Suppr超能文献

用于癌症化学-光热疗法的含石墨烯基纳米材料的硫醇-马来酰亚胺水凝胶的研发

Development of Thiol-Maleimide hydrogels incorporating graphene-based nanomaterials for cancer chemo-photothermal therapy.

作者信息

Costa Francisco J P, Nave Micaela, Lima-Sousa Rita, Alves Cátia G, Melo Bruna L, Correia Ilídio J, de Melo-Diogo Duarte

机构信息

CICS-UBI - Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, 6200-506 Covilhã, Portugal.

CICS-UBI - Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, 6200-506 Covilhã, Portugal; CIEPQPF - Departamento de Engenharia Química, Universidade de Coimbra, 3030-790 Coimbra, Portugal.

出版信息

Int J Pharm. 2023 Mar 25;635:122713. doi: 10.1016/j.ijpharm.2023.122713. Epub 2023 Feb 9.

Abstract

Nano-sized materials have been widely explored in the biomedicine field, especially due to their ability to encapsulate drugs intended to be delivered to cancer cells. However, systemically administered nanomaterials face several barriers that can hinder their tumor-homing capacity. In this way, researchers are now focusing their efforts in developing technologies that can deliver the nanoparticles directly into the tumor tissue. Particularly, hydrogels assembled using Thiol-Maleimide Michael type additions are emerging for this purpose due to their capacity to incorporate high nanoparticles' doses in a compact 3D structure as well as good chemical selectivity, biocompatibility, and straightforward preparation. Nevertheless, such hydrogels have been mostly prepared using synthetic polymers, which is not ideal due to their poor biodegradability. In this work, a novel natural polymer-based Thiol-Maleimide hydrogel was produced for application in breast cancer chemo-photothermal therapy. To obtain natural polymers compatible with this crosslinking chemistry, Hyaluronic acid was endowed with Thiol groups and deacetylated Chitosan was grafted with Maleimide groups. Parallelly, Doxorubicin loaded Dopamine-reduced graphene oxide (DOX/DOPA-rGO) was prepared for attaining Near Infrared (NIR) light responsive chemo-photothermal nanoagents. By simply mixing Hyaluronic Acid-Thiol, deacetylated Chitosan-Maleimide and DOX/DOPA-rGO, Thiol-Maleimide crosslinked hydrogels incorporating this nanomaterial could be assembled (DOX/DOPA-rGO@TMgel). When breast cancer cells were incubated with DOPA-rGO@TMgel and exposed to NIR light (photothermal therapy), their viability was reduced to about 59 %. On the other hand, DOX/DOPA-rGO@TMgel (chemotherapy) reduced cancer cells' viability to 50 %. In stark contrast, the combined action of DOX/DOPA-rGO@TMgel and NIR light decreased breast cancer cells' viability to just 21 %, highlighting its chemo-photothermal potential.

摘要

纳米材料在生物医学领域已得到广泛研究,特别是因其具有封装旨在递送至癌细胞的药物的能力。然而,全身给药的纳米材料面临着几个可能阻碍其肿瘤归巢能力的障碍。因此,研究人员目前正致力于开发能够将纳米颗粒直接递送至肿瘤组织的技术。特别是,利用硫醇-马来酰亚胺迈克尔型加成反应组装的水凝胶正为此目的而兴起,因为它们能够在紧凑的三维结构中纳入高剂量的纳米颗粒,以及具有良好的化学选择性、生物相容性和简单的制备方法。然而,此类水凝胶大多使用合成聚合物制备,由于其生物降解性差,这并不理想。在这项工作中,制备了一种新型的基于天然聚合物的硫醇-马来酰亚胺水凝胶,用于乳腺癌的化学-光热治疗。为了获得与这种交联化学相容的天然聚合物,将硫醇基团赋予透明质酸,并将马来酰亚胺基团接枝到脱乙酰壳聚糖上。同时,制备了负载阿霉素的多巴胺还原氧化石墨烯(DOX/DOPA-rGO),以获得近红外(NIR)光响应化学-光热纳米剂。通过简单地混合透明质酸-硫醇、脱乙酰壳聚糖-马来酰亚胺和DOX/DOPA-rGO,可以组装包含这种纳米材料的硫醇-马来酰亚胺交联水凝胶(DOX/DOPA-rGO@TMgel)。当乳腺癌细胞与DOPA-rGO@TMgel孵育并暴露于近红外光(光热治疗)时,其活力降低至约59%。另一方面,DOX/DOPA-rGO@TMgel(化疗)将癌细胞活力降低至50%。与之形成鲜明对比的是,DOX/DOPA-rGO@TMgel与近红外光的联合作用将乳腺癌细胞活力降低至仅21%,突出了其化学-光热潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验