Bruckman Michael A, Czapar Anna E, VanMeter Allen, Randolph Lauren N, Steinmetz Nicole F
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH, United States.
Department of Pathology, Case Western Reserve University, Cleveland, OH, United States.
J Control Release. 2016 Jun 10;231:103-13. doi: 10.1016/j.jconrel.2016.02.045. Epub 2016 Mar 3.
Drug delivery systems are required for drug targeting to avoid adverse effects associated with chemotherapy treatment regimes. Our approach is focused on the study and development of plant virus-based materials as drug delivery systems; specifically, this work focuses on the tobacco mosaic virus (TMV). Native TMV forms a hollow, high aspect-ratio nanotube measuring 300×18nm with a 4nm-wide central channel. Heat-transformation can be applied to TMV yielding spherical nanoparticles (SNPs) measuring ~50nm in size. While bioconjugate chemistries have been established to modify the TMV rod, such methods have not yet been described for the SNP platform. In this work, we probed the reactivity of SNPs toward bioconjugate reactions targeting lysine, glutamine/aspartic acid, and cysteine residues. We demonstrate functionalization of SNPs using these chemistries yielding efficient payload conjugation. In addition to covalent labeling techniques, we developed encapsulation techniques, where the cargo is loaded into the SNP during heat-transition from rod-to-sphere. Finally, we developed TMV and SNP formulations loaded with the chemotherapeutic doxorubicin, and we demonstrate the application of TMV rods and spheres for chemotherapy delivery targeting breast cancer.
为了实现药物靶向以避免与化疗治疗方案相关的不良反应,需要药物递送系统。我们的方法专注于研究和开发基于植物病毒的材料作为药物递送系统;具体而言,这项工作聚焦于烟草花叶病毒(TMV)。天然TMV形成一种中空的、高纵横比的纳米管,尺寸为300×18nm,中心通道宽4nm。热转化可应用于TMV,产生尺寸约为50nm的球形纳米颗粒(SNP)。虽然已经建立了生物共轭化学方法来修饰TMV棒,但尚未针对SNP平台描述此类方法。在这项工作中,我们探究了SNP对靶向赖氨酸、谷氨酰胺/天冬氨酸和半胱氨酸残基的生物共轭反应的反应性。我们展示了使用这些化学方法对SNP进行功能化,从而实现有效的有效载荷共轭。除了共价标记技术,我们还开发了封装技术,即在从棒到球的热转变过程中将货物装载到SNP中。最后,我们开发了负载化疗药物阿霉素的TMV和SNP制剂,并展示了TMV棒和球在乳腺癌化疗递送中的应用。