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    • 1. 发明申请
    • METHOD FOR MEASURING CYSTATIN C IN HUMAN BODY FLUID
    • 测定人体液中胱氨酸C的方法
    • WO2010064435A8
    • 2010-09-16
    • PCT/JP2009006590
    • 2009-12-03
    • SEKISUI MEDICAL CO LTDNAKAYAMA SHINYATAKAHASHI HIROSHINAKAMURA YASUSHISHIMIZU TOMO
    • NAKAYAMA SHINYATAKAHASHI HIROSHINAKAMURA YASUSHISHIMIZU TOMO
    • G01N33/53G01N33/543G01N33/577
    • G01N33/543G01N33/6893G01N2333/8139
    • Disclosed is a particle-enhanced immunoassay method for cystatin C in a human body fluid, which has higher specificity, is more inexpensive, and can be automated more readily compared with conventional assay methods in which polyclonal antibodies having low specificity or monoclonal antibodies having high specificity but having poor aggregability have been used in large quantities. The particle-enhanced immunoassay method utilizes a combination of an antibody-sensitized particle comprising an insoluble carrier particle and an anti-human cystatin C monoclonal antibody having higher affinity and bound to the particle and an antibody-sensitized particle comprising the insoluble carrier particle and an anti-human cystatin C monoclonal antibody having a different recognition site from that of the aforementioned monoclonal antibody and having a relatively lower affinity, wherein the quantity of each of the human cystatin C monoclonal antibodies bound to the insoluble carrier particle is less than 5 wt% relative to the weight of the antibody-sensitized particle.
    • 公开了一种人体液中半胱氨酸蛋白酶抑制剂C的颗粒增强免疫测定方法,与特异性低的多克隆抗体或特异性高的单克隆抗体的常规测定方法相比,该方法具有更高的特异性,更便宜,并且可以更容易自动化 但具有较差的可聚合性已被大量使用。 颗粒增强免疫测定方法利用包含不溶性载体颗粒的抗体敏化颗粒和具有较高亲和力且结合于颗粒的抗人半胱氨酸蛋白酶抑制剂C单克隆抗体的组合以及包含不溶性载体颗粒和抗体敏化颗粒 与上述单克隆抗体具有不同识别位点并具有相对较低亲和力的抗人半胱氨酸蛋白酶抑制剂C单克隆抗体,其中与不溶性载体颗粒结合的每种人半胱氨酸蛋白酶抑制剂C单克隆抗体的量小于5重量% 相对于抗体致敏颗粒的重量。
    • 3. 发明专利
    • ARTIFICIAL DENTAL ROOT
    • JPH0312150A
    • 1991-01-21
    • JP14779889
    • 1989-06-09
    • INOUE KSHIMIZU TOMOIWAMIZU KATSUHIKOMIYAJI TOSHIYUKIMIYAZAKI TAKASHI
    • INOUE KIYOSHISHIMIZU TOMOIWAMIZU KATSUHIKOMIYAJI TOSHIYUKIMIYAZAKI TAKASHI
    • A61C8/00
    • PURPOSE:To improve holding ability and to obtain stable holding by almost parallelly providing two blades, forming a planting part, coupling these blades in the shape of a saddle, for which an upper part is opened, and forming a planting tip edge in one circular arc shape or in a shape where two circular arcs are crossed at least. CONSTITUTION:Two blades 1 with the same dimension are parallelly fixed at an interval A of 2-3mm. The central parts in the upper ends of the blades 1 are coupled by a U-shaped bridge coupling part 4 for fixing and just formed in the shape of the saddle, for which the upper part is opened. Then, nutrition is supplied through an opening window to a bone and the bone is reproduced to swell up. By using a rotary machine tool 5 for which a rotary radius is almost equal with a radius (r) for a circular arc 1b of the blade 1 and thickness is almost equal with thickness (t) of the blade, a bone 6 is notched from the top of an alveolus, whose dental root is opened, and cut to depth at a degree that the blades 1 can be just embedded. Thus, since the two blades 1 are parallelly coupled at the interval A, an artificial dental root is strongly fixed to the bone without fail and planting can be executed with the high holding ability.
    • 4. 发明专利
    • ARTIFICIAL DENTAL ROOT
    • JPS6411539A
    • 1989-01-17
    • JP16645287
    • 1987-07-03
    • SHIMIZU TOMOINOUE K
    • SHIMIZU TOMOINOUE KIYOSHI
    • A61C8/00
    • PURPOSE:To prevent the danger of damage when an upper jaw or lower jaw tube is inserted, by molding an artificial dental root by punching the same from a rolled or forged plate material composed of titanium or a titanium alloy by a wire cutting discharge machining method. CONSTITUTION:An artificial dental root is composed of a rolled or forged plate material having a thickness of about 1.2-2.5mm of titanium or a titanium alloy and processed and molded by a method wherein one plate material or a desired number of the plate materials in a laminated and integrated state is punched into a predetermined shape and predetermined dimensions by a wire cutting discharge machining method. Through-holes 3A having a diameter of about 2-4mmphi for strengthening the bonding with the dental root after implantation are formed to the flat part between the corner parts 3a and bottom part 3b of a leg part in an up-and-down direction in a distributed state and the inner wall surface of each through-hole 3A becomes a fine uneven surface by discharge machining to increase in its surface area and the adhesion and bonding with a tooth bone is well performed.