Literature DB >> 28746053

Bacterial attachment on titanium surfaces is dependent on topography and chemical changes induced by nonthermal atmospheric pressure plasma.

Won-Seok Jeong1, Jae-Sung Kwon, Jung-Hwan Lee, Soo-Hyuk Uhm, Eun Ha Choi, Kwang-Mahn Kim.   

Abstract

Here, we investigated the antibacterial effects of chemical changes induced by nonthermal atmospheric pressure plasma (NTAPP) on smooth and rough Ti. The morphologies of smooth and rough surfaces of Ti were examined using scanning electron microscopy (SEM). Both Ti specimens were then treated for 10 min by NTAPP with nitrogen gas. The surface roughness, chemistry, and wettability were examined by optical profilometry, x-ray photoelectron spectroscopy, and water contact angle analysis, respectively. Bacterial attachment was measured by determining the number of colony forming units and by SEM analysis. The rough Ti showed irregular micropits, whereas smooth Ti had a relatively regular pattern on the surface. There were no differences in morphology between samples before and after NTAPP treatment. NTAPP treatment resulted in changes from hydrophobic to hydrophilic properties on rough and smooth Ti; rough Ti showed relatively higher hydrophilicity. Before NTAPP treatment, Streptococcus sanguinis (S. sanguinis) showed greater attachment on rough Ti, and after NTAPP treatment, there was a significant reduction in bacterial attachment. Moreover, the bacterial attachment rate was significantly lower on rough Ti, and the structure of S. sanguinis colonies were significantly changed on NTAPP-treated Ti. NTAPP treatment inhibited bacterial attachment surrounding titanium implants, regardless of surface topography. Therefore, NTAPP treatment on Ti is a next-generation tool for antibacterial applications in the orthopaedic and dental fields.

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Year:  2017        PMID: 28746053     DOI: 10.1088/1748-605X/aa734e

Source DB:  PubMed          Journal:  Biomed Mater        ISSN: 1748-6041            Impact factor:   3.715


  5 in total

Review 1.  Advances in the superhydrophilicity-modified titanium surfaces with antibacterial and pro-osteogenesis properties: A review.

Authors:  Hanyu Shao; Mingchen Ma; Qiang Wang; Tingting Yan; Baohong Zhao; Shu Guo; Shuang Tong
Journal:  Front Bioeng Biotechnol       Date:  2022-09-06

Review 2.  Graphene-Based Nanomaterials for Dental Applications: Principles, Current Advances, and Future Outlook.

Authors:  Xiaojing Li; Xin Liang; Yanhui Wang; Dashan Wang; Minhua Teng; Hao Xu; Baodong Zhao; Lei Han
Journal:  Front Bioeng Biotechnol       Date:  2022-03-10

3.  The Effects of Non-Thermal Atmospheric Pressure Plasma treated Titanium Surface on Behaviors of Oral Soft Tissue Cells.

Authors:  Won-Seok Jeong; Jae-Sung Kwon; Eun-Ha Choi; Kwang-Mahn Kim
Journal:  Sci Rep       Date:  2018-10-29       Impact factor: 4.379

4.  Bioactive effects of nonthermal argon-oxygen plasma on inorganic bovine bone surface.

Authors:  Chengzan Wu; Kai Ma; Hongmei Zhao; Qian Zhang; Yanshan Liu; Na Bai
Journal:  Sci Rep       Date:  2020-10-21       Impact factor: 4.379

5.  Mapping Bacterial Biofilm on Features of Orthopedic Implants In Vitro.

Authors:  Kelly Moore; Niraj Gupta; Tripti Thapa Gupta; Khushi Patel; Jacob R Brooks; Anne Sullivan; Alan S Litsky; Paul Stoodley
Journal:  Microorganisms       Date:  2022-03-08
  5 in total

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