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Exploiting a New Approach to Destroy the Barrier of Tumor Microenvironment: Nano-Architecture Delivery Systems

Journal

MOLECULES
Volume 26, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/molecules26092703

Keywords

tumor microenvironment; targeted therapy; nanoparticles; nano therapeutics; tumor imaging

Funding

  1. Science and Technology Commission of Shanghai Municipality [14DZ2261100, 15DZ1940106]
  2. Joint Project of Health and Family Planning Committee of Pudong New Area [PW2017D-10]
  3. National Natural Science Foundation of China [81860547, 81573008, 21671150, 21877084, 81171646, 31170776, 21472139]

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Recent research indicates that the tumor microenvironment (TME) plays a crucial role in tumor occurrence, proliferation, and metastasis. Researchers are increasingly focusing on targeting TME to prevent tumor development. Stimulus-responsive intelligent nanostructures designed based on TME have attracted attention in anti-tumor drug delivery systems.
Recent findings suggest that tumor microenvironment (TME) plays an important regulatory role in the occurrence, proliferation, and metastasis of tumors. Different from normal tissue, the condition around tumor significantly altered, including immune infiltration, compact extracellular matrix, new vasculatures, abundant enzyme, acidic pH value, and hypoxia. Increasingly, researchers focused on targeting TME to prevent tumor development and metastasis. With the development of nanotechnology and the deep research on the tumor environment, stimulation-responsive intelligent nanostructures designed based on TME have attracted much attention in the anti-tumor drug delivery system. TME-targeted nano therapeutics can regulate the distribution of drugs in the body, specifically increase the concentration of drugs in the tumor site, so as to enhance the efficacy and reduce adverse reactions, can utilize particular conditions of TME to improve the effect of tumor therapy. This paper summarizes the major components and characteristics of TME, discusses the principles and strategies of relevant nano-architectures targeting TME for the treatment and diagnosis systematically.

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