Clonal cytopenia of undetermined significance (CCUS) is a blood disorder commonly found in older adults, characterized by mutations in blood cells and a low blood count, but without any obvious cause or... Read moreImmunology
view channel
Stem Cell Test Predicts Treatment Outcome for Patients with Platinum-Resistant Ovarian Cancer
Epithelial ovarian cancer frequently responds to chemotherapy initially, but eventually, the tumor develops resistance to the therapy, leading to regrowth. This resistance is partially due to the activation... Read more
Machine Learning-Enabled Blood Test Predicts Immunotherapy Response in Lymphoma Patients
Chimeric antigen receptor (CAR) T-cell therapy has emerged as one of the most promising recent developments in the treatment of blood cancers. However, over half of non-Hodgkin lymphoma (NHL) patients... Read morePathology
view channel
Groundbreaking Chest Pain Triage Algorithm to Transform Cardiac Care
Cardiovascular disease is responsible for a third of all deaths worldwide, and chest pain is the second most common reason for emergency department (ED) visits. With EDs often being some of the busiest... Read more
AI-Based Liquid Biopsy Approach to Revolutionize Brain Cancer Detection
Detecting brain cancers remains extremely challenging, with many patients only receiving a diagnosis at later stages after symptoms like headaches, seizures, or cognitive issues appear. Late-stage diagnoses... Read moreTechnology
view channel
Advanced Predictive Algorithms Identify Patients Having Undiagnosed Cancer
Two newly developed advanced predictive algorithms leverage a person’s health conditions and basic blood test results to accurately predict the likelihood of having an undiagnosed cancer, including ch... Read more
Light Signature Algorithm to Enable Faster and More Precise Medical Diagnoses
Every material or molecule interacts with light in a unique way, creating a distinct pattern, much like a fingerprint. Optical spectroscopy, which involves shining a laser on a material and observing how... Read more
Disposable Microchip Technology Could Selectively Detect HIV in Whole Blood Samples
As of the end of 2023, approximately 40 million people globally were living with HIV, and around 630,000 individuals died from AIDS-related illnesses that same year. Despite a substantial decline in deaths... Read more
Pain-On-A-Chip Microfluidic Device Determines Types of Chronic Pain from Blood Samples
Chronic pain is a widespread condition that remains difficult to manage, and existing clinical methods for its treatment rely largely on self-reporting, which can be subjective and especially problematic... Read moreIndustry
view channel
Qiagen Acquires NGS Analysis Software Company Genoox
QIAGEN (Venlo, the Netherlands) has signed a definitive agreement to acquire Genoox (Tel Aviv, Israel), a provider of artificial intelligence (AI)-powered software that enables clinical labs to scale and... Read more
Cepheid and Oxford Nanopore Technologies Partner on Advancing Automated Sequencing-Based Solutions
Cepheid (Sunnyvale, CA, USA), a leading molecular diagnostics company, and Oxford Nanopore Technologies (Oxford, UK), the company behind a new generation of sequencing-based molecular analysis technologies,... Read more
Grifols and Tecan’s IBL Collaborate on Advanced Biomarker Panels
Grifols (Barcelona, Spain), one of the world’s leading producers of plasma-derived medicines and innovative diagnostic solutions, is expanding its offer in clinical diagnostics through a strategic partnership... Read more