Center for Bioengineering and Tissue Regeneration, Department of Surgery, University of California, San Francisco (UCSF), San Francisco, California.
Departments of Anatomy, Bioengineering and Therapeutic Sciences, and Radiation Oncology, and The Eli and Edythe Broad Center of Regeneration Medicine and Stem Cell Research and The Helen Diller Family Comprehensive Cancer Center, UCSF, San Francisco, California.
Cancer Discov. 2017 Nov;7(11):1224-1237. doi: 10.1158/2159-8290.CD-16-0733. Epub 2017 Oct 16.
Biomechanical and biochemical cues within a tissue collaborate across length scales to direct cell fate during development and are critical for the maintenance of tissue homeostasis. Loss of tensional homeostasis in a tissue not only accompanies malignancy but may also contribute to oncogenic transformation. High mechanical stress in solid tumors can impede drug delivery and may additionally drive tumor progression and promote metastasis. Mechanistically, biomechanical forces can drive tumor aggression by inducing a mesenchymal-like switch in transformed cells so that they attain tumor-initiating or stem-like cell properties. Given that cancer stem cells have been linked to metastasis and treatment resistance, this raises the intriguing possibility that the elevated tissue mechanics in tumors could promote their aggression by programming their phenotype toward that exhibited by a stem-like cell. Recent findings argue that mechanical stress and elevated mechanosignaling foster malignant transformation and metastasis. Prolonged corruption of tissue tension may drive tumor aggression by altering cell fate specification. Thus, strategies that could reduce tumor mechanics might comprise effective approaches to prevent the emergence of treatment-resilient metastatic cancers.
组织内的生物力学和生化线索在长度尺度上协同作用,指导发育过程中的细胞命运,对于维持组织内稳态至关重要。组织张力的丧失不仅伴随着恶性肿瘤,而且可能导致致癌转化。实体瘤中的高机械应力会阻碍药物输送,并且可能另外驱动肿瘤进展并促进转移。从机制上讲,生物力学力可以通过诱导转化细胞发生类似间充质的转变,从而使它们获得肿瘤起始或干细胞样细胞特性,从而驱动肿瘤侵袭。鉴于癌症干细胞与转移和治疗抵抗有关,这就提出了一个有趣的可能性,即肿瘤中升高的组织力学可以通过将其表型编程为类似于干细胞样细胞的表型来促进其侵袭。最近的研究结果表明,机械应激和升高的机械信号促进了恶性转化和转移。组织张力的长期破坏可能通过改变细胞命运特化来驱动肿瘤侵袭。因此,降低肿瘤力学的策略可能构成预防治疗耐药性转移性癌症出现的有效方法。