Katti Preeya D, Jasuja Haneesh
American University of Caribbean, Miramar, FL 33025, USA.
Sanofi, Boston, MA 02142, USA.
Polymers (Basel). 2024 Feb 23;16(5):617. doi: 10.3390/polym16050617.
Cancer is a leading cause of death worldwide and results in nearly 10 million deaths each year. The global economic burden of cancer from 2020 to 2050 is estimated to be USD 25.2 trillion. The spread of cancer to distant organs through metastasis is the leading cause of death due to cancer. However, as of today, there is no cure for metastasis. Tissue engineering is a promising field for regenerative medicine that is likely to be able to provide rehabilitation procedures to patients who have undergone surgeries, such as mastectomy and other reconstructive procedures. Another important use of tissue engineering has emerged recently that involves the development of realistic and robust in vitro models of cancer metastasis, to aid in drug discovery and new metastasis therapeutics, as well as evaluate cancer biology at metastasis. This review covers the current studies in developing tissue-engineered metastasis structures. This article reports recent developments in in vitro models for breast, prostate, colon, and pancreatic cancer. The review also identifies challenges and opportunities in the use of tissue engineering toward new, clinically relevant therapies that aim to reduce the cancer burden.
癌症是全球主要死因,每年导致近1000万人死亡。2020年至2050年,全球癌症经济负担估计为25.2万亿美元。癌症通过转移扩散到远处器官是癌症相关死亡的主要原因。然而,截至目前,尚无治疗转移的方法。组织工程是再生医学中一个很有前景的领域,有望为接受过乳房切除术和其他重建手术的患者提供康复程序。组织工程最近出现了另一个重要用途,即开发逼真且强大的癌症转移体外模型,以辅助药物发现和新的转移治疗方法,以及评估转移时的癌症生物学。本综述涵盖了目前在开发组织工程转移结构方面的研究。本文报道了乳腺癌、前列腺癌、结肠癌和胰腺癌体外模型的最新进展。该综述还确定了在利用组织工程实现旨在减轻癌症负担的新的临床相关疗法方面所面临的挑战和机遇。