Interaction of Blood and Bacteria with Slippery Hydrophilic Surfaces

Author:

Kantam Prem1,Manivasagam Vignesh K.1ORCID,Jammu Tarun Kumar1,Sabino Roberta Maia23ORCID,Vallabhuneni Sravanthi4,Kim Young Jae4,Kota Arun K.14ORCID,Popat Ketul C.125

Affiliation:

1. Department of Mechanical Engineering Colorado State University Fort Collins CO 80523 USA

2. School of Advanced Materials Discovery Colorado State University Fort Collins CO 80523 USA

3. Department of Chemical and Biomedical Engineering University of Wyoming Laramie WY 82071 USA

4. Department of Mechanical and Aerospace Engineering North Carolina State University Raleigh NC 27695 USA

5. School of Biomedical Engineering Colorado State University Fort Collins CO 80523 USA

Abstract

AbstractSlippery surfaces (i.e., surfaces that display high liquid droplet mobility) are receiving significant attention due to their biofluidic applications. Non‐textured, all‐solid, slippery hydrophilic (SLIC) surfaces are an emerging class of rare and counter‐intuitive surfaces. In this work, the interactions of blood and bacteria with SLIC surfaces are investigated. The SLIC surfaces demonstrate significantly lower platelet and leukocyte adhesion (≈97.2% decrease in surface coverage), and correspondingly low platelet activation, as well as significantly lower bacterial adhesion (≈99.7% decrease in surface coverage of live Escherichia Coli and ≈99.6% decrease in surface coverage of live Staphylococcus Aureus) and proliferation compared to untreated silicon substrates, indicating their potential for practical biomedical applications. The study envisions that the SLIC surfaces will pave the path to improved biomedical devices with favorable blood and bacteria interactions.

Funder

National Science Foundation

National Institutes of Health

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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