发明授权
US08273726B2 Compositions for treating and/or preventing diseases characterized by the presence of metal ions
有权
用于治疗和/或预防以金属离子存在为特征的疾病的组合物
- 专利标题: Compositions for treating and/or preventing diseases characterized by the presence of metal ions
- 专利标题(中): 用于治疗和/或预防以金属离子存在为特征的疾病的组合物
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申请号: US12567678申请日: 2009-09-25
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公开(公告)号: US08273726B2公开(公告)日: 2012-09-25
- 发明人: Orrie Friedman , Ivan Correia , Toby J. Sommer , David Alan Kew
- 申请人: Orrie Friedman , Ivan Correia , Toby J. Sommer , David Alan Kew
- 申请人地址: US MA Waltham
- 专利权人: Brandeis University
- 当前专利权人: Brandeis University
- 当前专利权人地址: US MA Waltham
- 代理机构: Wolf, Greenfield & Sacks, P.C.
- 主分类号: A01N55/00
- IPC分类号: A01N55/00 ; A61K31/695
摘要:
The present invention generally relates to the treatment and/or prevention of Alzheimer's disease, other neurodegenerative diseases, and/or diseases characterized by the presence of certain metal ions, by using certain compositions including organosilicon compounds. A composition of the invention may be administered to a mammal, such as a human. In some cases, the composition may include a silanol, a silandiol, a silantriol, or a cyclic organosilane, and/or be able to form a silanol, a silandiol, or a silantriol upon exposure to physiological conditions such as are found in the blood, in the stomach and/or gastrointestinal tract, or in the brain or other organ. In certain cases, the organosilicon compound may be bound to a moiety able to be transported across the blood-brain barrier into the brain, for example, an amino acid, a peptide, a protein, a virus, etc. The organosilicon compound may also be labeled (e.g., fluorescently or radioactively) in certain instances. In some embodiments, the composition, or a portion thereof, may sequester aluminum, copper, iron or other ions, for example, by electrostatically binding to the ions. The composition may also include other functionalities such as amines, certain alkyl and/or aryl moieties (including substituted alkyls and/or aryls), or hydrophobic moieties, for example, to facilitate transport of the organosilicon compound through the blood-brain barrier.
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