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    • 132. 发明申请
    • METHOD AND DEVICE FOR THE CONTROLLED DELIVERY OF PARATHYROID HORMONE
    • 用于控制输送PARAMYROID HORMONE的方法和装置
    • WO2004022033A1
    • 2004-03-18
    • PCT/US2003/027770
    • 2003-09-04
    • MICROCHIPS, INC.
    • AUSIELLO, DennisSANTINI, John, T., Jr.HERMAN, Stephen, J.PRESCOTT, James, H.
    • A61K9/00
    • A61K9/0024A61K9/0009A61K9/0036A61K9/0097A61K38/29A61K2300/00
    • Method and devices are provided for extended and controlled delivery of parathyroid hormone to a patient. The method includes implanting a medical device into the patient, the medical device comprising a substrate, a pluralityof reservoirs in the substrate, a release system contained in each of the reservoirs, wherein the release system comprises parathyroid hormone; and controllably releasing a pharmaceutically effective amount of the parathyroid hormone from the reservoirs. The parathyroid hormone can be released intermittently, such as once daily over an extended period (e.g., two months, ten months, or more.). The device can further include reservoirs containing a bone resorption inhibitor or other drug for release. The devices are useful in delivering PTH for the treatment and prevention of bone loss, such as associated with osteoporosis.
    • 提供了将甲状旁腺激素延伸和控制递送给患者的方法和装置。 所述方法包括将医疗装置植入患者体内,所述医疗装置包括基底,所述基底中的多个储存器,包含在每个所述储存器中的释放系统,其中所述释放系统包括甲状旁腺激素; 并且可控地从储存器释放药学有效量的甲状旁腺激素。 间歇性地释放甲状旁腺激素,例如每天一次(例如两个月,十个月或更长时间)释放。 该装置还可以包括含有骨吸收抑制剂或其它用于释放的药物的储存器。 该装置可用于输送PTH以治疗和预防骨丢失,例如与骨质疏松症有关。
    • 133. 发明申请
    • METHODS FOR HERMETICALLY SEALING MICROCHIP RESERVOIR DEVICES
    • 密封微裂缝储层装置的方法
    • WO2003032957A2
    • 2003-04-24
    • PCT/US2002/020490
    • 2002-06-28
    • MICROCHIPS, INC.
    • UHLAND, Scott, A.POLITO, Benjamin, F.HERMAN, Stephen, J.SANTINI, John, T., Jr.
    • A61K9/22
    • A61K9/0097
    • Methods are provided for hermetically sealing the reservoirs of microchip devices and for hermetically sealing the substrate assemblies in a hermetic packaging structure. In one embodiment, the method comprises (1) providing a primary substrate having a front side and a back side, the substrate comprising a plurality of reservoirs positioned between the front side and the back side, each reservoir being loaded with molecules or a secondary device for controlled release or exposure, the reservoirs having at least one opening in need of sealing, the primary substrate including one or more hermetic sealing materials; (2) providing a hermetic sealing substrate having a surface composed of one or more hermetic sealing materials; (3) positioning the hermetic sealing substrate over the reservoir openings and contacting said hermetic sealing materials of the primary substrate with said hermetic sealing materials of the hermetic sealing substrate; and (4) applying energy or a mechanical force to the contacted sealing materials effective to form a hermetic seal between the hermetic sealing substrate and the primary substrate to hermetically seal the reservoir openings.
    • 提供了用于气密密封微芯片装置的储存器并且用于将密封封装结构中的基板组件气密密封的方法。 在一个实施方案中,该方法包括(1)提供具有前侧和后侧的主衬底,该衬底包括定位在前侧和后侧之间的多个储器,每个储器装载有分子或次级装置 用于受控释放或暴露,所述储存器具有至少一个需要密封的开口,所述主要基底包括一种或多种气密密封材料; (2)提供具有由一种或多种气密密封材料构成的表面的气密密封基板; (3)将气密密封基板定位在储存器开口上并使主基板的气密密封材料与气密密封基板的气密密封材料接触; (4)对接触的密封材料施加能量或机械力,以有效地在气密密封基板和主基板之间形成气密密封,以气密地密封储液器开口。
    • 134. 发明申请
    • CONFORMAL COATED MICROCHIP RESERVOIR DEVICES
    • 一致的涂层微型储存器件
    • WO2002096389A1
    • 2002-12-05
    • PCT/US2002/017084
    • 2002-05-30
    • MICROCHIPS, INC.
    • SHEPPARD, Norman, F., Jr.FEAKES, Christina, M.
    • A61K9/00
    • A61K9/0009A61K9/0097Y10T29/49146Y10T29/49155
    • Microchip devices are provided with an inert and biocompatible conformal coating to mitigate adverse responses following device implantation in a patient, to contain and seal a drug or other material within the device, and/or to insulate the electrical connections to the device. The device can include: (1) a substrate having a plurality of reservoirs; (2) reservoir contents, such as a drug or biosensor, in the reservoirs; (3) reservoir caps covering the reservoirs to isolate the contents from environmental components outside the reservoirs; and (4) a conformal coating over the outer surface of at least a portion of the substrate other than the reservoir caps. The reservoir caps can be selectively disintegrated or permeabilized to expose the reservoir contents to environmental components. The conformal coating preferably comprises a vapor depositable polymeric material, such as parylene. Processes for controlling coating of the devices while facilitating reservoir cap exposure are provided.
