A bioinspired pseudopeptide-based intracellular delivery platform enhances the cytotoxicity of a ribosome-inactivating protein through multiple death pathways†

IF 5.7 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Gabriella Morrison, Nicole Henry, Michal Kopytynski and Rongjun Chen
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Abstract

Saporin is a 28 621 Da protein and plant toxin possessing rRNA N-glycosidase activity. Due to its potent ribosome-inactivating ability, saporin is commonly studied as an anticancer agent. However, its enzymatic activity is greatly hindered by its poor plasma membrane permeability. To overcome this barrier, we used a bioinspired intracellular delivery platform based on the pH-responsive pseudopeptide, poly(L-lysine isophthalamide) grafted with L-phenylalanine at a stoichiometric molar percentage of 50% (PP50). PP50 was co-incubated with saporin (PP50/saporin) in a mildly acidic pH environment to aid intracellular delivery and increase saporin's therapeutic potential. We demonstrated that PP50 greatly enhanced the cytotoxicity of saporin in the 2D monolayer of A549 cells and 3D A549 multicellular spheroids whilst remaining non-toxic when administered alone. To elucidate the mechanism of cell death, we assessed the activation of caspases, the inhibition of protein synthesis, the onset of apoptosis and the mechanism of PP50/saporin entry. Inhibition of protein synthesis and activation of caspases 3/7, 8 and 9 were found to occur before the onset of apoptosis and cell death. PP50/saporin was also shown to rely on micropinocytosis and caveolae-mediated endocytosis for cell entry. In addition, fluorescein isothiocyanate-labelled saporin (FITC-saporin) was localized within the cytoplasm and nuclei when delivered with Cyanine5-labelled PP50 (Cy5-PP50). Taken together, this suggests that multiple pathways are triggered to initiate apoptosis and cell death in cells treated with PP50/saporin. Therefore, these results make PP50 a potential intracellular delivery platform for the internalization of protein therapeutics.

Abstract Image

Abstract Image

基于生物启发的伪肽细胞内递送平台通过多种死亡途径增强核糖体失活蛋白的细胞毒性。
沙波林是一种 28 621 Da 蛋白质和植物毒素,具有 rRNA N-糖苷酶活性。由于具有强大的核糖体失活能力,沙波林通常被作为一种抗癌剂进行研究。然而,由于其质膜渗透性较差,其酶活性受到很大阻碍。为了克服这一障碍,我们使用了一种生物启发式细胞内递送平台,该平台基于 pH 响应型伪肽--聚(L-赖氨酸间苯二甲酰胺)与 L-苯丙氨酸接枝,接枝摩尔百分比为 50%(PP50)。PP50 与沙波林(PP50/沙波林)在弱酸性 pH 环境中共存,有助于细胞内输送并提高沙波林的治疗潜力。我们的研究表明,在二维单层 A549 细胞和三维 A549 多细胞球体内,PP50 可大大增强沙波林的细胞毒性,而单独给药时仍无毒性。为了阐明细胞死亡的机制,我们评估了 Caspases 的活化、蛋白质合成的抑制、细胞凋亡的发生以及 PP50/saporin 的进入机制。结果发现,在细胞凋亡和死亡开始之前,蛋白质合成受到抑制,caspases 3/7、8 和 9 被激活。研究还表明,PP50/saporin 依靠微小蛋白细胞和洞穴介导的内吞作用进入细胞。此外,异硫氰酸荧光素标记的 saporin(FITC-saporin)与 Cyanine5 标记的 PP50(Cy5-PP50)一起传递时,在细胞质和细胞核内定位。综上所述,这表明使用 PP50/沙波林处理的细胞会触发多种途径启动细胞凋亡和细胞死亡。因此,这些结果使 PP50 成为蛋白质治疗药物内化的潜在细胞内递送平台。
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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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