Center for Controlled Chemical Delivery, University of Utah, Salt Lake City, UT 84112, USA.
Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, Salt Lake City, UT 84112, USA.
Molecules. 2021 Jul 31;26(15):4658. doi: 10.3390/molecules26154658.
Recently, we designed an inventive paradigm in nanomedicine-drug-free macromolecular therapeutics (DFMT). The ability of DFMT to induce apoptosis is based on biorecognition at cell surface, and crosslinking of receptors without the participation of low molecular weight drugs. The system is composed of two nanoconjugates: a bispecific engager, antibody or Fab' fragment-morpholino oligonucleotide (MORF1) conjugate; the second nanoconjugate is a multivalent effector, human serum albumin (HSA) decorated with multiple copies of complementary MORF2. Here, we intend to demonstrate that DFMT is a platform that will be effective on other receptors than previously validated CD20. We appraised the impact of daratumumab (DARA)- and isatuximab (ISA)-based DFMT to crosslink CD38 receptors on CD38+ lymphoma (Raji, Daudi) and multiple myeloma cells (RPMI 8226, ANBL-6). The biological properties of DFMTs were determined by flow cytometry, confocal fluorescence microscopy, reactive oxygen species determination, lysosomal enlargement, homotypic cell adhesion, and the hybridization of nanoconjugates. The data revealed that the level of apoptosis induction correlated with CD38 expression, the nanoconjugates meet at the cell surface, mitochondrial signaling pathway is strongly involved, insertion of a flexible spacer in the structure of the macromolecular effector enhances apoptosis, and simultaneous crosslinking of CD38 and CD20 receptors increases apoptosis.
最近,我们在纳米医学中设计了一种创新的范式——无药物大分子治疗学(DFMT)。DFMT 诱导细胞凋亡的能力基于细胞表面的生物识别,以及受体的交联,而不涉及小分子药物的参与。该系统由两种纳米复合物组成:双特异性结合物,抗体或 Fab'片段-吗啉代寡核苷酸(MORF1)缀合物;第二种纳米复合物是多价效应物,人血清白蛋白(HSA)通过多个互补 MORF2 拷贝进行修饰。在这里,我们旨在证明 DFMT 是一个平台,它将对除以前验证的 CD20 以外的其他受体有效。我们评估了基于达妥木单抗(DARA)和伊沙妥昔单抗(ISA)的 DFMT 交联 CD38 受体对 CD38+淋巴瘤(Raji、Daudi)和多发性骨髓瘤细胞(RPMI 8226、ANBL-6)的影响。通过流式细胞术、共聚焦荧光显微镜、活性氧物种测定、溶酶体增大、同源细胞黏附以及纳米复合物杂交来确定 DFMT 的生物学特性。数据表明,细胞凋亡诱导水平与 CD38 表达相关,纳米复合物在细胞表面相遇,线粒体信号通路强烈参与,在大分子效应物的结构中插入柔性间隔物可增强细胞凋亡,同时交联 CD38 和 CD20 受体可增加细胞凋亡。