Patil Rameshwar, Sun Tao, Rashid Mohammad Harun, Israel Liron L, Ramesh Arshia, Davani Saya, Black Keith L, Ljubimov Alexander V, Holler Eggehard, Ljubimova Julia Y
Department of Neurosurgery, Cedars-Sinai Medical Center, Los Angeles, CA 90048, USA.
University of California Los Angeles, Los Angeles, CA 90095, USA.
Nanomaterials (Basel). 2021 Oct 28;11(11):2892. doi: 10.3390/nano11112892.
Glioblastoma (GBM) is the most prevalent primary brain cancer in the pediatric and adult population. It is known as an untreatable tumor in urgent need of new therapeutic approaches. The objective of this work was to develop multifunctional nanomedicines to treat GBM in clinical practice using combination therapy for several targets. We developed multifunctional nanopolymers (MNPs) based on a naturally derived biopolymer, poly(β-L-malic) acid, which are suitable for central nervous system (CNS) treatment. These MNPs contain several anticancer functional moieties with the capacity of crossing the blood-brain barrier (BBB), targeting GBM cells and suppressing two important molecular markers, tyrosine kinase transmembrane receptors EGFR/EGFRvIII and c-Myc nuclear transcription factor. The reproducible syntheses of MNPs where monoclonal antibodies are replaced with AP-2 peptide for effective BBB delivery were presented. The active anticancer inhibitors of mRNA/protein syntheses were Morpholino antisense oligonucleotides (AONs). Two ways of covalent AON-polymer attachments with and without disulfide bonds were explored. These MNPs bearing AONs to / and , as well as in a combination with the polymer-attached checkpoint inhibitor anti-PD-1 antibody, orchestrated a multi-pronged attack on intracranial mouse GBM to successfully block tumor growth and significantly increase survival of brain tumor-bearing animals.
胶质母细胞瘤(GBM)是儿童和成人中最常见的原发性脑癌。它被认为是一种急需新治疗方法的无法治愈的肿瘤。这项工作的目的是开发多功能纳米药物,以便在临床实践中使用针对多个靶点的联合疗法来治疗GBM。我们基于天然衍生的生物聚合物聚(β-L-苹果酸)开发了多功能纳米聚合物(MNP),其适用于中枢神经系统(CNS)治疗。这些MNP包含多个抗癌功能部分,能够穿过血脑屏障(BBB),靶向GBM细胞并抑制两个重要的分子标志物,即酪氨酸激酶跨膜受体EGFR/EGFRvIII和c-Myc核转录因子。展示了用AP-2肽替代单克隆抗体以实现有效BBB递送的MNP的可重复合成。mRNA/蛋白质合成的活性抗癌抑制剂是吗啉代反义寡核苷酸(AON)。探索了有和没有二硫键的AON与聚合物共价连接的两种方式。这些携带AON以及与聚合物连接的检查点抑制剂抗PD-1抗体联合使用的MNP,对颅内小鼠GBM发起了多管齐下的攻击,成功阻断了肿瘤生长并显著提高了荷脑肿瘤动物的存活率。