肿瘤内胶原线性化。
Collagen Linearization within Tumors.
机构信息
Department of Medicine (Oncology) and Department of Cell Biology and Physiology, ICCE Institute, Washington University, St. Louis, Missouri.
出版信息
Cancer Res. 2021 Nov 15;81(22):5611-5612. doi: 10.1158/0008-5472.CAN-21-2939.
It is now well appreciated that the tumor microenvironment (TME) surrounding primary tumors impacts tumor growth, progression (invasion and migration), and response to therapy. Broadly speaking, the TME is composed of cells (immune cells, activated fibroblasts, adipocytes, endothelial cells), acellular extracellular matrix (ECM), and cytokines or growth factors, some of which are bound or tethered to the ECM proteins. All these compartments undergo significant changes during tumor development and progression. Changes to the ECM, in particular, can dramatically influence cancer biology. This has stimulated the development of therapies that directly reverse or prevent the structural changes in the TME ECM that facilitate cancer progression. But to do so, in a rational manner, we need to understand how structural changes to tumor ECM arise, are remodeled, and function to facilitate tumor cell invasion and migration that give rise to metastatic disease, which is the main cause of cancer-related deaths. In this issue of , Janjanam and colleagues show that the ratio of WISP1/WISP2 in tumors is critical for ECM collagen fiber linearization and important for metastasis. WISP2 binds ECM collagen directly and can inhibit WISP1-mediated collagen linearization. These new results offer a new approach for targeting the altered collagen ECM in tumors by preventing or reversing collagen linearization..
现在人们已经充分认识到,原发性肿瘤周围的肿瘤微环境(TME)会影响肿瘤的生长、进展(侵袭和迁移)以及对治疗的反应。广义而言,TME 由细胞(免疫细胞、激活的成纤维细胞、脂肪细胞、内皮细胞)、无细胞细胞外基质(ECM)和细胞因子或生长因子组成,其中一些与 ECM 蛋白结合或固定。所有这些隔室在肿瘤发生和进展过程中都会发生显著变化。特别是 ECM 的变化可以极大地影响癌症生物学。这激发了开发直接逆转或预防促进癌症进展的 TME ECM 结构变化的治疗方法的发展。但是,要做到这一点,我们需要以合理的方式了解肿瘤 ECM 的结构变化是如何产生的,如何重塑的,以及如何发挥作用以促进肿瘤细胞的侵袭和迁移,从而导致转移性疾病,这是癌症相关死亡的主要原因。在本期杂志中,Janjanam 及其同事表明,肿瘤中 WISP1/WISP2 的比值对于 ECM 胶原纤维线性化至关重要,对于转移也很重要。WISP2 直接结合 ECM 胶原,可抑制 WISP1 介导的胶原线性化。这些新结果为通过防止或逆转胶原线性化来靶向肿瘤中改变的胶原 ECM 提供了一种新方法。