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    • 2. 发明授权
    • Controlled release of active agents using inorganic tubules
    • 使用无机小管控制活性剂的释放
    • US5651976A
    • 1997-07-29
    • US509483
    • 1995-07-31
    • Ronald R. PriceBruce P. Gaber
    • Ronald R. PriceBruce P. Gaber
    • A01N25/08A61K9/00A01N25/28
    • A61K9/0092A01N25/08B82Y5/00Y10S514/963Y10T428/2984Y10T428/2991
    • The present invention is a composition for, and a method of, delivering an active agent at a controlled rate. The composition of the invention is a hollow ceramic or inorganic microtubule, where the active agent is contained within the lumen of the microtubules. Typically, the agent is adsorbed onto an inner surface of the microtubule. The method of the invention is disposing this novel composition in a use environment. In a preferred embodiment of the invention, a microtubule is a tubule having an inner diameter of less than 0.2 .mu.m, and microtubules are tubules having an average inner diameter less than 0.2 .mu.m. In a preferred embodiment, the hollow ceramic or inorganic microtubule is a mineral microtubule, such as halloysite, cylindrite, boulangerite, or imogolite. In a more preferred embodiment of the invention, the mineral microtubule has a biodegradable polymeric carrier disposed in its lumen. In a preferred embodiment of the invention, the inner diameter of the microtubules varies from about 0.20 .mu.m to about 0.35 .mu.m, or averages about 0.40 .mu.m. In another preferred embodiment, of the invention, the inner diameter of the microtubules varies from about 200 .ANG. to about 1000 .ANG..
    • 本发明是以受控的速率递送活性剂的组合物和方法。 本发明的组合物是中空陶瓷或无机微管,其中活性剂包含在微管的内腔内。 通常,试剂被吸附到微管的内表面上。 本发明的方法是将这种新型组合物置于使用环境中。 在本发明的优选实施方案中,微管是内径小于0.2μm的小管,微管是平均内径小于0.2μm的小管。 在优选的实施方案中,中空陶瓷或无机微管是矿物微管,例如多水高岭土,圆柱形,boulangerite或imocolite。 在本发明的一个更优选的实施方案中,矿物质微管具有设置在其内腔中的可生物降解的聚合物载体。 在本发明的优选实施方案中,微管的内径从约0.20μm至约0.35μm变化,或平均约0.40μm。 在本发明的另一个优选实施方案中,微管的内径从约200安培至约1000安培度变化。
    • 3. 发明授权
    • Efficient method for subsurface treatments, including squeeze treatments
    • 有效的地下处理方法,包括挤压处理
    • US06401816B1
    • 2002-06-11
    • US09518133
    • 2000-03-03
    • Ronald R. PriceRobert David EdenBruce P. Gaber
    • Ronald R. PriceRobert David EdenBruce P. Gaber
    • A01N2508
    • C09K8/92C09K8/536
    • A method for delivering encapsulated materials to a subsurface environment, for the treatment of the subsurface environment, has the steps of: (a) loading the lumen of hollow microtubules with an active agent selected for treating the subsurface environment, where the hollow microtubules are compatible with the subsurface environment; and (b) administering the hollow microtubules to the subsurface environment, permitting the controlled release of the active agent into the subsurface environment. This method may be practiced using a slurry of hollow microtubules, where the lumen of these microtubules is loaded with an agent for the treatment of petroleum well environments, and where these loaded microtubules are dispersed in a liquid phase carrier selected from aqueous carriers, non-aqueous carriers, and emulsions of aqueous and non-aqueous materials. This method may also be practiced using a pill made of a consolidated mass of tubules loaded with one or more active agents, typically bound with a binder.
    • 将封装的材料递送到地下环境以用于处理地下环境的方法具有以下步骤:(a)用选择用于处理地下环境的活性剂加载中空微管的内腔,其中中空微管是相容的 与地下环境; 和(b)将空心微管施用于地下环境,允许活性剂受控释放到地下环境中。 该方法可以使用中空微管的浆液来实施,其中这些微管的管腔装载有用于处理石油井环境的试剂,并且其中这些负载的微管分散在选自水性载体,非水溶性载体的液相载体中, 含水载体和水性和非水性材料的乳液。 也可以使用由装有一种或多种通常与粘合剂结合的活性剂的固体的小管制成的丸来实施该方法。
    • 5. 发明授权
    • Flow immunosensor apparatus
    • 流量免疫传感器
    • US06245296B1
    • 2001-06-12
    • US07860965
    • 1992-03-31
    • Frances S. LiglerBruce P. GaberAnne W. KusterbeckGregory A. Wemhoff
    • Frances S. LiglerBruce P. GaberAnne W. KusterbeckGregory A. Wemhoff
    • G01N3348
    • G01N33/54366G01N33/53G01N33/54306Y10S435/80Y10S435/804Y10S435/961Y10S435/968
    • Target moiety is detected by (a) providing an antibody specific to the target, (b) saturating the binding sites of the antibody with a labelled form of the target, (c) flowing a liquid containing the target past the saturated antibody, thereby (d) allowing the target to displace the labelled antigen, and (e) detecting the displaced labelled antigen with a detector for the label. This assay is performed by a flow immunosensor comprising: a liquid flowing through the immunosensor for moving a sample through the immunosensor; a sample receiver for introducing the sample to the liquid stream; a flow controller for moving the liquid stream through the immunosensor; an exchanger connected to the sample receiving area in which the sample is brought in contact with labelled antigens of the target and where any target present is allowed to displace the labelled antigen; a detection apparatus connected to the exchanger for detecting any labelled antigen which is released; and a disposal means connected to the detection apparatus for disposing of or collecting of waste coming from the detection apparatus.
    • 通过(a)提供对靶特异性的抗体,(b)用靶标的标记形式使抗体的结合位点饱和,(c)使含有靶标的液体流过饱和抗体,从而( d)允许目标物置换标记的抗原,和(e)用标记的检测器检测置换的标记的抗原。 该测定由流动免疫传感器进行,包括:流过免疫传感器的液体,用于使样品移动通过免疫传感器; 用于将样品引入液体流的样品接收器; 用于使液体流通过免疫传感器的流量控制器; 连接到样品接收区域的交换器,其中样品与靶标的标记抗原接触,并且允许存在的任何靶标置换标记的抗原; 连接到交换器的检测装置,用于检测被释放的任何标记的抗原; 以及与检测装置连接的处置装置,用于处置或收集来自检测装置的废物。