Nanotechnology-based cancer chemoprevention in glioblastoma.

IF 1.5 4区 医学 Q4 NEUROSCIENCES Folia neuropathologica Pub Date : 2023-01-01 DOI:10.5114/fn.2023.126886
Aima Adylova, Gulnara Kapanova, Zaure Datkhayeva, Karlygash Raganina, Gulnur Tanbayeva, Kaini Baigonova
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Abstract

Brain tumours are heterogeneous and are classified comprehensively into molecular subtypes based on genetic alterations. Glioblastoma rapid progression, drug resistance, and recurrence have been scientifically linked to several factors, including its rapid growth rate, loss of apoptosis, pro-survival signalling, molecular heterogeneities and hallmark features to infiltrate vital brain structures. Because of the growing demand for design and development of delivery systems to overcome the existing limitations with the current therapeutic strategies, researchers are exploiting multifaceted aspects of nanotechnology to improve delivery of the drug payload. Firstly, nanotechnology procedures can improve the drug delivery methods with the help of nanoparticles (NPs) based nanovectors that can efficiently cross blood-brain barrier. Secondly, NPs also improve the cellular uptake of the drug as they can efficiently bind with the cell surface. Thirdly, NPs make the delivery of siRNAs and peptides possible, which can suppress the resistance of glioblastoma against TMZ or other chemo-preventive drugs. Fourthly, the use of metal NPs increases the efficiency of scanning or magnetic resonance imaging (MRI) procedures as they can produce contrasts in it. Lastly, NPs make it possible to use highly targeted co-administered strategies like chemoprevention and near infrared (NIR) or radiotherapy (RT). Hence, nanotechnology offers several promising solutions against glioblastoma by countering it on many fronts.

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胶质母细胞瘤中基于纳米技术的癌症化学预防。
脑瘤是异质性的,并根据基因改变被全面分类为分子亚型。胶质母细胞瘤的快速进展、耐药性和复发已被科学地与几个因素联系在一起,包括其快速生长率、细胞凋亡损失、促生存信号、分子异质性和浸润重要大脑结构的标志性特征。由于对递送系统的设计和开发的需求不断增长,以克服当前治疗策略的现有局限性,研究人员正在利用纳米技术的多方面来改善药物有效载荷的递送。首先,纳米技术程序可以在基于纳米颗粒的纳米载体的帮助下改进药物递送方法,该载体可以有效地穿过血脑屏障。其次,NP还可以提高细胞对药物的吸收,因为它们可以有效地与细胞表面结合。第三,NP使siRNA和肽的递送成为可能,这可以抑制胶质母细胞瘤对TMZ或其他化学预防药物的耐药性。第四,金属纳米颗粒的使用提高了扫描或磁共振成像(MRI)程序的效率,因为它们可以在其中产生对比。最后,纳米颗粒可以使用高度靶向的联合给药策略,如化学预防和近红外(NIR)或放射治疗(RT)。因此,纳米技术通过在多个方面对抗胶质母细胞瘤,提供了几种有前景的解决方案。
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来源期刊
Folia neuropathologica
Folia neuropathologica 医学-病理学
CiteScore
2.50
自引率
5.00%
发文量
38
审稿时长
>12 weeks
期刊介绍: Folia Neuropathologica is an official journal of the Mossakowski Medical Research Centre Polish Academy of Sciences and the Polish Association of Neuropathologists. The journal publishes original articles and reviews that deal with all aspects of clinical and experimental neuropathology and related fields of neuroscience research. The scope of journal includes surgical and experimental pathomorphology, ultrastructure, immunohistochemistry, biochemistry and molecular biology of the nervous tissue. Papers on surgical neuropathology and neuroimaging are also welcome. The reports in other fields relevant to the understanding of human neuropathology might be considered.
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