首页> 外文会议>Conference on Advanced Biomedical and Clinical Diagnostic Systems II; 20040125-20040126; San Jose,CA; US >Nanomedicine - nanoparticles, molecular biosensors and targeted gene/drug delivery for combined single-cell diagnostics and therapeutics
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Nanomedicine - nanoparticles, molecular biosensors and targeted gene/drug delivery for combined single-cell diagnostics and therapeutics

机译:纳米药物-纳米颗粒,分子生物传感器和针对性的基因/药物递送,用于联合单细胞诊断和治疗

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Next generation nanomedicine technologies are being developed to provide for continuous and linked molecular diagnostics and therapeutics. Research is being performed to develop "sentinel nanoparticles" which will seek out diseased (e.g. cancerous) cells, enter those living cells, and either perform repairs or induce those cells to die through apoptosis. These nanoparticles are envisioned as multifunctional "smart drug delivery systems". The nanosystems are being developed as multilayered nanoparticles (nanocrystals, nanocapsules) containing cell targeting molecules, intracellular re-targeting molecules, molecular biosensor molecules, and drugs/enzymes/gene therapy. These "nanomedicine systems" are being constructed to be autonomous, much like present-day vaccines, but will have sophisticated targeting, sensing, and feedback control systems - much more sophisticated than conventional antibody-based therapies. The fundamental concept of nanomedicine is to not to just kill all aberrant cells by surgery, radiation therapy, or chemotherapy. Rather it is to fix cells, when appropriate, one cell-at-a-time, to preserve and re-build organ systems. When cells should not be fixed, such as in cases where an improperly repaired cell might give rise to cancer cells, the nanomedical therapy would be to induce apoptosis in those cells to eliminate them without the damaging bystander effects of the inflammatory immune response system reacting to necrotic cells or those which have died from trauma or injury. The ultimate aim of nanomedicine is to combine diagnostics and therapeutics into "real-time medicine", using where possible in-vivo cytometry techniques for diagnostics and therapeutics. A number of individual components of these multi-component nanoparticles are already working in in-vitro and ex-vivo cell and tissue systems. Work has begun on construction of integrated nanomedical systems.
机译:正在开发下一代纳米医学技术,以提供连续和链接的分子诊断和治疗。正在进行研究以开发“前哨纳米颗粒”,其将寻找患病(例如癌细胞)细胞,进入那些活细胞,并进行修复或诱导这些细胞通过凋亡而死亡。这些纳米颗粒被设想为多功能的“智能药物递送系统”。纳米系统正在开发为包含细胞靶向分子,细胞内重靶向分子,分子生物传感器分子以及药物/酶/基因疗法的多层纳米颗粒(纳米晶体,纳米胶囊)。这些“纳米医学系统”正在被构建为自主的,就像今天的疫苗一样,但是将具有复杂的靶向,传感和反馈控制系统-比传统的基于抗体的疗法复杂得多。纳米医学的基本概念不仅仅是通过手术,放射疗法或化学疗法杀死所有异常细胞。相反,它是在适当的时候一次固定一个细胞,以保存和重建器官系统。当不应该固定细胞时,例如在未适当修复的细胞可能会产生癌细胞的情况下,纳米医学疗法将是诱导那些细胞凋亡以消除它们,而炎症免疫反应系统不会对细胞产生有害的旁观者反应。坏死细胞或因外伤或受伤而死亡的细胞。纳米医学的最终目的是将诊断和治疗方法结合到“实时医学”中,并尽可能使用体内细胞计数技术进行诊断和治疗。这些多组分纳米颗粒的许多单个组分已经在体外和离体细胞和组织系统中起作用。集成纳米医学系统的构建工作已经开始。

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