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Multiple-layer, formed-in-place immunoisolation membrane structures for implantation of cells in host tissue

机译:用于在宿主组织中植入细胞的多层,就地形成的免疫隔离膜结构

摘要

A permeable structure forms a chamber to hold living cells. The structure includes a first permeable region surrounding at least a portion of the chamber having a conformation that, when implanted in host tissue, substantially blocks penetration of host cells into the chamber while permitting solute transport. The structure also includes a second permeable region overlying the first permeable region having a conformation that, when implanted in host tissue, forms a permeable interface with host tissue that permits solute transport. A third permeable region is located between the first and second permeable regions. The third region comprises a solution of polymer material formed in place between the first and second permeable regions. The third permeable region bonds the first and second permeable regions together. The third permeable region also has a conformation that, when implanted in host tissue, permits solute transport between the first and second permeable regions. The third, formed-in-place region bonds the first and second permeable regions together, providing a robust, laminated structure that resists delamination during implantation caused by cellular infiltration into discontinuous spaces between the first and second regions. The third, formed-in-place region can also have a conformation providing an immunoisolation effect. Furthermore, the permeability of the third, formed-in-place membrane is sufficient high that it does not adversely effect the permeability value desired for the overall multiple layer membrane structure.
机译:渗透性结构形成容纳活细胞的腔室。该结构包括围绕腔室的至少一部分的第一渗透区域,该第一渗透区域具有这样的构造,当其被植入宿主组织中时,其基本上阻止宿主细胞向腔室中的渗透,同时允许溶质运输。该结构还包括覆盖第一可渗透区域的第二可渗透区域,该第二可渗透区域具有构象,当被植入宿主组织中时,该构象与宿主组织形成允许溶质转运的可渗透界面。第三可渗透区域位于第一和第二可渗透区域之间。第三区域包括在第一和第二可渗透区域之间的适当位置形成的聚合物材料的溶液。第三可渗透区域将第一和第二可渗透区域结合在一起。第三可渗透区域还具有当植入宿主组织中时允许在第一和第二可渗透区域之间进行溶质运输的构象。第三原位形成区域将第一和第二可渗透区域结合在一起,提供了坚固的层压结构,该结构可抵抗在细胞渗入第一和第二区域之间不连续空间所引起的植入过程中的分层。第三原位形成区域也可以具有提供免疫隔离作用的构象。此外,就地形成的第三膜的渗透率足够高,从而不会不利地影响整个多层膜结构所需的渗透率值。

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