Graduate School of Materials Science and Engineering, Koç University, Rumelifeneri Yolu, Sariyer, Istanbul 34450, Turkey.
Division of Surgery and Interventional Science, Centre for Nanomedicine and Surgical Theranostics, University College London, Royal Free Campus, Rowland Hill Street, London NW3 2PE, U.K.
Inorg Chem. 2022 Feb 14;61(6):2846-2863. doi: 10.1021/acs.inorgchem.1c03298. Epub 2022 Feb 1.
Silver-indium-sulfide quantum dots (AIS QDs) have potential applications in many areas, including biomedicine. Their lack of regulated heavy metals, unlike many commercialized QDs, stands out as an advantage, but the necessity for alloyed or core-shell structures and related costly and sophisticated processes for the production of stable and high quantum yield aqueous AIS QDs are the current challenges. The present study demonstrates the one-step aqueous synthesis of simple AgInS QD compositions utilizing for the first time either a polyethyleneimine/2-mercaptopropionic acid (AIS-PEI/2MPA) mixture or only 2-mercaptopropionic acid (AIS-2MPA) as the stabilizing molecules, providing a AgInS portfolio consisting of cationic and anionic AIS QDs, respectively, and tuneable emission. Small AIS QDs with long-term stability and high quantum yields (19-23%) were achieved at a molar ratio of Ag/In/S 1/10/10 in water without any dopant or a semiconductor shell. The theranostic potential of these cationic and anionic AIS QDs was also evaluated in vitro. Non-toxic doses were determined, and fluorescence imaging potential was demonstrated. More importantly, these QDs were electrostatically loaded with zwitterionic 5-aminolevulinic acid (ALA) as a prodrug to enhance the tumor availability of ALA and to improve ALA-induced porphyrin photodynamic therapy (PDT). This is the first study investigating the influence of nanoparticle charge on ALA binding, release, and therapeutic efficacy. Surface charge was found to be more critical in cellular internalization and dark toxicity rather than drug loading and release. Both QDs provided enhanced ALA release at acidic pH but protected the prodrug at physiological pH, which is critical for tumor delivery of ALA, which suffers from low bioavailability. The PDT efficacy of the ALA-loaded AIS QDs was tested in 2D monolayers and 3D constructs of HT29 and SW480 human colon adenocarcinoma cancer cell lines. The incorporation of ALA delivery by the AIS QDs, which on their own do not cause phototoxicity, elicited significant cell death due to enhanced light-induced ROS generation and apoptotic/necrotic cell death, reducing the IC50 for ALA dramatically to about 0.1 and 0.01 mM in anionic and cationic AIS QDs, respectively. Combined with simple synthetic methods, the strong intracellular photoluminescence of AIS QDs, good biocompatibility of especially the anionic AIS QDs, and the ability to act as drug carriers for effective PDT signify that the AIS QDs, in particular AIS-2MPA, are highly promising theranostic QDs.
硫化银-铟-硫量子点(AIS QDs)在许多领域都有潜在的应用,包括生物医药。与许多商业化的量子点不同,它们不含受管制的重金属,这是一个优势,但为了生产稳定和高光量子产率的水溶 AIS QDs,需要合金或核壳结构,以及相关的昂贵和复杂的工艺,这是当前的挑战。本研究首次利用聚乙烯亚胺/2-巯基丙酸(AIS-PEI/2MPA)混合物或仅 2-巯基丙酸(AIS-2MPA)作为稳定分子,一步水相合成了简单的 AgInS QD 组成,分别提供了由阳离子和阴离子 AIS QDs 组成的 AgInS 组合,以及可调谐的发射。在摩尔比为 Ag/In/S 1/10/10 的水中,在没有任何掺杂剂或半导体壳的情况下,实现了具有长期稳定性和高光量子产率(19-23%)的小 AIS QD。还在体外评估了这些阳离子和阴离子 AIS QD 的治疗潜力。确定了无毒剂量,并证明了荧光成像的潜力。更重要的是,这些 QD 被静电加载了两性离子 5-氨基酮戊酸(ALA)作为前药,以提高 ALA 在肿瘤中的可用性,并改善 ALA 诱导的卟啉光动力疗法(PDT)。这是第一项研究纳米颗粒电荷对 ALA 结合、释放和治疗效果影响的研究。表面电荷在细胞内化和暗毒性中比药物负载和释放更为关键。两种 QD 在酸性 pH 下都提供了增强的 ALA 释放,但在生理 pH 下保护了前药,这对于 ALA 的肿瘤输送至关重要,因为 ALA 的生物利用度很低。ALA 负载的 AIS QD 的 PDT 疗效在 HT29 和 SW480 人结肠腺癌癌细胞系的 2D 单层和 3D 构建体中进行了测试。AIS QD 促进了 ALA 的递送,本身不会引起光毒性,由于增强了光诱导的 ROS 生成和凋亡/坏死细胞死亡,导致细胞死亡显著增加,使 ALA 的 IC50 分别降低到阴离子和阳离子 AIS QD 中的约 0.1 和 0.01 mM。结合简单的合成方法,AIS QD 具有强烈的细胞内光致发光、特别是阴离子 AIS QD 的良好生物相容性以及作为有效 PDT 的药物载体的能力,表明 AIS QD,特别是 AIS-2MPA,是很有前途的治疗诊断量子点。