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    • 4. 发明申请
    • MESH COMPRISING ECM
    • 包含ECM的MESH
    • WO2008107483A2
    • 2008-09-12
    • PCT/EP2008/052782
    • 2008-03-07
    • COLOPLAST A/SNIELSEN, Lene FeldskovTRUELSEN, Jens HoegEVERLAND, Hanne
    • NIELSEN, Lene FeldskovTRUELSEN, Jens HoegEVERLAND, Hanne
    • A61L31/00A61L31/04A61L31/10
    • A61L31/10A61L27/34A61L27/3633A61L27/3641A61L27/48A61L27/56A61L27/58A61L31/005A61L31/129A61L31/146A61L31/148
    • Herein is disclosed the utility of discontinuous regions of Extraceullar Matrix Proteins (ECM) in promoting cell growth in a Mesh. When the described scaffolds are applied on top of inert materials, cell in-growth is promoted and the attachment of the mesh is properly secured. In one aspect, the mesh has a side with reduced cellular in-growth and a side with enhanced in-growth. Combining inert materials with cell attractive materials such as ECM can do this. This is particularly advantageous for use as hernia implant. Here, the mesh should adhere only to the abdominal wall (on one side of the mesh) without adhering to the intestines. In one aspect of the invention, the inert material is elongated and coated on both ends. This is particularly advantageous for use as slings. Here, the mesh will adhere to the anchorage points in the ends of the sling, and still allow urethral redistribution as a consequence of bladder emptying.
    • 本文公开了Extraceullar Matrix Proteins(ECM)的不连续区域在促进网状细胞生长中的用途。 当将所述支架应用于惰性材料的顶部时,促进细胞生长并适当地固定网状物的附着。 在一个方面,网状物具有减少的细胞生长中的侧面和具有增强的生长增长的一侧。 将惰性材料与细胞吸引材料如ECM结合可以实现。 这对于用作疝植入物是特别有利的。 这里,网状物只能粘附于腹壁(网状物的一侧)而不粘附在肠上。 在本发明的一个方面,惰性材料是细长的并涂覆在两端。 这对于用作吊索是特别有利的。 在这里,网状物将粘附在吊索末端的锚固点上,并且由于膀胱排空仍然允许尿道再分布。