Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) Membrane

A nano porous polyethersulfone (PES) membrane is widely used for aspects of nanofiltration, such as purification, fractionation and dialysis. However, the low-blood-compatibility characteristic of PES membrane causes platelets and blood cells to stick to the surface of the membrane and degrades ions...

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Main Authors: Norihisa Miki, Tetsuya Suzuki, Yoshihiko Kanno, Mayui Noborisaka, Ippei Sanada, Hikaru Ito, Gunawan S. Prihandana
Format: Article
Language:English
Published: MDPI AG 2013-09-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/6/10/4309
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spelling doaj-258fcfc8b8bf4aeaaeece0f8bdc5ad7b2020-11-24T23:10:41ZengMDPI AGMaterials1996-19442013-09-016104309432310.3390/ma6104309Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) MembraneNorihisa MikiTetsuya SuzukiYoshihiko KannoMayui NoborisakaIppei SanadaHikaru ItoGunawan S. PrihandanaA nano porous polyethersulfone (PES) membrane is widely used for aspects of nanofiltration, such as purification, fractionation and dialysis. However, the low-blood-compatibility characteristic of PES membrane causes platelets and blood cells to stick to the surface of the membrane and degrades ions diffusion through membrane, which further limits its application for dialysis systems. In this study, we deposited the fluorinated-diamond-like-carbon (F-DLC) onto the finger like structure layer of the PES membrane. By doing this, we have the F-DLC films coating the membrane surface without sacrificing the membrane permeability. In addition, we examined antithrombogenicity of the F-DLC/PES membranes using a microfluidic device, and experimentally found that F-DLC drastically reduced the amount of blood cells attached to the surface. We have also conducted long-term experiments for 24 days and the diffusion characteristics were found to be deteriorated due to fouling without any surface modification. On the other hand, the membranes coated by F-DLC film gave a consistent diffusion coefficient of ions transfer through a membrane porous. Therefore, F-DLC films can be a great candidate to improve the antithrombogenic characteristics of the membrane surfaces in hemodialysis systems.http://www.mdpi.com/1996-1944/6/10/4309nano porous polyethersulfonefluorinated diamond-like carbonblood compatibilitysurface modification
collection DOAJ
language English
format Article
sources DOAJ
author Norihisa Miki
Tetsuya Suzuki
Yoshihiko Kanno
Mayui Noborisaka
Ippei Sanada
Hikaru Ito
Gunawan S. Prihandana
spellingShingle Norihisa Miki
Tetsuya Suzuki
Yoshihiko Kanno
Mayui Noborisaka
Ippei Sanada
Hikaru Ito
Gunawan S. Prihandana
Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) Membrane
Materials
nano porous polyethersulfone
fluorinated diamond-like carbon
blood compatibility
surface modification
author_facet Norihisa Miki
Tetsuya Suzuki
Yoshihiko Kanno
Mayui Noborisaka
Ippei Sanada
Hikaru Ito
Gunawan S. Prihandana
author_sort Norihisa Miki
title Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) Membrane
title_short Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) Membrane
title_full Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) Membrane
title_fullStr Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) Membrane
title_full_unstemmed Antithrombogenicity of Fluorinated Diamond-Like Carbon Films Coated Nano Porous Polyethersulfone (PES) Membrane
title_sort antithrombogenicity of fluorinated diamond-like carbon films coated nano porous polyethersulfone (pes) membrane
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2013-09-01
description A nano porous polyethersulfone (PES) membrane is widely used for aspects of nanofiltration, such as purification, fractionation and dialysis. However, the low-blood-compatibility characteristic of PES membrane causes platelets and blood cells to stick to the surface of the membrane and degrades ions diffusion through membrane, which further limits its application for dialysis systems. In this study, we deposited the fluorinated-diamond-like-carbon (F-DLC) onto the finger like structure layer of the PES membrane. By doing this, we have the F-DLC films coating the membrane surface without sacrificing the membrane permeability. In addition, we examined antithrombogenicity of the F-DLC/PES membranes using a microfluidic device, and experimentally found that F-DLC drastically reduced the amount of blood cells attached to the surface. We have also conducted long-term experiments for 24 days and the diffusion characteristics were found to be deteriorated due to fouling without any surface modification. On the other hand, the membranes coated by F-DLC film gave a consistent diffusion coefficient of ions transfer through a membrane porous. Therefore, F-DLC films can be a great candidate to improve the antithrombogenic characteristics of the membrane surfaces in hemodialysis systems.
topic nano porous polyethersulfone
fluorinated diamond-like carbon
blood compatibility
surface modification
url http://www.mdpi.com/1996-1944/6/10/4309
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