McGowan Institute for Regenerative Medicine, University of Pittsburgh, Pittsburgh, PA, USA.
Department of Mechanical Engineering & Materials Science, University of Pittsburgh, Pittsburgh, PA, USA.
J Mater Chem B. 2020 Sep 23;8(36):8305-8314. doi: 10.1039/d0tb01220c.
Polydimethylsiloxane (PDMS) is commonly used in medical devices because it is non-toxic and stable against oxidative stress. Relatively high blood platelet adhesion and the need for chemical crosslinking through curing, however, limit its utility. In this research, a biostable PDMS-based polyurethane-urea bearing zwitterion sulfobetaine (PDMS-SB-UU) was synthesized for potential use in the fabrication or coating of blood-contacting devices, such as a conduits, artificial lungs, and microfluidic devices. The chemical structure and physical properties of synthesized PDMS-SB-UU were confirmed by 1H-nuclear magnetic resonance (1H-NMR), X-ray diffraction (XRD), and uniaxial stress-strain curve. In vitro stability of PDMS-SB-UU was confirmed against lipase and 30% H2O2 for 8 weeks, and PDMS-SB-UU demonstrated significantly higher resistance to fibrinogen adsorption and platelet deposition compared to control PDMS. Moreover, PDMS-SB-UU showed a lack of hemolysis and cytotoxicity with whole ovine blood and rat vascular smooth muscle cells (rSMCs), respectively. The PDMS-SB-UU was successfully processed into small-diameter (0.80 ± 0.05 mm) conduits by electrospinning and coated onto PDMS- and polypropylene-based blood-contacting biomaterials due to its unique physicochemical characteristics from its soft- and hard- segments.
聚二甲基硅氧烷(PDMS)因其无毒且能抵抗氧化应激而被广泛应用于医疗器械。然而,其相对较高的血小板黏附率以及需要通过固化进行化学交联,限制了其应用。在这项研究中,我们合成了一种基于生物稳定 PDMS 的聚氨基甲酸酯-脲,带有两性离子磺基甜菜碱(PDMS-SB-UU),用于制造或涂层与血液接触的设备,如导管、人工肺和微流控装置。通过 1H 核磁共振(1H-NMR)、X 射线衍射(XRD)和单轴拉伸应力-应变曲线,确认了合成的 PDMS-SB-UU 的化学结构和物理性能。PDMS-SB-UU 在 8 周内对脂肪酶和 30% H2O2 的体外稳定性得到了确认,与对照 PDMS 相比,PDMS-SB-UU 对纤维蛋白原吸附和血小板沉积具有更高的抵抗力。此外,PDMS-SB-UU 与全绵羊血液和大鼠血管平滑肌细胞(rSMCs)分别表现出缺乏溶血和细胞毒性。由于其软段和硬段的独特理化特性,PDMS-SB-UU 成功地通过静电纺丝加工成小直径(0.80±0.05mm)导管,并涂覆在 PDMS 和聚丙烯基与血液接触的生物材料上。