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基于聚(2-恶唑啉)的核交联星形聚合物:合成及药物递送应用

Poly(2-oxazoline)-based core cross-linked star polymers: synthesis and drug delivery applications.

作者信息

Alkattan Nedah, Alasmael Noura, Ladelta Viko, Khashab Niveen M, Hadjichristidis Nikos

机构信息

Polymer Synthesis Laboratory, Chemistry Program, KAUST Catalysis Center, Physical Sciences and Engineering Division, King Abdullah University of Science and Technology (KAUST) Thuwal 23955 Saudi Arabia +966-(0)12-8080789.

Refining and Petrochemical Technologies Institute, King Abdulaziz City for Science and Technology P. O Box 6086 Riyadh 11442 Saudi Arabia.

出版信息

Nanoscale Adv. 2023 Apr 5;5(10):2794-2803. doi: 10.1039/d3na00116d. eCollection 2023 May 16.

Abstract

Poly(2-oxazoline)s (POxs) are promising platforms for drug delivery applications due to their biocompatibility and stealth properties. In addition, the use of core cross-linked star (CCS) polymers based on POxs is expected to enhance drug encapsulation and release performances. In this study, we employed the "arm-first" strategy to synthesize a series of amphiphilic CCS [poly(2-methyl-2-oxazoline)]--poly(2,2'-(1,4-phenylene)bis-2-oxazoline)-cross-link/copolymer-(2--butyl-2-oxazoline)s (PMeOx)--P(PhBisOx-/-ButOx)s by using microwave-assisted cationic ring-opening polymerization (CROP). First, PMeOx, as the hydrophilic arm, was synthesized by CROP of MeOx using methyl tosylate as the initiator. Subsequently, the living PMeOx was used as the macroinitiator to initiate the copolymerization/core-crosslinking reaction of ButOx and PhBisOx to form CCS POxs having a hydrophobic core. The molecular structures of the resulting CCS POxs were characterized by size exclusion chromatography and nuclear magnetic resonance spectroscopy. The CCS POxs were loaded with the anti-cancer drug doxorubicin (DOX), and the loading was detected by UV-vis spectrometry, dynamic light scattering, and transmission electron microscopy. studies showed that DOX release at pH 5.2 was faster than that at pH 7.1. The cytotoxicity study using HeLa cells revealed that the neat CCS POxs are compatible with the cells. In contrast, the DOX-loaded CCS POxs exhibited a cytotoxic effect in a concentration-dependent manner in HeLa cells, which strongly supports that the CSS POxs are potential candidates for drug delivery applications.

摘要

聚(2-恶唑啉)(POxs)因其生物相容性和隐身特性,是药物递送应用中很有前景的平台。此外,基于POxs的核交联星形(CCS)聚合物有望提高药物包封和释放性能。在本研究中,我们采用“先臂法”策略,通过微波辅助阳离子开环聚合(CROP)合成了一系列两亲性CCS [聚(2-甲基-2-恶唑啉)] - 聚(2,2'-(1,4-亚苯基)双-2-恶唑啉)-交联/共聚物-(2-丁基-2-恶唑啉)(PMeOx)-P(PhBisOx-/-ButOx)。首先,以对甲苯磺酸甲酯为引发剂,通过MeOx的CROP合成了作为亲水臂的PMeOx。随后,将活性PMeOx用作大分子引发剂,引发ButOx和PhBisOx的共聚/核交联反应,形成具有疏水核的CCS POxs。通过尺寸排阻色谱和核磁共振光谱对所得CCS POxs的分子结构进行了表征。将抗癌药物阿霉素(DOX)负载到CCS POxs中,并通过紫外可见光谱、动态光散射和透射电子显微镜检测负载情况。研究表明,DOX在pH 5.2时的释放速度比在pH 7.1时快。使用HeLa细胞进行的细胞毒性研究表明,纯CCS POxs与细胞相容。相比之下,负载DOX的CCS POxs在HeLa细胞中以浓度依赖性方式表现出细胞毒性作用,这有力地支持了CSS POxs是药物递送应用的潜在候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9834/10187039/0d0ff9d7e065/d3na00116d-s1.jpg

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