Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, OH 43210, USA.
Department of Chemical and Biomolecular Engineering, The Johns Hopkins University, Maryland Hall 221, 3400 North Charles Street, Baltimore, MD, USA.
Angew Chem Int Ed Engl. 2023 Aug 14;62(33):e202306722. doi: 10.1002/anie.202306722. Epub 2023 Jul 10.
We herein describe the preparation, assembly, recognition characteristics, and biocompatibility of novel covalent basket cage CBC-11, composed of four molecular baskets linked to four trivalent aromatic amines through amide groups. The cage is tetrahedral in shape and similar in size to small proteins (M =8637 g/mol) with a spacious nonpolar interior for accommodating multiple guests. While 24 carboxylates at the outer surface of CBC-11 render it soluble in aqueous phosphate buffer (PBS) at pH=7.0, the amphiphilic nature prompts its assembly into nanoparticles (d=250 nm, DLS). Cryo-TEM examination of nanoparticles revealed their crystalline nature with wafer-like shapes and hexagonally arranged cages. Nanoparticulate CBC-11 traps anticancer drugs irinotecan and doxorubicin, with each cage binding up to four drug molecules in a non-cooperative manner. The inclusion complexation resulted in nanoparticles growing in size and precipitating. In media containing mammalian cells (HCT 116, human colon carcinoma), the IC value of CBC-11 was above 100 μM. While this work presents the first example of a large covalent organic cage operating in water at the physiological pH and forming crystalline nanoparticles, it also demonstrates its biocompatibility and potential to act as a polyvalent binder of drugs for their sequestration or delivery.
我们在此描述了新型共价篮状笼 CBC-11 的制备、组装、识别特性和生物相容性,该笼由四个通过酰胺基团连接到四个三价芳胺的分子篮组成。该笼呈四面体形状,大小与小蛋白相似(M =8637 g/mol),内部具有宽敞的非极性空间,可容纳多个客体。尽管 CBC-11 外表面的 24 个羧酸盐使其在 pH=7.0 的磷酸盐缓冲液(PBS)中具有水溶性,但两亲性促使其自组装成纳米颗粒(d=250nm,DLS)。纳米颗粒的冷冻 TEM 检查显示出其具有片状形状和六边形排列的笼状的结晶性质。纳米颗粒状 CBC-11 捕获抗癌药物伊立替康和阿霉素,每个笼以非协同的方式结合多达四个药物分子。包含络合导致纳米颗粒尺寸增大并沉淀。在含有哺乳动物细胞(HCT 116,人结肠癌细胞)的介质中,CBC-11 的 IC 值高于 100μM。虽然这项工作首次展示了在生理 pH 值下在水中运行的大型共价有机笼,并形成结晶纳米颗粒,但它还证明了其生物相容性和作为药物多价结合物的潜力,用于药物的隔离或递送。