Molecular solutions for the detection of arthropod-borne bacterial pathogens
A fast and sensitive kit that enables the easy, simultaneous detection of arthropod-borne bacterial pathogens.
Simultaneous identification of bacteria
Detection of multiple arthropod-borne pathogens in a single test.
Identification of complex infections
Enables the simultaneous qualitative detection of the main bacterial species of the genera Anaplasma, Ehrlichia, Borrelia, Bartonella, Coxiella, Rickettsia and Francisella
Multi-bacterial detection panel
Maximum diagnostic
reliability
TICK-BORNE BACTERIA FLOW CHIP KIT
Detection of arthropod-borne bacterial pathogens using multiplex PCR and reverse phase hybridisation.
MAD-003940M-HS12-24 – 24 determinations
MAD-003940M-HS24-24 – 24 determinations
Kit information
Tick-Borne Bacteria Flow Chip is an advanced in vitro diagnostic kit designed for the precise identification of arthropod-borne bacterial pathogens. This revolutionary system enables the simultaneous qualitative detection of the main bacterial species of the genera Anaplasma, Ehrlichia, Borrelia, Bartonella, Coxiella, Rickettsia and Francisella. The methodology is based on the simultaneous amplification of specific fragments of each genus using multiplex PCR, followed by membrane hybridisation with specific DNA probes using DNA-Flow technology, either automatically or manually, thus providing a versatile and effective tool for the precise diagnosis of these infections. We have succeeded in increasing the sensitivity of the method and significantly reducing diagnostic times. This approach becomes crucial given the current challenges in the differential diagnosis of arthropod-borne pathogens, due to the non-specific nature of clinical manifestations.
Please note: this Kit will no longer be available for sale after 31 December 2026.
Molecular solutions for the detection of arthropod-borne bacterial pathogens.
Given the difficulty of differential diagnosis for these infections, our solutions allow for the simultaneous identification of multiple pathogens in a single determination, facilitating early detection and more effective clinical management.
Based on DNA Flow reverse hybridisation technology, the kit offers broad diagnostic coverage, high sensitivity and a simple workflow for molecular microbiology laboratories.
Benefits of REAL-TIME PCR TECHNOLOGY
Advanced multiplexing
Sensitive and specific simultaneous identification of the genetic material of different pathogenic microorganisms and antibiotic resistance markers in a single assay.
Diagnostic flexibility
Our reagents allow for the analysis of a wide spectrum of sample types, from blood to urine, swabs, liquid-based cytology, sputum, and bronchial washes, among others. Applicable to various diagnostic areas.
Fast and accurate results
Consolidated automated reverse hybridisation technology on a porous membrane microarray containing specific oligonucleotides for each marker.
Safety and traceability
Complete sample control and bidirectional connectivity with the LIS for secure and efficient management of the diagnostic process. Automated interpretation and full traceability via HybriSoft.
MANAGEMENT SOFTWARE
TRACEABILITY AND ANALYSIS
Software designed to automate processes, ensure traceability, analyse results and connect with the LIS in a fully integrated workflow.
Technology for
Molecular Diagnosis
Specialised platforms for extraction, real-time PCR, reverse hybridisation, and traceability designed to improve laboratory diagnostic efficiency and reliability.

VitroCycler
Real-time PCR platform.

Hybrispot
PCR and reverse hybridisation system for molecular detection.

MAIS
MAIS Comprehensive molecular solution with full automation.

MAIS Victoria V96
Fully automated instrument for the pre-analytical and analytical phases.
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YOUR DIAGNOSTIC LABORATORY?
Our specialised team helps you identify the most suitable technology, reagents, and instrumentation to optimise your diagnostic processes.
With Vitro’s Molecular Microbiology solutions, we improve laboratory automation, traceability, and efficiency, from sample to final result.