Symposium on Nanostructured Materials for Future Therapy; ACS National Meeting; Salt Lake City, UT; March 2009
Symposium on Nanostructured Materials for Future Therapy; ACS National Meeting; Salt Lake City, UT; March 2009
批准号:
0903450
负责人:
Yoon Yeo
金额:
$0.4万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-01-01 至 2009-12-31
中文摘要
ID:MPS/dmr/bmat(7623)0903450 PI:Yeo,Yoon ORG:普渡大学题目:用于未来治疗的纳米材料电子优点:题为?用于未来治疗的纳米材料?将于2009年3月22日至26日在德克萨斯州盐湖城举行的第237届美国化学学会(ACS)全国会议上举行。这次研讨会是由美国化学学会的聚合物化学部主办的。本次研讨会将讨论纳米结构材料的开发、表征和应用方面的最新进展和问题,并承诺与健康相关。拟议的研讨会将讨论四个主要领域,重点是组装成纳米级的聚合物系统,其特定的生物功能主要来自这种结构:(1)具有受控细胞反应的新型聚合物系统;(2)具有治疗潜力的新型纳米结构系统;(3)组织与生物活性表面的接口;以及(4)创新的测量工具。这次研讨会的目标是为在这些重点领域工作的领导人和年轻研究人员提供机会,分享他们最近的进展、想法、挑战和解决方案,期望在一个领域开发的创新方法可以直接影响和促进其他领域的进步。研讨会的目标是:(1)突出纳米结构生物材料的设计、合成和表征方面的最新进展,以基本了解细胞生物学和在生物医学工程中的实际应用;(2)促进聚合物科学家、化学家、生物工程师、制药科学家和生物学家之间的对话,在不同领域之间建立联系和交流思想;以及(3)为包括初级教师、博士后研究员和研究生在内的年轻研究人员提供机会介绍他们最新的研究成果。新型聚合物设计和纳米技术的进步为设计和组织新的纳米结构材料提供了前所未有的机会。新的方法和工具有助于理解纳米结构材料对生物过程的影响。这些领域之间的合作努力在开发新的未来疗法方面有着巨大的希望。专题讨论会的四个重点领域在理解纳米结构材料的生物学后果以及应对化学和工程挑战的方法方面有着共同的兴趣。近年来,随着科学学科之间的界限开始变得模糊,在这样的环境中培训下一代年轻科学家的同时,展示杰出的跨学科调查人员的进步变得至关重要。这次研讨会将汇聚这一活跃领域中许多最强大和最有前途的研究人员,并促进他们在未来新疗法开发方面的交流和合作。布罗德影响:这次研讨会将通过促进聚合物科学家、化学家、生物工程师、制药科学家和生物学家之间的协同互动,对人类健康产生积极影响,这些科学家正在努力为未来的治疗开发新的纳米结构材料。这笔赠款将通过旅行奖励鼓励下一代科学家大量出席,从而促进拟议专题讨论会的广泛传播。
英文摘要
ID: MPS/DMR/BMAT(7623) 0903450 PI: Yeo, Yoon ORG: Purdue UniversityTitle: Nanostructured Materials for Future TherapyINTELLECTUAL MERIT: A symposium entitled ?Nanostructured Materials for Future Therapy? is being organized to be held at the 237th American Chemical Society (ACS) National Meeting between March 22nd and 26th, 2009, in Salt Lake City, UT. The symposium is sponsored by the Division of Polymer Chemistry (POLY) within the ACS. This symposium will address recent advances and issues in development, characterization, and application of nanostructured materials with health-related promises. The proposed symposium will discuss four thrust areas, focusing on polymeric systems that are assembled to nanometer-scale and whose specific biological functions largely arise from such structure: (i) Novel polymeric systems with controlled cellular responses; (ii) Novel nanostructured systems with therapeutic potential; (iii) Interfacing tissues with bioactive surfaces; and (iv) Innovative measurement tools. The goal of this symposium is to provide opportunities for both leaders and young investigators working in these focus areas to share their recent advances, ideas, challenges, and solutions with the expectation that innovative approaches being developed in one area can directly impact and facilitate advances in the others. The objectives of the symposium are: (1) To highlight recent advances in the design, synthesis and characterization of nanostructured biomaterials for fundamental understanding of cell biology and practical applications in biomedical engineering; (2) To promote dialogues between polymer scientists, chemists, bioengineers, pharmaceutical scientists, and biologists, establish contacts and exchange ideas among different areas; and (3) To provide opportunities for young investigators including junior faculty, post-doctoral fellows, and graduate students to present their most updated research results. Advances in novel polymer design and nanotechnology have provided unprecedented opportunities to design and organize new nanostructured materials. New methodologies and tools have facilitated understanding the influence of the nanostructured materials on biological processes. Collaborative efforts among these areas hold great promises in developing new future therapy. The four focus areas of the symposium have shared interests in understanding the biological consequences of the nanostructured materials and approaches to addressing chemical and engineering challenges. As the lines between the scientific disciplines began to blur in recent years, it has become vital to showcase the advances of eminent cross-disciplinary investigators while training young scientists of the next generation in such an environment. This symposium will bring together many of the strongest and most promising researchers in this active field and promote their communications and collaborations toward development of new future therapy.BROADER IMPACTS: This symposium will positively affect human health by fostering synergistic interactions between polymer scientists, chemists, bioengineers, pharmaceutical scientists, and biologists, who are working toward development of new nanostructured materials for future therapy. This grant will contribute to broad dissemination of the proposed symposium by encouraging a large attendance of next-generation scientists through travel awards.
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