    • Microchip器件提供有惰性和生物相容的保形涂层,以减轻患者装置植入后的不良反应,以容纳和密封装置内的药物或其他材料,和/或使电气连接与设备绝缘。 该装置可以包括:(1)具有多个储存器的基板; (2)储层内的储存物,如药物或生物传感器; (3)覆盖水库的水库盖,以将内容物与储存器外的环境成分隔离; 和(4)除了储存器盖之外的基底的至少一部分的外表面上的保形涂层。 储存器盖可以选择性地分解或渗透以将储存器内容物暴露于环境组分。 保形涂层优选包括可气相沉积的聚合物材料,例如聚对二甲苯。 提供了用于控制装置的涂层同时促进储存器盖暴露的过程。
    • 135. 发明申请
    • BIOSENSOR MEMBRANE COMPOSITION, BIOSENSOR, AND METHODS FOR MAKING SAME
    • 生物传感器膜组合物,生物传感器及其制备方法
    • WO2012019083A3
    • 2012-04-12
    • PCT/US2011046714
    • 2011-08-05
    • MICROCHIPS INCZHANG YANAN
    • ZHANG YANAN
    • A61B5/00C12Q1/00
    • G01N27/3335A61B5/14865B01D67/0088B01D69/144B01D71/54B01D71/70B01D2323/12B01D2323/16B01D2323/30B01D2325/36C12Q1/002C25B13/08G01N27/3271
    • Selectively permeable membranes for biosensors are provided. In one embodiment, the membrane includes a polymer mixture that includes a polyurethane component, a siloxane component, and a hydrogel component, the components in the mixture in amounts of about 60 to about 80 wt % polyurethane, about 10 to about 20 wt % siloxane, and about 10 to about 20 wt % hydrogel. The membrane has a surface restructured to be hydrophilic, with the restructured surface being crosslinked ed via reactive end groups on at least one of the polyurethane, the siloxane, and the hydrogel components. In another embodiment., the membrane includes a solvent cast film which includes a mixture of a first polyether-based thermoplastic polyurethane copolymer, a polyether-based polyurethane copolymer, and, optionally, a second polyether-based thermoplastic polyurethane copolymer.
    • 提供用于生物传感器的选择性渗透膜。 在一个实施方案中,膜包括包含聚氨酯组分,硅氧烷组分和水凝胶组分的聚合物混合物,混合物中的组分的量为约60至约80重量%的聚氨酯,约10至约20重量%的硅氧烷 ,和约10至约20重量%的水凝胶。 该膜具有重新形成为亲水性的表面,其中重组的表面通过至少一种聚氨酯,硅氧烷和水凝胶组分上的反应性端基进行交联。 在另一个实施方案中,膜包括溶剂流延膜,其包括第一聚醚基热塑性聚氨酯共聚物,聚醚基聚氨酯共聚物和任选的第二聚醚基热塑性聚氨酯共聚物的混合物。
    • 137. 发明申请
    • WIRELESS COMMUNICATION WITH A MEDICAL IMPLANT
    • 无线通信与医疗植物
    • WO2010068846A3
    • 2010-09-30
    • PCT/US2009067637
    • 2009-12-11
    • MICROCHIPS INCUTSI VINCENTNORRIS MARKRICHERD JEAN-DANIEL
    • UTSI VINCENTNORRIS MARKRICHERD JEAN-DANIEL
    • H01Q1/27H01Q1/38H01Q5/00H01Q9/04
    • A61N1/37223H01Q1/273H01Q1/38H01Q5/40H01Q9/0414H01Q21/30
    • An apparatus for providing transdermal wireless communication includes medical implant circuitry; a transceiver coupled to the medical implant circuitry; a first metal surface having an end portion and a base portion; a second metal surface parallel to the first metal surface and connected to the first metal surface by a conductor, the second metal surface being separated from the first metal surface by a dielectric layer; a first radiating element tuned to a first frequency and disposed within the dielectric layer between the first metal surface and second metal surface; and a feed structure in electrical communication with the transceiver and the first radiating strip. The first radiating element has a first reactive portion at a first end thereof, a second reactive portion at a second end thereof, and a first radiating strip extending between the first reactive portion and the second reactive portion.
    • 用于提供透皮无线通信的装置包括医疗植入电路; 耦合到所述医疗植入电路的收发器; 具有端部和基部的第一金属表面; 第二金属表面,平行于第一金属表面并通过导体连接到第一金属表面,第二金属表面通过介电层与第一金属表面分离; 调整到第一频率并且设置在第一金属表面和第二金属表面之间的电介质层内的第一辐射元件; 以及与收发器和第一辐射带电连通的馈送结构。 第一辐射元件在其第一端处具有第一反作用部分,在其第二端处具有第二反作用部分,以及在第一反作用部分和第二反作用部分之间延伸的第一辐条。