A review of the role of carbon nanotubes for cancer treatment based on photothermal and photodynamic therapy techniques

IF 2.1 3区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR Journal of Organometallic Chemistry Pub Date : 2023-07-20 DOI:10.1016/j.jorganchem.2023.122819
Mohammed Faiad Naief , Samar Naser Mohammed , Hadil Jubair Mayouf , Ahmed Mishaal Mohammed
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引用次数: 8

Abstract

Carbon nanostructures have special optical characteristics that confer them with effective light-to-heat conversion ability. They can also increase the local temperature by activating surface plasmons (collective electron oscillations), thereby localizing the heat treatment of nanoscale carbon catalysts. Accordingly, nanotheranostic platforms combining multiple antitumour therapies under the guidance of multimodal imaging have become a research hotspot in cancer therapy because of their improved therapeutic effect and tumour specificity, decreased drug resistance, convenient and accurate tumour lesion detection and treatment monitoring, and enhanced therapeutic effect. As nanomedicine has rapidly advanced, various treatment modalities have been explored. Phototherapy has drawn particularly strong interest because of its low invasiveness, high tumour selectivity, outstanding spatial/temporal controllability, and low toxicity. The two primary types of phototherapy are photodynamic therapy (PDT) and photothermal therapy (PTT). In PDT, reactive oxygen species kill the tumour cells under light irradiation. In PTT, tumour death occurs via local hyperthermia induced by photothermal agents under light irradiation. Mutlipurpose nanoparticles owing to their surface plasmon resonance capability and porous architectures for synergistic therapy with other modalities, PDT and PTT have been combined in various ways in PTT.

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基于光热和光动力治疗技术的碳纳米管在癌症治疗中的作用综述
碳纳米结构具有特殊的光学特性,使其具有有效的光热转换能力。它们还可以通过激活表面等离子体(集体电子振荡)来提高局部温度,从而使纳米级碳催化剂的热处理本地化。因此,在多模态成像指导下联合多种抗肿瘤治疗的纳米治疗平台,因其提高了治疗效果和肿瘤特异性,降低了耐药性,方便准确地检测肿瘤病变和监测治疗情况,提高了治疗效果,成为肿瘤治疗的研究热点。随着纳米医学的迅速发展,各种治疗方式已经被探索出来。光疗因其低侵袭性、高肿瘤选择性、突出的空间/时间可控性和低毒性而引起了特别强烈的兴趣。光疗的两种主要类型是光动力疗法(PDT)和光热疗法(PTT)。在PDT中,活性氧在光照射下杀死肿瘤细胞。在PTT中,肿瘤通过光热剂在光照射下引起的局部热疗而死亡。多用途纳米颗粒由于其表面等离子体共振能力和多孔结构与其他方式协同治疗,PDT和PTT以各种方式结合在PTT中。
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来源期刊
Journal of Organometallic Chemistry
Journal of Organometallic Chemistry 化学-无机化学与核化学
CiteScore
4.40
自引率
8.70%
发文量
221
审稿时长
36 days
期刊介绍: The Journal of Organometallic Chemistry targets original papers dealing with theoretical aspects, structural chemistry, synthesis, physical and chemical properties (including reaction mechanisms), and practical applications of organometallic compounds. Organometallic compounds are defined as compounds that contain metal - carbon bonds. The term metal includes all alkali and alkaline earth metals, all transition metals and the lanthanides and actinides in the Periodic Table. Metalloids including the elements in Group 13 and the heavier members of the Groups 14 - 16 are also included. The term chemistry includes syntheses, characterizations and reaction chemistry of all such compounds. Research reports based on use of organometallic complexes in bioorganometallic chemistry, medicine, material sciences, homogeneous catalysis and energy conversion are also welcome. The scope of the journal has been enlarged to encompass important research on organometallic complexes in bioorganometallic chemistry and material sciences, and of heavier main group elements in organometallic chemistry. The journal also publishes review articles, short communications and notes.
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