4.7 Review

Tumor Associated Macrophages and TAMs-Based Anti-Tumor Nanomedicines

Journal

ADVANCED HEALTHCARE MATERIALS
Volume 10, Issue 18, Pages -

Publisher

WILEY
DOI: 10.1002/adhm.202100590

Keywords

anti-tumor medicine; cell carriers; molecular mechanisms; nanomedicines; targeting; tumor associated macrophages

Funding

  1. National Key R&D Program of China [2017YFA0205600]
  2. National Natural Science Foundation of China [81690264, 81821004, 81703441, 81872809]
  3. Postdoctoral Research Foundation of China [2019TQ0010]

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Tumor associated macrophages (TAMs) are an important part of tumor microenvironment, playing a vital role in the occurrence, development, and metastasis of malignant tumors, and are closely associated with poor prognosis. Research on nanomedicine has made significant progress, and developing nano-drugs based on TAMs to suppress tumor growth is promising.
As an important part of tumor microenvironment, tumor associated macrophages (TAMs) play a vital role in the occurrence, development, invasion, and metastasis of many malignant tumors and can significantly promote the formation of tumor blood vessels and lymphatic vessels, hence TAMs are greatly associated with poor prognosis. The research on nanomedicine has achieved huge progress, and nano-drugs have been widely utilized to treat various diseases through different mechanisms. Therefore, developing nano-drugs that are based on TAMs-associated anti-tumor mechanisms to effectively suppress tumor growth is expected to be a promising research filed. This paper introduces relevant information about TAMs in terms of their origin, and their roles in tumor genesis, development and metastasis. Furthermore, TAMs-related anti-tumor nano-drugs are summarized. Specifically, a wide range of nano-drugs targeting at TAMs are introduced, and categorized according to their therapeutic mechanisms toward tumors. Additionally, various nano delivery platforms using TAMs as cell carriers which aim at inhibiting tumor growth are reviewed. These two parts elucidate that the exploration of nanomedicine is essential to the study on TAMs-related anti-tumor strategies. This review is also intended to provide novel ideas for in-depth investigation on anti-tumor molecular mechanisms and nano-drug delivery systems based on TAMs.

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