DWI-Leibniz Institute for Interactive Material Research, RWTH Aachen University, Aachen, 52074, Germany.
Max Planck Institute for Medical Research, Jahnstraße 29, Heidelberg, 69120, Germany.
Adv Healthc Mater. 2021 Oct;10(20):e2100812. doi: 10.1002/adhm.202100812. Epub 2021 Sep 6.
Despite profound advances in treatment approaches, gliomas remain associated with very poor prognoses. The residual cells after incomplete resection often migrate and proliferate giving a seed for highly resistant gliomas. The efficacy of chemotherapeutic drugs is often strongly limited by their poor selectivity and the blood brain barrier (BBB). Therefore, the development of therapeutic carrier systems for efficient transport across the BBB and selective delivery to tumor cells remains one of the most complex problems facing molecular medicine and nano-biotechnology. To address this challenge, a stimuli sensitive nanogel is synthesized using pre-polymer approach for the effective delivery of nano-irradiation. The nanogels are cross-linked via matrix metalloproteinase (MMP-2,9) substrate and armed with Auger electron emitting drug 5-[ I]Iodo-4"-thio-2"-deoxyuridine ([ I]ITdU) which after release can be incorporated into the DNA of tumor cells. Functionalization with diphtheria toxin receptor ligand allows nanogel transcytosis across the BBB at tumor site. Functionalized nanogels efficiently and increasingly explore transcytosis via BBB co-cultured with glioblastoma cells. The subsequent nanogel degradation correlates with up-regulated MMP2/9. Released [ I]ITdU follows the thymidine salvage pathway ending in its incorporation into the DNA of tumor cells. With this concept, a highly efficient strategy for intracellular delivery of radiopharmaceuticals across the challenging BBB is presented.
尽管在治疗方法上取得了重大进展,但神经胶质瘤的预后仍然很差。不完全切除后的残留细胞常常迁移和增殖,为高度耐药的神经胶质瘤提供了种子。化疗药物的疗效往往受到其选择性差和血脑屏障 (BBB) 的严重限制。因此,开发高效透过 BBB 并选择性递送至肿瘤细胞的治疗载体系统仍然是分子医学和纳米生物技术面临的最复杂问题之一。为了解决这一挑战,我们采用预聚物方法合成了一种对刺激敏感的纳米凝胶,用于有效递送电纳米辐射。纳米凝胶通过基质金属蛋白酶 (MMP-2,9) 底物交联,并武装了具有 Auger 电子发射药物 5-[I]碘-4”-硫代-2”-脱氧尿苷 ([I]ITdU),释放后可掺入肿瘤细胞的 DNA 中。与白喉毒素受体配体的功能化允许纳米凝胶在肿瘤部位穿过 BBB 进行转胞吞作用。功能化纳米凝胶通过与神经胶质瘤细胞共培养可有效地并逐渐增加穿过 BBB 的转胞吞作用。随后的纳米凝胶降解与上调的 MMP2/9 相关。释放的 [I]ITdU 遵循胸苷补救途径,最终掺入肿瘤细胞的 DNA 中。通过这种概念,提出了一种高效的策略,用于通过具有挑战性的 BBB 将放射性药物递送到细胞内。