海关参考信息
- 2905121000-正丙醇
2905130000-正丁醇
2906210000-苄醇
2912110000-甲醛 - 💡 提示:海关信息按照顺序优先匹配,如需确认的海关信息,请参考相关资料。
- 详情请参考:📖 海关编码查询和海关进出口税则
专利信息
专利号:US-8927485-B2
优先权日:2010-02-18
标题:Site-specific modification of proteins through chemical modification enabling protein conjugates, protein dimer formation, and stapled peptides
发明人:KRANTZ ALEXANDER; YU PENG
权利人:KRANTZ ALEXANDER; YU PENG; ADVANCED PROTEOME THERAPEUTICS INC
摘要:The present invention generally provides methods for the site-specific modification of peptides, polypeptides, and proteins, e.g., granulocyte macrophage colony-stimulating factor, human superoxide dismutase, annexin, leptin, antibodies and the like, cytokines and chemokines, at their N-termini and at sites at which unnatural aminoacids have been introduced along the protein framework. The modifications described herein can be used for the synthesis and application of the adducts in radio-labeling, molecular imaging and protein therapeutic applications, and the treatment of disorders such as rheumatoid arthritis, lupus erythematosus, psoriasis, multiple sclerosis, type-1 diabetes, Crohn's disease, and systemic sclerosis, Alzheimer disease, cancer, liver disease (e.g., alcoholic liver disease), and cachexia.
专利号:US-7993390-B2
优先权日:2002-02-08
标 题:Implantable or insertable medical device resistant to microbial growth and biofilm formation
发明人:MILLER KATHLEEN M; BUCAY-COUTO WEENNA; LI JIANMIN
权利人:BOSTON SCIENT SCIMED INC
摘要:Disclosed are implantable or insertable medical devices that provide resistance to microbial growth on and in the environment of the device and resistance to microbial adhesion and biofilm formation on the device. In particular, the invention discloses implantable or insertable medical devices that comprise at least one biocompatible matrix polymer region, an antimicrobial agent for providing resistance to microbial growth and/or a microbial adhesion/biofilm synthesis inhibitor for inhibiting the attachment of microbes and the synthesis and accumulation of biofilm on the surface of the medical device. Also disclosed are methods of manufacturing such devices under conditions that substantially prevent preferential partitioning of any of said bioactive agents to a surface of the biocompatible matrix polymer and substantially prevent chemical modification of said bioactive agents.