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Updated: Jun 25, 2026

Multiplex Detection of Bacteria in Complex Clinical and Environmental Samples using Oligonucleotide-coupled Fluorescent Microspheres
Published on: October 23, 2011
Single-cell detection and quantification of the microbiota by MicFLY
Christine M Tin1, Bianca Cordazzo Vargas2, Darryl A Abbott1
1Department of Pediatrics, University of Pittsburgh School of Medicine, Pittsburgh, PA 15261, USA; Department of Immunology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15261, USA; UPMC Children's Hospital of Pittsburgh, Pittsburgh, PA 15224, USA.
A new single-cell technology, microbiota flow cytometry (MicFLY), quantifies absolute bacterial abundance. This method reveals that increased unbound bacteria in preterm infants correlates with necrotizing enterocolitis (NEC) development.
Area of Science:
- Microbiology
- Immunology
- Neonatal Medicine
Background:
- The intestinal microbiota is crucial for host health, influencing digestion and immune system development.
- Current technologies primarily measure relative microbial abundance, limiting a deeper understanding of microbiome dynamics.
- Quantitative, single-cell analysis is needed to elucidate microbiome biology and compositional shifts.
Purpose of the Study:
- To introduce microbiota flow cytometry (MicFLY), a novel single-cell technology for precise bacterial quantification.
- To demonstrate MicFLY's capability in measuring absolute bacterial abundance at the species level.
- To investigate the association between specific bacterial populations and necrotizing enterocolitis (NEC) in preterm infants.
Main Methods:
- Development and application of microbiota flow cytometry (MicFLY) for single-cell bacterial analysis.
- Quantification of absolute bacterial abundance, differentiation of live/dead bacteria, and measurement of mRNA expression.
- Concurrent assessment of immunoglobulin A (IgA) and IgG binding to intestinal bacteria.
Main Results:
- MicFLY successfully quantified major intestinal taxa and assessed bacterial viability and gene expression.
- Longitudinal analysis in preterm infants revealed that increased IgA- and IgG-unbound Enterobacteriaceae species correlate with NEC development.
- The study identified specific bacterial changes associated with NEC pathogenesis.
Conclusions:
- MicFLY provides a powerful tool for high-resolution, quantitative microbiota measurements.
- This technology enables a deeper mechanistic understanding of microbiome shifts and their impact on host health.
- Findings highlight the potential of targeting unbound bacteria in NEC prevention or treatment strategies.
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