Targeting Hyaluronan Synthesis in Cancer: A Road Less Travelled

Biologics Pub Date : 2023-12-12 DOI:10.3390/biologics3040022
Theodoros Karalis
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Abstract

Hyaluronan is one of the major components of the extracellular matrix and is involved in the regulation of multiple processes in both human physiology and disease. In human cancers, hyaluronan metabolism displays remarkable alterations, leading to the accumulation of large amounts of hyaluronan matrices in the tumoural tissues. The altered levels of hyaluronan in the tumours stem from the enhanced expression and activity of hyaluronan synthases in both tumour and stromal cells. Moreover, hyaluronidase activity is also upregulated in cancer, leading to the generation of lower molecular weight hyaluronan fragments that in turn assist tumour growth, neo-angiogenesis and the metastatic cascade. Hyaluronan accumulation in malignant tissues not only assists tumour growth and metastases but is also associated with worse outcomes in cancer patients. Therefore, targeting hyaluronan synthesis emerges as an interesting strategy that might be employed for cancer treatment. This review article summarises current evidence and discusses ways to move forward in the field of targeting hyaluronan synthesis for cancer therapy.
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针对癌症中的透明质酸合成:少有人走的路
透明质酸是细胞外基质的主要成分之一,参与调节人体生理和疾病的多个过程。在人类癌症中,透明质酸的新陈代谢发生了显著变化,导致大量透明质酸基质在肿瘤组织中积累。肿瘤中透明质酸水平的改变源于肿瘤细胞和基质细胞中透明质酸合成酶表达和活性的增强。此外,透明质酸酶的活性在癌症中也会上调,从而产生分子量较低的透明质酸片段,进而帮助肿瘤生长、新血管生成和转移。透明质酸在恶性组织中的积累不仅有助于肿瘤生长和转移,还与癌症患者的预后恶化有关。因此,以透明质酸合成为靶点是一种可用于癌症治疗的有趣策略。这篇综述文章总结了目前的证据,并讨论了如何在以透明质酸合成为目标的癌症治疗领域取得进展。
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