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    • 4. 发明申请
    • GAS-FILLED MICROVESICLE ASSEMBLY FOR CONTRAST IMAGING
    • 气体填充微波组件对比成像
    • WO2005063305A1
    • 2005-07-14
    • PCT/IB2004/004230
    • 2004-12-21
    • BRACCO RESEARCH SASCHNEIDER, MichelBUSSAT, PhilippeYAN, FengSENENTE, Anne
    • SCHNEIDER, MichelBUSSAT, PhilippeYAN, FengSENENTE, Anne
    • A61K49/22
    • A61K47/6925A61K41/0028A61K49/225
    • Assembly comprising a gas-filled microvesicle and a structural entity which is capable to associate through an electrostatic interaction to the outer surface of said microvesicle (microvesicle associated component - MAC), thereby modifying the physico-chemical properties thereof. Said MAC may optionally comprise a targeting ligand, a bioactive agent, a diagnostic agent or any combination thereof. The assembly of the invention can be formed from gas­filled microbubbles or microballoons and a MAC having a diameter of less than 100 pm, in particular a micelle and is used as an active component in diagnostically and/or therapeutically active formulations, in particular for enhancing the imaging in the field of ultrasound contrast imaging, including targeted ultrasound imaging, ultrasound-mediated drug delivery and and other imaging techniques such as molecular resonance imaging (MRI) or nuclear imaging.
    • 组件包括充气微泡和能够通过静电相互作用与所述微囊体(微泡相关组分-MAC)的外表面缔合的结构实体,从而改变其物理化学性质。 所述MAC可以任选地包含靶向配体,生物活性剂,诊断剂或其任何组合。 本发明的组件可以由气体填充的微泡或微球和直径小于100μm的MAC,特别是胶束形成,并且用作诊断和/或治疗活性制剂中的活性成分,特别是用于增强 在超声对比成像领域的成像,包括靶向超声成像,超声介导的药物递送和其他成像技术,例如分子共振成像(MRI)或核成像。
    • 6. 发明申请
    • GAS-FILLED MICROVESICLES COMPOSITION FOR CONTRAST IMAGING
    • 用于对比成像的气体填充微晶组合物
    • WO2006018433A1
    • 2006-02-23
    • PCT/EP2005/054041
    • 2005-08-17
    • BRACCO RESEARCH SABUSSAT, PhilippeFRINKING, PeterGUILLOT, ChristianSCHNEIDER, Michel
    • BUSSAT, PhilippeFRINKING, PeterGUILLOT, ChristianSCHNEIDER, Michel
    • A61K49/22
    • A61K49/223
    • The present invention relates to a new composition comprising gas-filled microvesicles for contrast imaging which are particularly suitable for providing an effective echo response to at least two selected ultrasound waves having different frequencies. Said composition preferably comprises at least two different preparations of gas-filled microvesicles having respective peaks of non-linear echographic response differing by at least 2 MHz to each other, and preferably have respective size distributions with different median sizes. In particular, said preparations preferably have size distributions with respective D V50 values differing from each other by at least 0.5 μm, more preferably at least 1.0 μm. Alternatively, said composition has a volume size distribution showing a value of Bowley skewness of 0.16 or higher. According to a preferred embodiment, at least 95% of the total volume of gas contained in said microvesicles, calculated on the population of microvesicles up to a diameter of 10 μm, is contained in microvesicles having a diameter of 8 micron or less.
    • 本发明涉及一种新的组合物,其包括用于造影成像的充气微泡,其特别适合于向具有不同频率的至少两个选定的超声波提供有效的回波响应。 所述组合物优选包含气体填充微泡的至少两种不同制剂,其具有彼此相差至少2MHz的非线性回波影响响应的各个峰,并且优选具有不同中值大小的相应尺寸分布。 特别地,所述制剂优选具有各自的D
    • 9. 发明申请
    • ASSEMBLY OF GAS-FILLED MICROVESICLE WITH ACTIVE COMPONENT FOR CONTRAST IMAGING
    • 装配有活性成分的气体填充微胶囊用于对比成像
    • WO2005063306A1
    • 2005-07-14
    • PCT/IB2004/004233
    • 2004-12-21
    • BRACCO RESEARCH SASCHNEIDER, MichelBUSSAT, PhilippeYAN, FengSENENTE, Anne
    • SCHNEIDER, MichelBUSSAT, PhilippeYAN, FengSENENTE, Anne
    • A61K49/22
    • A61K41/0028A61K47/6925A61K49/225
    • Assembly comprising a gas-filled microvesicle and a structural entity which is capable to associate through an electrostatic interaction to the outer surface of said microvesicle (microvesicle associated component - MAC), thereby modifying the physico-chemical properties thereof. Said MAC comprises a targeting ligand a diagnostic agent or any combination thereof. Optionally a bioactive agent can further be associated to the MAC. The assembly of the invention can be formed from gas-filled microbubbles or microballoons and a MAC having preferably nanometric dimensions, e.g. a micelle, and is used as an active component in diagnostically and/or therapeutically active formulations, in particular for enhancing the imaging in the field of ultrasound contrast imaging, including targeted ultrasound imaging, ultrasound-mediated drug delivery and and other imaging techniques such as molecular resonance imaging (MRI) or nuclear imaging.
    • 组件包括充气微泡和能够通过静电相互作用与所述微囊体(微泡相关组分-MAC)的外表面缔合的结构实体,从而改变其物理化学性质。 所述MAC包含靶向配体,诊断剂或其任何组合。 可选地,生物活性剂可以进一步与MAC相关联。 本发明的组件可以由气体填充的微泡或微球形成,并且MAC具有优选的纳米尺度,例如, 胶束,并且用作诊断和/或治疗活性制剂中的活性成分,特别是用于增强超声对比成像领域的成像,包括靶向超声成像,超声介导的药物递送和其它成像技术,例如 分子共振成像(MRI)或核成像。