Mensah Solomon A, Harding Ian C, Zhang Michelle, Jaeggli Michael P, Torchilin Vladimir P, Niedre Mark J, Ebong Eno E
Bioengineering Department, Northeastern University, Boston, Massachusetts.
Chemical Engineering Department, Northeastern University, Boston, Massachusetts.
AIChE J. 2019 Aug;65(8). doi: 10.1002/aic.16634. Epub 2019 May 9.
While it is known that cancer cell interactions with vascular endothelial cells (ECs) drive metastatic cancer cell extravasation from blood vessels into secondary tumor sites, the mechanisms of action are still poorly understood. Here, we tested the hypothesis that neuraminidase-induced degradation of EC surface glycocalyx (GCX), particularly the sialic acid (SA) residue components of the GCX, will substantially increase metastatic cancer cell attachment to ECs. To our knowledge, our study is the first to isolate the role of GCX SA residues in cancer cell attachment to the endothelium, which were found to be differentially affected by the presence of neuraminidase and to indeed regulate metastatic cancer cell homing to ECs. We hope that this work will eventually translate to identification of EC GCX-based cancer markers that can be therapeutically targeted to hinder the progression of metastasis.
虽然已知癌细胞与血管内皮细胞(ECs)的相互作用会驱动转移性癌细胞从血管外渗到继发性肿瘤部位,但其作用机制仍知之甚少。在此,我们检验了以下假设:神经氨酸酶诱导的EC表面糖萼(GCX)降解,特别是GCX的唾液酸(SA)残基成分,将显著增加转移性癌细胞与ECs的附着。据我们所知,我们的研究首次分离出GCX SA残基在癌细胞与内皮细胞附着中的作用,发现其受神经氨酸酶的存在影响不同,并确实调节转移性癌细胞归巢至ECs。我们希望这项工作最终能转化为鉴定基于EC GCX的癌症标志物,这些标志物可作为治疗靶点来阻碍转移进程。