4.8 Article

One-Step Large-Scale Nanotexturing of Nonplanar PTFE Surfaces to Induce Bactericidal and Anti-inflammatory Properties

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 12, Issue 24, Pages 26893-26904

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.0c04729

Keywords

nonplanar etching; nanotexturing; plasma etching; bactericidal; anti-inflammatory surface; implantable material

Funding

  1. National Science Foundation (United States) [ECCS-1944480, CNS-1726865]
  2. Eli Lilly and Company

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Here we demonstrate a simple and scalable nanotexturing method for both planar (films) and nonplanar (tubes) polytetrafluoroethylene (PTFE) surfaces using a commercial desktop oxygen plasma etcher. The simple process can generate semiordered nanopillar structures on both tubular and planar samples with high radial and axial uniformity. We found that the resulting surfaces exhibit good in vitro bactericidal and in vivo anti-inflammatory properties. When tested against Staphylococcus aureus, the nanotextured surfaces showed significantly decreased live bacteria coverage and increased dead bacteria coverage, demonstrating significant bactericidal functionality. Moreover, the etched planar PTFE films exhibited better healing and inflammatory responses in the subcutis of CS7BL/6 mice over 7 and 21 days, evidenced by a thinner inflammatory band, lower collagen deposition, and decreased macrophage infiltration. Our results suggest the possibility of using this simple process to generate large scale biomimetic nanotextured surfaces with good antibiofouling properties to enhance the functionality of many implantable and other biomedical devices.

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