Makela Ashley V, Tundo Anthony, Liu Huiping, Schneider Doug, Hermiston Terry, Khodakivskyi Pavlo, Goun Elena, Contag Christopher H
Institute for Quantitative Health Science and Engineering, Michigan State University, East Lansing MI.
Department of Pharmacology and Medicine, Northwestern University Feinberg School of Medicine, Chicago, IL.
bioRxiv. 2024 Nov 12:2024.01.12.575071. doi: 10.1101/2024.01.12.575071.
Cancer stem cells (CSCs) drive tumorigenesis, are responsible for metastasis, and resist conventional therapies thus posing significant treatment challenges. CSCs reside in hypoxic tumor regions and therefore, effective therapies must target CSCs within this specific microenvironment. CSCs are characterized by limited distinguishable features, however, surface displayed phosphatidylserine (PS) appears to be characteristic of stem cells and offers a potential target. GlaS, a truncated coagulation protein that is internalized after binding PS, was investigated for intracellular delivery of molecular payloads to CSCs. Intracellular delivery via GlaS was enhanced in patient-derived CD44+ mammary CSCs under hypoxic conditions relative to physoxia or hyperoxia. , GlaS successfully targeted hypoxic tumor regions, and functional delivery of molecular cargo was confirmed using luciferin conjugated to GlaS via a disulfide linkage (GlaS-SS-luc), which releases luciferin upon intracellular glutathione reduction. Bioluminescence imaging demonstrated effective GlaS-mediated delivery of luciferin, a model drug, to CSCs in culture and . These findings offer the promise of directed delivery of therapeutic agents to intracellular targets in CSCs.
癌症干细胞(CSCs)驱动肿瘤发生,导致转移,并对传统疗法产生抗性,从而带来重大的治疗挑战。癌症干细胞存在于缺氧的肿瘤区域,因此,有效的治疗方法必须针对这个特定微环境中的癌症干细胞。癌症干细胞具有有限的可区分特征,然而,表面展示的磷脂酰丝氨酸(PS)似乎是干细胞的特征,并提供了一个潜在的靶点。GlaS是一种截短的凝血蛋白,在结合PS后被内化,被研究用于将分子载荷细胞内递送至癌症干细胞。在缺氧条件下,相对于常氧或高氧,通过GlaS的细胞内递送在患者来源的CD44+乳腺癌症干细胞中增强。此外,GlaS成功靶向缺氧肿瘤区域,并使用通过二硫键与GlaS偶联的荧光素(GlaS-SS-luc)证实了分子货物的功能性递送,其在细胞内谷胱甘肽还原时释放荧光素。生物发光成像证明了GlaS介导的模型药物荧光素有效地递送至培养中的癌症干细胞。这些发现为将治疗剂定向递送至癌症干细胞中的细胞内靶点带来了希望。