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Blood compatibility of gas plasma-treated diamond-like carbon surface—Effect of physicochemical properties of DLC surface on blood compatibility
Authors:Akira Mochizuki  Tatsuhisa OgawaKeishi Okamoto  Tatsuyuki NakataniYuki Nitta
Affiliation:
  • a Department of Bio-Medical Engineering, Tokai University, Nishino 317, Numazu, Shizuoka 410-0395, Japan
  • b Toyo Advanced Technologies Co., Ltd., Ujina-Higashi 5-3-38, Minami-ku, Hiroshima 734-8501, Japan
  • Abstract:From the knowledge that zwitterion-type polymers show good blood compatibility, the introduction of both cationic and anionic functional groups onto diamond-like carbon (DLC) surface is expected to improve blood compatibility. Thus, DLC films were treated with oxygen and ammonia gas plasmas. The surfaces were characterized in terms of chemical composition by XPS, contact angle, and zeta potential. XPS analysis showed the introductions of a carboxyl group by oxygen plasma treatment and nitrogen atoms by ammonia plasma treatment. The evaluation of blood compatibility for the DLC surfaces was carried out in terms of platelets and the coagulation system. Excellent improvement of platelet compatibility was observed by the treatment with the gas plasmas, regardless of the plasma species. As for the compatibility with the coagulation system, DLC surfaces with a high concentration of carboxyl groups (COOH) markedly activated the system via the intrinsic pathway. However, the surfaces treated with ammonia plasma did not activate the system even though they had high COOH concentration. Measurement of the zeta potential revealed that the ammonia plasma treatment raised the potential from a negative value to a positive one. Though the introduction of amino groups to the surface was not detected directly, the treatment of ammonia plasma changed the electrical state of the DLC surface having COOH group, causing a difference in blood compatibility among the DLCs obtained by various plasma conditions.
    Keywords:Diamond-like carbon  Zeta potential  Gas plasma treatment  Blood compatibility  Platelet  Coagulation system
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