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    • 3. 发明授权
    • Intervention medical device and preparation thereof
    • 干预医疗器械及其制备
    • US09226994B2
    • 2016-01-05
    • US13703855
    • 2011-06-13
    • Junfei LiXi HuChengyun YueDawei WangPeng HuangZhirong TangQiyi LuoZhaohua Chang
    • Junfei LiXi HuChengyun YueDawei WangPeng HuangZhirong TangQiyi LuoZhaohua Chang
    • A61L27/34A61L27/54A61L31/10A61L31/16
    • A61L27/34A61L27/54A61L31/10A61L31/16A61L2300/42
    • The present invention discloses an interventional medical device and methods of making the same. At least one coating layer is disposed on the outer surface of the interventional medical device and the material of the outmost layer of the coating layer is a sulfonate group-containing polymer. In the present invention, the material of the outmost layer of the interventional medical device is a sulfonate group-containing polymer. The polymer is endowed with a same surface property as that of heparin in addition to appropriate hydrophilicity due to the presence of the sulfonate group. After the interventional medical device is implanted into the human body, a hydrophilic surface is formed on the outer surface of the interventional medical device which is also negatively charged in the body fluid. Therefore, cells can easily adhere and grow on the outer surface thereof as a result of the enhanced cell compatibility. Furthermore, due to a surface property that is the same as that of heparin, the material is provided with excellent anticoagulant properties which inhibit the thrombosis and lower down the incidence rate of post-operational complications.
    • 本发明公开了一种介入医疗装置及其制造方法。 至少一个涂层设置在介入医疗装置的外表面上,涂层的最外层的材料是含磺酸基的聚合物。 在本发明中,介入医疗装置的最外层的材料是含磺酸基的聚合物。 由于存在磺酸盐基,除了适当的亲水性之外,聚合物具有与肝素相同的表面性质。 在将介入医疗装置植入人体后,在介入医疗装置的外表面上形成亲水性表面,其也在体液中带负电。 因此,由于细胞相容性的增强,细胞可以容易地附着和生长在其外表面上。 此外,由于与肝素相同的表面特性,具有优异的抗凝血性,能够抑制血栓形成,降低手术后并发症的发生率。
    • 7. 发明授权
    • Method and device for loading medical appliance with drugs and/or polymers
    • 用药物和/或聚合物装载医疗器具的方法和装置
    • US09398968B2
    • 2016-07-26
    • US13387927
    • 2010-07-09
    • Jie ZhangBo YiChangsheng WuZhirong TangQiyi Luo
    • Jie ZhangBo YiChangsheng WuZhirong TangQiyi Luo
    • A61F2/915G06T7/00
    • A61F2/915A61F2230/0054A61F2240/001A61F2250/0068G06T7/73G06T2207/10004G06T2207/30164
    • A method for loading a medical appliance with a medicament and/or a polymer is disclosed, the medical appliance comprising one or more grooves or holes loaded with the medicament and/or polymer. The method comprising the steps of: 1) capturing an image of the grooves or holes of the medical appliance, wherein the image contains at least one complete pattern of the grooves or holes; 2) performing digital image processing on the captured image to obtain the pattern of the grooves or holes; 3) calculating a central position of the pattern of the grooves or holes, and determining an actual central position of the grooves or holes based on the central position; 4) adjusting a relative position of a loading device to the medical appliance to align an outlet of the loading device with the actual central position of the grooves or holes; and 5) opening the outlet of the loading device to load the grooves or holes. A device for loading a medical appliance with a medicament and/or a polymer is further disclosed.
    • 公开了一种用于装载具有药物和/或聚合物的医疗器具的方法,所述医疗器具包括装载有药物和/或聚合物的一个或多个凹槽或孔。 该方法包括以下步骤:1)捕获医疗器具的凹槽或孔的图像,其中图像包含凹槽或孔的至少一个完整图案; 2)对拍摄图像执行数字图像处理以获得凹槽或孔的图案; 3)计算凹槽或孔的图案的中心位置,并且基于中心位置确定凹槽或孔的实际中心位置; 4)调节装载装置相对于医疗器具的相对位置,以将装载装置的出口与凹槽或孔的实际中心位置对齐; 和5)打开装载装置的出口以加载凹槽或孔。 进一步公开了一种用于装载具有药物和/或聚合物的医疗器具的装置。
    • 10. 发明申请
    • ARTIFICIAL STENT AND ITS PREPARATION METHOD
    • 人工智能及其制备方法
    • US20110202125A1
    • 2011-08-18
    • US12682560
    • 2008-10-10
    • Qiyi LuoZhirong TangBuzhong Zheng
    • Qiyi LuoZhirong TangBuzhong Zheng
    • A61F2/82
    • A61L31/10A61L31/146A61L31/16A61L2300/252A61L2300/258A61L2300/606C08L89/00
    • An artificial stent and its preparation method. The artificial stent comprises a stent body and a coating on it. The artificial stent is characterized in that the coating comprises a drug-loaded layer containing silk fibroin and a drug. The drug-loaded layer has a microporous structure substantially consists of silk fibroin and loaded with the drug. The microporous structure is obtained by a method comprising: uniformly coating the surface of the stent body with a solution of silk fibroin, denaturing by heat or chemical reagents; soaking the stent with purified water; then freeze drying and warming-drying, so as to from a microporous structure of the coating; loading the drug into the micropores in the coating; and removing the stent and drying. Silk fibroin used to coat the stent is a natural bio-material with great bio-compatibility; an can be absorbed and metabolized slowly by human body without adverse side effects, overcoming certain adverse effects of conventional drug-coated stents.
    • 人造支架及其制备方法。 人造支架包括支架主体及其上的涂层。 人造支架的特征在于,该涂层包含含有丝素蛋白和药物的药物负载层。 药物负载层具有基本上由丝素蛋白组成并加载药物的微孔结构。 通过以下方法获得微孔结构:通过丝素蛋白溶液均匀地涂覆支架体的表面,用热或化学试剂变性; 用纯水浸泡支架; 然后冷冻干燥并加温干燥,从而从涂层的微孔结构中得到; 将药物装入涂层中的微孔中; 取出支架并干燥。 用于涂层支架的丝心蛋白是具有极好生物相容性的天然生物材料; 人体可以缓慢吸收和代谢,无不良副作用,克服常规药物涂层支架的一些不良反应。