Related Experiment Video
Updated: May 12, 2026

A Model for Experimental Exposure of Humans to Larval Ixodes scapularis Ticks
Published on: December 1, 2023
Bartonella henselae bacteremia in a mother and son potentially associated with tick exposure
Ricardo G Maggi1, Marna Ericson, Patricia E Mascarelli
1Intracellular Pathogens Research Laboratory, Center for Comparative Medicine and Translational Research, College of Veterinary Medicine, North Carolina State University, Raleigh, NC, USA. rgmaggi@ncsu.edu
Background:
Bartonella henselae is a zoonotic, alpha Proteobacterium, historically associated with cat scratch disease (CSD), but more recently associated with persistent bacteremia, fever of unknown origin, arthritic and neurological disorders, and bacillary angiomatosis, and peliosis hepatis in immunocompromised patients. A family from the Netherlands contacted our laboratory requesting to be included in a research study (NCSU-IRB#1960), designed to characterize Bartonella spp. bacteremia in people with extensive arthropod or animal exposure. All four family members had been exposed to tick bites in Zeeland, southwestern Netherlands. The mother and son were exhibiting symptoms including fatigue, headaches, memory loss, disorientation, peripheral neuropathic pain, striae (son only), and loss of coordination, whereas the father and daughter were healthy.
Methods:
Each family member was tested for serological evidence of Bartonella exposure using B. vinsonii subsp. berkhoffii genotypes I-III, B. henselae and B. koehlerae indirect fluorescent antibody assays and for bacteremia using the BAPGM enrichment blood culture platform.
Results:
The mother was seroreactive to multiple Bartonella spp. antigens and bacteremia was confirmed by PCR amplification of B. henselae DNA from blood, and from a BAPGM blood agar plate subculture isolate. The son was not seroreactive to any Bartonella sp. antigen, but B. henselae DNA was amplified from several blood and serum samples, from BAPGM enrichment blood culture, and from a cutaneous striae biopsy. The father and daughter were seronegative to all Bartonella spp. antigens, and negative for Bartonella DNA amplification.
Conclusions:
Historically, persistent B. henselae bacteremia was not thought to occur in immunocompetent humans. To our knowledge, this study provides preliminary evidence supporting the possibility of persistent B. henselae bacteremia in immunocompetent persons from Europe. Cat or flea contact was considered an unlikely source of transmission and the mother, a physician, reported that clinical symptoms developed following tick exposure. To our knowledge, this is the first time that a B. henselae organism has been visualized in and amplified from a striae lesion. As the tick bites occurred three years prior to documentation of B. henselae bacteremia, the mode of transmission could not be determined.
Insights
This study suggests persistent Bartonella henselae bacteremia may occur in immunocompetent individuals, potentially transmitted by ticks, not just cats. Further research is needed to confirm this possibility.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Zoonotic Pathogens
Background:
- Bartonella henselae causes cat scratch disease and other conditions, particularly in immunocompromised individuals.
- A Dutch family with extensive tick exposure sought research participation due to symptoms like fatigue and neurological issues.
- Two family members presented with symptoms suggestive of Bartonella infection following tick bites.
Purpose of the Study:
- To investigate Bartonella spp. bacteremia in individuals with significant animal and arthropod exposure.
- To characterize potential Bartonella henselae infections in a family with a history of tick bites.
Main Methods:
- Serological testing using indirect fluorescent antibody assays for Bartonella spp.
- Bacteremia detection via BAPGM enrichment blood culture platform.
- PCR amplification of Bartonella henselae DNA from blood and tissue samples.
Main Results:
- Bartonella henselae bacteremia confirmed in the mother via PCR and culture.
- Bartonella henselae DNA detected in the son's blood, serum, and striae biopsy, despite negative serology.
- Father and daughter showed no evidence of Bartonella infection.
Conclusions:
- Preliminary evidence suggests persistent Bartonella henselae bacteremia may occur in immunocompetent individuals in Europe.
- Tick exposure is a potential transmission route, challenging the historical association solely with cats or fleas.
- Bartonella henselae was visualized and amplified from a striae lesion, a novel finding.
Related Concept Videos
Bacterial Phylum Spirochaetes
Bacterial Meningitis I: Introduction

