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纳米技术、纳米医学与新型有效癌症治疗方法的研发。

Nanotechnology, nanomedicine, and the development of new, effective therapies for cancer.

作者信息

Kawasaki Ernest S, Player Audrey

机构信息

National Cancer Institute, Gaithersburg, Maryland, USA.

出版信息

Nanomedicine. 2005 Jun;1(2):101-9. doi: 10.1016/j.nano.2005.03.002.

Abstract

Cancer is the leading cause of death in the United States among people younger than 85 years, and for the first time has surpassed heart disease as the number one killer. This worrisome statistic has resulted not from an increase in the incidence of cancer, but because deaths from heart disease have dropped nearly in half while the number of cancer-related deaths has remained about the same. This fact accentuates the need for a new generation of more effective therapies for cancer. In this review, the development of new therapies will be discussed in the context of advances in nanotechnologies related to cancer detection, analysis, diagnosis, and therapeutic intervention. First, several nanoanalytical methods, such as the use of quantum dots in detection and imaging of cancer, will be described. These techniques will be essential to the process of precisely describing cancer at the level of the cell and whole organism. Second, examples of how nanotechnologies can be used in the development of new therapies will be given, including methods that might allow for more efficient and accurate drug delivery and rationally designed, targeted drugs. Finally, a new initiative--the National Cancer Institute Alliance for Nanotechnology in Cancer--will be described and discussed with respect to the scientific issues, policies, and funding.

摘要

癌症是美国85岁以下人群的首要死因,并且首次超过心脏病成为头号杀手。这一令人担忧的统计数据并非源于癌症发病率的上升,而是因为心脏病死亡人数几乎减半,而癌症相关死亡人数却基本保持不变。这一事实凸显了对新一代更有效癌症治疗方法的需求。在这篇综述中,将在与癌症检测、分析、诊断和治疗干预相关的纳米技术进展的背景下讨论新疗法的发展。首先,将描述几种纳米分析方法,例如量子点在癌症检测和成像中的应用。这些技术对于在细胞和整个生物体水平上精确描述癌症的过程至关重要。其次,将给出纳米技术如何用于开发新疗法的例子,包括可能实现更高效、准确的药物递送以及合理设计的靶向药物的方法。最后,将描述并讨论一项新举措——美国国立癌症研究所癌症纳米技术联盟——涉及的科学问题、政策和资金。

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