Advancing gastric cancer treatment: nanotechnology innovations and future prospects.

IF 5.3 2区 医学 Q2 CELL BIOLOGY
Tengfei Yang, Lin Guo
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引用次数: 0

Abstract

Gastric cancer (GC) is the fifth most common cancer worldwide, particularly prevalent in Asia, especially in China, where both its incidence and mortality rates are significantly high. Meanwhile, nanotechnology has demonstrated great potential in the treatment of GC. In particular, nanodrug delivery systems have improved therapeutic efficacy and targeting through various functional modifications, such as targeting peptides, tumor microenvironment responsiveness, and instrument-based methods. For instance, silica (SiO2) has excellent biocompatibility and can be used as a drug carrier, with its porous structure enhancing drug loading capacity. Polymer nanoparticles regulate drug release rates and mechanisms by altering material composition and preparation methods. Lipid nanoparticles efficiently encapsulate hydrophilic drugs and promote cellular uptake, while carbon-based nanoparticles can be used in biosensors and drug delivery. Targets such as integrins, HER2 receptors, and the tumor microenvironment have been used to improve drug efficacy in GC treatment. Nanodrug delivery techniques not only enhance drug efficacy and delivery capabilities but also selectively target tumor cells. Currently, there is a lack of systematic summarization and synthesis regarding the relationship between nanodrug delivery systems and GC treatment, which to some extent hinders researchers and clinicians from efficiently searching for and referencing related studies, thereby reducing work efficiency. This study aims to systematically summarize the existing research on the relationship between nanodrug delivery systems and GC treatment, making it easier for professionals to search and reference, and thereby promoting further research on the role of nanodrug delivery systems and their clinical applications in GC. This review discusses the applications of functionalized nanocarriers in the treatment of GC in recent years, including surface modifications with targeted markers, the combination of phototherapy, chemotherapy, and immunotherapy, along with their advantages and challenges. It also examines the future prospects of targeted nanomaterials in GC treatment. The review particularly focuses on the combined application of nanocarriers in multiple treatment modalities, such as phototherapy, chemotherapy, and immunotherapy, demonstrating their potential in multimodal treatments. Furthermore, it thoroughly explores the specific challenges that nanocarriers face in GC treatment, such as biocompatibility, drug release control, and clinical translation issues, while providing a systematic outlook on future developments. Additionally, this study emphasizes the potential value and feasibility of nanocarriers in clinical applications, contrasting with most reviews that focus on basic research. Through these innovations, we offer new perspectives and directions for the development of nanotechnology in the treatment of GC.

推进胃癌治疗:纳米技术的创新与未来前景。
胃癌(GC)是全球第五大常见癌症,在亚洲尤其是中国尤为流行,其发病率和死亡率都很高。与此同时,纳米技术在治疗胃癌方面已显示出巨大的潜力。特别是,纳米给药系统通过各种功能修饰,如靶向肽、肿瘤微环境响应性和基于仪器的方法,提高了疗效和靶向性。例如,二氧化硅(SiO2)具有良好的生物相容性,可用作药物载体,其多孔结构可提高药物负载能力。聚合物纳米颗粒可通过改变材料成分和制备方法来调节药物释放速率和机制。脂质纳米粒子可有效封装亲水性药物并促进细胞吸收,而碳基纳米粒子则可用于生物传感器和药物输送。整合素、HER2 受体和肿瘤微环境等靶点已被用于提高 GC 治疗的药物疗效。纳米给药技术不仅能提高药效和给药能力,还能选择性地靶向肿瘤细胞。目前,关于纳米给药系统与 GC 治疗之间的关系缺乏系统的总结和归纳,这在一定程度上阻碍了研究人员和临床医生有效地搜索和参考相关研究,从而降低了工作效率。本研究旨在系统总结现有关于纳米给药系统与 GC 治疗关系的研究,方便专业人士检索和参考,从而促进纳米给药系统在 GC 中的作用及其临床应用的进一步研究。本综述讨论了近年来功能化纳米载体在 GC 治疗中的应用,包括靶向标记物的表面修饰、光疗、化疗和免疫疗法的结合及其优势和挑战。报告还探讨了靶向纳米材料在 GC 治疗中的未来前景。该综述尤其关注纳米载体在光疗、化疗和免疫疗法等多种治疗模式中的联合应用,展示了其在多模式治疗中的潜力。此外,它还深入探讨了纳米载体在 GC 治疗中面临的具体挑战,如生物相容性、药物释放控制和临床转化问题,同时对未来的发展进行了系统展望。此外,本研究还强调了纳米载体在临床应用中的潜在价值和可行性,这与大多数侧重于基础研究的综述形成了鲜明对比。通过这些创新,我们为纳米技术在治疗 GC 方面的发展提供了新的视角和方向。
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来源期刊
Cell Biology and Toxicology
Cell Biology and Toxicology 生物-毒理学
CiteScore
9.90
自引率
4.90%
发文量
101
审稿时长
>12 weeks
期刊介绍: Cell Biology and Toxicology (CBT) is an international journal focused on clinical and translational research with an emphasis on molecular and cell biology, genetic and epigenetic heterogeneity, drug discovery and development, and molecular pharmacology and toxicology. CBT has a disease-specific scope prioritizing publications on gene and protein-based regulation, intracellular signaling pathway dysfunction, cell type-specific function, and systems in biomedicine in drug discovery and development. CBT publishes original articles with outstanding, innovative and significant findings, important reviews on recent research advances and issues of high current interest, opinion articles of leading edge science, and rapid communication or reports, on molecular mechanisms and therapies in diseases.
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