a Department of Pharmaceutics and Pharmaceutical Chemistry, Center for Controlled Chemical Delivery , University of Utah , Salt Lake City , UT , USA.
b Department of Biomedical Engineering , University of Utah , Salt Lake City , UT , USA.
J Drug Target. 2019 Jun-Jul;27(5-6):566-572. doi: 10.1080/1061186X.2018.1521414. Epub 2018 Dec 10.
Drug-free macromolecular therapeutics (DFMT) have been recently developed to treat non-Hodgkin lymphoma (NHL). It is a consecutive delivery of two nanoconjugates: (1) bispecific engager that pretargets surface CD20, and (2) multivalent effector polymer that hybridises with CD20-bound engagers. Without the need of low molecular weight drug, the hybridisation of morpholino oligonucleotide containing DFMT at NHL cell surface triggers CD20 crosslinking and subsequent apoptosis. We have previously determined various factors that affect the efficacy of DFMT regarding the synthetic structures. Here, we show that DFMT-mediated apoptosis is also influenced by the state of cells. Compared with other cell cycle states, cells arrested at G2/M phase exhibit enhanced CD20 expression, and have more sustainable CD20 binding by DFMT, resulting in a higher degree of DFMT-mediated CD20 crosslinking. Moreover, the anti-apoptotic Bcl-2 protein was phosphorylated in G2/M phase, thereby increasing the cell susceptibility to DFMT. As a result, DFMT mediated augmented apoptosis in G2/M phase cells. When DFMT was combined with a polymer-docetaxel conjugate that triggered G2/M blockage, a combinatorial apoptotic effect was achieved to induce programmed cell death. Our findings suggest the co-delivery of DFMT and G2/M inhibiting drug combinations may present a therapeutic advantage in NHL treatment.
无药物大分子治疗学(DFMT)最近被开发用于治疗非霍奇金淋巴瘤(NHL)。它是两种纳米缀合物的连续递呈:(1)双特异性结合物,预先靶向表面 CD20,(2)多价效应聚合物,与结合 CD20 的结合物杂交。不需要低分子量药物,DFMT 在 NHL 细胞表面的含吗啉代寡核苷酸的杂交引发 CD20 交联和随后的细胞凋亡。我们之前已经确定了影响 DFMT 疗效的各种因素,这些因素与合成结构有关。在这里,我们表明,DFMT 介导的细胞凋亡也受到细胞状态的影响。与其他细胞周期状态相比,处于 G2/M 期的细胞表现出增强的 CD20 表达,并且与 DFMT 的 CD20 结合更可持续,从而导致更高程度的 DFMT 介导的 CD20 交联。此外,抗凋亡 Bcl-2 蛋白在 G2/M 期被磷酸化,从而增加了细胞对 DFMT 的敏感性。结果,DFMT 在 G2/M 期细胞中介导增强的细胞凋亡。当 DFMT 与引发 G2/M 阻断的聚合物-多西紫杉醇缀合物联合使用时,实现了组合性凋亡效应,从而诱导程序性细胞死亡。我们的研究结果表明,DFMT 和 G2/M 抑制药物联合递送可能在 NHL 治疗中具有治疗优势。