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The potential application of nanomaterials for ferroptosis-based cancer therapy

机译:纳米材料对基于硬化的癌症治疗的潜在应用

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摘要

Ferroptosis is a new type of programmed cell death, which is expected to become an important strategy of cancer treatment. Traditional strategies for inducing iron death are small molecule inducers based on biological agents. However, because of their poor water solubility, low cell targeting ability and fast metabolism in vivo, it is difficult for molecular drugs to play the long-acting role of ferroptosis induction. With the further study of ferroptosis and development of nanotechnology, nanomaterials have been proved to be more efficient drugs for inducing ferroptosis than those biological drugs. Therein, iron-based nanomaterials can directly release high concentrations of irons and increase reactive oxygen species levels in cells, which produce a better induction effect for ferroptosis. Whereas, it is challenging to differentiate nanoparticle-induced ferroptosis and traditional inducing strategies, elucidate the detailed mechanisms and further classify the synthetical methods of nanomaterials. For better guidance on the development of anticancer strategies, comprehensive summary of the latest developments of ferroptosis related nanomaterials, especially iron-based nanomaterials are in urgent need. In the paper, we summarized the main mechanisms of ferroptosis, highlighted the latest developments of nanomaterials for ferroptosis, and emphasized the advantages of iron-based nanomaterials for ferroptosis. The future prospect in this field was also discussed, paving the way for the related nanomaterials in the clinical cancer therapy.
机译:Ferr凋亡是一种新型的编程细胞死亡,预计将成为癌症治疗的重要策略。诱导铁死亡的传统策略是基于生物制剂的小分子诱导剂。然而,由于它们的水溶解度差,细胞靶向能力和体内快速代谢,难以分子药物发挥脱叶氏菌诱导的长效作用。随着对纳米技术的裂解发球和发展的进一步研究,纳米材料被证明是诱导粘合剂的更有效的药物,而不是那些生物药物。其中,铁基纳米材料可以直接释放出高浓度的熨斗,并增加细胞中的反应性氧物种水平,这产生了对硬质裂菌的更好的诱导效果。虽然,对纳米颗粒诱导的裂解乳糖和传统诱导策略有挑战性,阐明了详细机制,并进一步分类了纳米材料的综合方法。为了更好地指导抗癌策略的发展,迫切需要急需纳米材料的最新发育的全面概述,尤其是铁基纳米材料。在论文中,我们总结了脱裂病变的主要机制,突出了纳米材料的糖凋亡的最新发育,并强调了铁基纳米材料的利用。还讨论了该领域的未来前景,为临床癌症治疗中的相关纳米材料铺平了道路。

著录项

  • 来源
    《Biomedical materials》 |2021年第4期|共9页
  • 作者单位

    Tongji Univ Sch Med Shanghai East Hosp Inst Regenerat Med Inst Translat Nanomed Shanghai 200120 Peoples R China;

    Tongji Univ Sch Med Shanghai East Hosp Inst Regenerat Med Inst Translat Nanomed Shanghai 200120 Peoples R China;

    Tongji Univ Sch Med Shanghai East Hosp Inst Regenerat Med Inst Translat Nanomed Shanghai 200120 Peoples R China;

    Tongji Univ Sch Med Shanghai East Hosp Inst Regenerat Med Inst Translat Nanomed Shanghai 200120 Peoples R China;

    Tongji Univ Sch Med Shanghai East Hosp Inst Regenerat Med Inst Translat Nanomed Shanghai 200120 Peoples R China;

    Tongji Univ Shanghai Pulm Hosp Dept Thorac Surg Sch Med Shanghai 200433 Peoples R China;

    Tongji Univ Sch Med Shanghai East Hosp Inst Regenerat Med Inst Translat Nanomed Shanghai 200120 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

    ferroptosis; iron-based nanomaterials; reactive oxygen species; lipid peroxidation; fenton reaction;

    机译:骨凋亡;铁基纳米材料;活性氧物种;脂质过氧化;芬顿反应;

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