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公开(公告)号:US20220000722A1
公开(公告)日:2022-01-06
申请号:US17463002
申请日:2021-08-31
申请人: MESOSIL INC.
IPC分类号: A61K6/84 , C08L33/12 , A01N25/08 , A01N43/40 , A01N47/44 , A61K6/20 , A61K6/35 , A61K6/40 , A61K6/54 , A61K6/71 , A61K6/74 , A61K6/76 , A61K6/80 , A61K6/802 , A61K6/849 , A61K6/853 , A61K6/86 , A61K6/864 , A61K6/871 , A61K9/00 , A61K9/14 , A61K9/51 , A61K31/155 , A61K31/20 , A61K31/444 , A61K31/4425 , A61K31/785 , A61L27/02 , A61L27/10 , A61L27/12 , A61L27/30 , A61L27/32 , A61L27/42 , A61L27/44 , A61L27/54 , A61L27/56 , A61P1/02 , A61P31/02 , A61P31/04 , C07C279/14 , C07C279/26 , C07D213/20 , C07D213/74 , C08K3/22 , C08K3/32
摘要: A biocompatible composite material for controlled release is disclosed, comprising a biocompatible metal oxide structure with a loaded network of pores. The pore network of the biocompatible composite material is filled with a uniformly distributed biologically active micellizing amphiphilic molecule, the size of these pores ranging from about 0.5 to about 100 nanometers. The material is characterized in that when exposed to phosphate-buffered saline (PBS), the controlled release of the active amphiphilic molecule is predominantly diffusion-driven over time.
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公开(公告)号:US20220054364A1
公开(公告)日:2022-02-24
申请号:US17464211
申请日:2021-09-01
申请人: MESOSIL INC.
IPC分类号: A61K6/84 , A61L27/56 , C07C279/26 , C07D213/74 , C07C279/14 , A61K31/4425 , A61K31/155 , C07D213/20 , A61K31/444 , A61L27/54 , A61K9/00 , A61L27/42 , A61L27/30 , A61L27/44 , A61K9/14 , A61P1/02 , A01N25/08 , A61P31/04 , A61P31/02 , A61K9/51 , A61L27/32 , A61K31/785 , A61L27/12 , A61L27/10 , A61L27/02 , A01N43/40 , A01N47/44 , A61K31/20 , A61K6/20 , A61K6/35 , A61K6/40 , A61K6/54 , A61K6/71 , A61K6/74 , A61K6/76 , A61K6/80 , A61K6/86 , A61K6/802 , A61K6/849 , A61K6/853 , A61K6/864 , A61K6/871 , C08K3/22 , C08K3/32 , C08L33/12
摘要: A biocompatible composite material for controlled release is disclosed, comprising a biocompatible metal oxide structure with a loaded network of pores. The pore network of the biocompatible composite material is filled with a uniformly distributed biologically active micellizing amphiphilic molecule, the size of these pores ranging from about 0.5 to about 100 nanometers. The material is characterized in that when exposed to phosphate-buffered saline (PBS), the controlled release of the active amphiphilic molecule is predominantly diffusion-driven over time.
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