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手性纳米二氧化硅药物递送系统与肠黏膜发生立体选择性相互作用,以改善难溶性药物的口服吸收。

Chiral Nanosilica Drug Delivery Systems Stereoselectively Interacted with the Intestinal Mucosa to Improve the Oral Adsorption of Insoluble Drugs.

作者信息

Chen Xuchun, Cheng Ying, Pan Qi, Wu Lan, Hao Xinyao, Bao Zhiye, Li Xitan, Yang Mingshi, Luo Qiuhua, Li Heran

机构信息

Department of Organ Transplantation and Hepatobiliary, Key Laboratory of Organ Transplantation of Liaoning Province, The First Hospital of China Medical University, Shenyang 110001, China.

Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang 110016, China.

出版信息

ACS Nano. 2023 Feb 28;17(4):3705-3722. doi: 10.1021/acsnano.2c10818. Epub 2023 Feb 14.

Abstract

Chiral nanoparticles (NPs) with nanoscale rough surfaces have enormous application prospects in drug delivery. However, the stereoselective interactions between the chiral NPs and biosurfaces remain challenging and mysterious. Herein, we designed mesoporous silica nanocarriers (l/d/dl-TA-PEI@CMSN) exhibiting the same structural parameters (hydrophilic, electroneutral, spherical NPs, ∼120 nm) but different geometrical chirality as oral nanodrug delivery systems (Nano-DDS) for insoluble drugs nimesulide (NMS) and ibuprofen (IBU) and demonstrated their stereoselective interactions with the intestinal mucosa, that is, l-TA-PEI@CMSN as well as Nano-DDS in the l-configuration displayed apparent superior behaviors in multiple microprocesses associated with oral adsorption, including adhesion, penetration, adsorption, retention and uptake, causing by the stereomatching between the chiral mesostructures of NPs and the inherent chiral topologies of the biosurfaces. As hosting systems, l/d/dl-TA-PEI@CMSN effectively incorporated drugs in amorphous states and helped to overcome the stability, solubility and permeability bottlenecks of drugs. Subsequently, Nano-DDS in the l-configuration (including IBU/l-TA-PEI@CMSN and NMS/d-TA-PEI@CMSN owing to a chiral inversion) showed higher oral delivery efficiency of NMS and IBU evidenced by the larger relative bioavailability (1055.06% and 583.17%, respectively) and stronger anti-inflammatory and analgesic effects. In addition, l/d/dl-TA-PEI@CMSN were stable, nonirritative, biocompatible and biodegradable, benefiting for their clinical applications. These findings provided insights into the rational design of functionalized Nano-DDS and contributed to the further knowledge in the field of chiral pharmaceutical science.

摘要

具有纳米级粗糙表面的手性纳米颗粒(NPs)在药物递送方面具有巨大的应用前景。然而,手性纳米颗粒与生物表面之间的立体选择性相互作用仍然具有挑战性且神秘莫测。在此,我们设计了介孔二氧化硅纳米载体(l/d/dl-TA-PEI@CMSN),其具有相同的结构参数(亲水性、电中性、球形纳米颗粒,直径约120 nm)但不同的几何手性,作为口服纳米药物递送系统(Nano-DDS)用于难溶性药物尼美舒利(NMS)和布洛芬(IBU),并证明了它们与肠黏膜的立体选择性相互作用,即l-TA-PEI@CMSN以及l构型的Nano-DDS在与口服吸附相关的多个微过程中表现出明显优越的行为,包括粘附、渗透、吸附、保留和摄取,这是由纳米颗粒的手性介观结构与生物表面固有的手性拓扑结构之间的立体匹配所导致的。作为载药系统,l/d/dl-TA-PEI@CMSN有效地包载了无定形状态的药物,并有助于克服药物的稳定性、溶解性和渗透性瓶颈。随后,l构型的Nano-DDS(包括由于手性翻转而形成的IBU/l-TA-PEI@CMSN和NMS/d-TA-PEI@CMSN)显示出更高的NMS和IBU口服递送效率,相对生物利用度更高(分别为1055.06%和583.17%)以及更强的抗炎和镇痛作用证明了这一点。此外,l/d/dl-TA-PEI@CMSN稳定、无刺激性、具有生物相容性且可生物降解,有利于其临床应用。这些发现为功能化Nano-DDS的合理设计提供了见解,并有助于在手性药物科学领域获得更多知识。

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