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Enzyme-responsive intracellular controlled release using nanometric silica mesoporous supports capped with 'saccharides'

机译:使用“糖”封端的纳米二氧化硅介孔载体对酶促反应的细胞内控释

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The synthesis of new capped silica mesoporous nanoparticles for on-command delivery applications is described. The gate-like functional hybrid systems consisted of nanoscopic MCM-41-based materials functionalized on the pore outlets with different "saccharide" derivatives and a dye contained in the mesopores. A series of hydrolyzed starch products as saccharides were selected. The mesoporous silica nanoparticles S1, S2, and S3 containing the grafted starch derivatives Glucidex 47, Gludicex 39, and Glucidex 29 were synthesized. Additionally, for comparative purposes solid S4 containing lactose was prepared. Delivery studies in pure water in the presence of pancreatin or β-d-galactosidase were carried out for S1-S3 and S4, respectively. S1, S2, and especially S3 showed very low release in the absence of enzyme, but displayed cargo delivery in the presence of the corresponding enzyme. Moreover, nanoparticles of S1 were used to study the controlled release of the dye in intracellular media. Cell viability assays using HeLa and LLC-PK1 cells indicated that S1 nanoparticles were devoid of unspecific cell toxicity. The endocytosis process for S1 nanoparticle internalization in HeLa cells was confirmed, and the anchored starch was degraded by the lysosomal enzymes. Furthermore, a new mesoporous silica nanoparticle functionalized with Glucidex 47 and loaded with a cytotoxic, S1-DOX, was developed. The cell viability with S1-DOX decreased due to the internalization of the nanoparticle, enzyme-dependent opening of the saccharide molecular gate and the consequent release of the cytotoxic agent. As far as the authors know, this is the first example of enzyme-induced in-cell delivery using capped silica mesoporous nanoparticles.
机译:描述了用于命令递送应用的新的封端的二氧化硅介孔纳米颗粒的合成。门样功能杂化系统由纳米MCM-41基材料组成,这些材料在孔出口处功能化,具有不同的“糖”衍生物和中孔中所含的染料。选择了一系列水解淀粉产物作为糖。合成了包含接枝淀粉衍生物Glucidex 47,Gludicex 39和Glucidex 29的中孔二氧化硅纳米粒子S1,S2和S3。另外,出于比较目的,制备了含乳糖的固体S4。在存在胰酶或β-d-半乳糖苷酶的情况下,分别在纯水中对S1-S3和S4进行了递送研究。 S1,S2,尤其是S3在不存在酶的情况下显示出极低的释放,但在存在相应酶的情况下显示出货物的输送。此外,S1的纳米粒子被用来研究染料在细胞内介质中的控制释放。使用HeLa和LLC-PK1细胞的细胞活力分析表明,S1纳米颗粒没有非特异性细胞毒性。证实了HeLa细胞内S1纳米颗粒内在化的内吞过程,并且溶酶体酶降解了锚定淀粉。此外,开发了一种新的介孔二氧化硅纳米颗粒,该纳米颗粒用Glucidex 47功能化并装载了细胞毒性S1-DOX。由于纳米粒子的内在化,糖分子门的酶依赖性开放以及随之而来的细胞毒性剂的释放,具有S1-DOX的细胞活力下降。据作者所知,这是使用封端的二氧化硅介孔纳米粒子进行酶诱导的细胞内递送的第一个例子。

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