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    • 4. 发明申请
    • Method and device for minimally invasive site specific ocular drug delivery
    • 用于微创部位特异性眼药物递送的方法和装置
    • US20080027371A1
    • 2008-01-31
    • US11881729
    • 2007-07-26
    • John W. HiguchiAnthony L. Tuitupou
    • John W. HiguchiAnthony L. Tuitupou
    • A61N1/30A61F2/00A61K31/44A61K31/56
    • A61F9/0017A61K31/44A61K31/56A61N1/30
    • The present invention includes techniques for delivering an active agent into the eye of a subject. Accordingly, in one aspect a method may include delivering invasively an active agent into a peripheral tissue of the eye to form a drug reservoir, and applying an electric current to the drug reservoir to thus drive at least a portion of the active agent at least partially through the choroid. Numerous configurations are contemplated for the positioning of the electric current relative to the drug reservoir. For example, in one aspect the electric current may be applied to the drug reservoir from a non-invasively positioned electrode. In another aspect, the electric current may be applied to the drug reservoir from an invasively positioned electrode. A variety of invasive positions are contemplated, including, for example, positioning the invasive electrode within the peripheral tissue. In yet another aspect, delivering the active agent may further include implanting an invasive electrode having an associated drug reservoir containing the active agent into the peripheral tissue.
    • 本发明包括将活性剂递送到受试者的眼睛中的技术。 因此,一方面,一种方法可以包括将活性剂侵入性输送到眼睛的外周组织中以形成药物储存器,以及向药物储存器施加电流,从而至少部分地驱动至少一部分活性剂 通过脉络膜。 考虑到相对于药物储存器定位电流的许多构造。 例如,在一个方面,电流可以从非侵入性定位的电极施加到药物储存器。 另一方面,电流可以从入侵定位的电极施加到药物储存器。 考虑了各种侵入位置,包括例如将侵入性电极定位在外周组织内。 在另一方面,递送活性剂还可以包括将含有活性剂的相关药物储存器的侵入性电极植入外周组织中。