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Targeting tumor vascularization: promising strategies for vascular normalization

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SPRINGER
DOI: 10.1007/s00432-021-03701-8

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Angiogenesis; Angiogenic switch; Tumor vessel normalization; Hierarchical treatment

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资金

  1. National Natural Science Foundation of China [81772694]

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Tumor recurrence often results from an abnormal microenvironment, such as the presence of pro-angiogenic factors and lack of pro-maturation factors in the tumor microenvironment. The coexistence of perfusion and hypoxic zones, as well as uneven blood vessel distribution, profoundly influence tumor development. Vascular normalization therapy can improve tumor oxygenation and substance transport, leading to better treatment outcomes and fewer side effects.
Tumor recurrence after the clinical cure of tumor often results from the presence of an abnormal microenvironment, including an aberrant vasculature. The tumor microenvironment is rich in pro-angiogenic factors but lacks pro-maturation factors. Pro-angiogenic conditions in the tumor microenvironment, such as hypoxia, are double-edged swords, promoting both the repair of normal tissues and the development of an abnormal blood vessel network. The coexistence of perfusion and hypoxic zones and uneven blood vessel distribution in tumor tissues profoundly influence tumor deterioration, recurrence, and metastasis. Traditional anti-angiogenic therapies have shown limited efficacy, and promote drug resistance, and even metastasis. In contrast, vascular normalization therapy induces a more physiological-like state, leading to better outcomes and fewer side effects. Vascular normalization entails modifying the tumor vascular system to improve tumor oxygenation and substance transport, thereby contributing to improving the efficacy of radiotherapy, chemotherapy, and immunotherapy. This review mainly focuses on the process of tumor vascularization; potential therapeutic targets, including cells, metabolism, signaling pathways, and angiogenesis-related genes; and possible strategies to normalize blood vessels through regulating tumor vessel generation, the development of tumor vessels, and blood vessel fusion and pruning.

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