In vitro neutrophil-bacteria assay in whole blood microenvironments with single-cell confinement
Li, C.; Hendrikse, N. W.; Argall-Knapp, Z.; Mai, M.; Kim, J. S.
Show abstract
Blood is a common medium through which invasive bacterial infections disseminate in the human body. In vitro neutrophil-bacteria assays allow flexible mechanistic studies and screening of interventional strategies. In standard neutrophil-bacteria assays, both the immune cells and microorganisms are typically interrogated in an exogenous, homogeneous, bulk fluid environment (e.g., culture media or bacterial broth in microtiter plates), lacking the relevant physicochemical factors in the heterogenous blood-tissue microenvironment (e.g., capillary bed) with single-cell confinement. Here we present an in vitro neutrophil-bacteria assay by leveraging an open microfluidic model known as "-Blood" that supports sub-microliter liquid microchannels with single-cell confinement. In this study we compare the exogenous and endogenous fluids including neutrophils in RPMI (standard suspension cell culture media) and whole blood in response to Staphylococcus aureus (S. aureus, a gram-positive, non-motile bacterium) in phosphate buffered saline (PBS), Mueller Hinton Broth (MHB), and human serum. Our results reveal a significant disparity between the exogenous and endogenous fluid microenvironments in the growth kinetics of bacteria, the spontaneous generation of capillary (i.e., Marangoni) flow, and the outcome of neutrophil intervention on the spreading bacteria.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Multiplexed End-point Microfluidic Chemotaxis Assay using Centrifugal Alignment 95%
- Rapid Identification of Bacterial isolates Using Microfluidic Adaptive Channels and Multiplexed Fluorescence Microscopy 95%
- Deterministic Cell Pairing with Simultaneous Microfluidic Merging and Sorting of Droplets 95%
Similar papers in this journal
- In vitro neutrophil functional assay in microliter whole blood for days-long extraction of donor-specific information 98%
- A Cascaded Droplet Microfluidic Platform Enables High-throughput Single Cell Antibiotic Susceptibility Testing at Scale 95%
- Organ-on-a-Chip Fabrication using Dynamic Photomask 94%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.