Nano-approaches and Recent Advancements in Strategies to Combat Challenges Associated with Thyroid Cancer Therapies.

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Recent Patents on Nanotechnology Pub Date : 2023-10-17 DOI:10.2174/0118722105257210230929083126
Gurmehar Singh, Jatin Rathee, Triveni, Neha Jain, Upendra Nagaich, Shreya Kaul, Manisha Pandey, Bapi Gorain
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Abstract

The prevalence of thyroid cancer (TC) is more common in women and is up to 43% in patients aged between 45-65 years. The battle against TC is hampered by the lack of effective diagnostic and therapeutic approaches. The effectiveness of surgical procedures, such as thyroidectomy and nutraceutical treatments, are accompanied by several difficulties and still require further research. Alternatively, the DNA-damaging traditional model of chemotherapy is linked to poor solubility, untoward systemic effects, and associated cytotoxicity, instituting an urgent need to establish a specialized, factual, and reliable delivery tool. In order to overcome the limitations of conventional delivery systems, nanotechnology-based delivery tools have shown the potential of articulating endless inherent implementations. The probable benefits of emerging nanotechnology-based diagnostic techniques include rapid screening and early illness diagnosis, which draws investigators to investigate and assess the possibility of this treatment for TC. Subsequently, organic (e.g., liposomes, polymer-based, and dendrimers) and inorganic (e.g., gold, carbon-based, mesoporous silica, magnetic, and quantum dots) NPs and hybrids thereof (liposome-silica, chitosan-carbon, and cell membrane-coated) have been projected for TC biomarker screening, therapy, and detection, providing better outcomes than traditional diagnostic and treatment techniques. Therefore, this review aims to offer a broad perspective on nanoplatform in TC, accompanied by present and potential future treatment options and screening techniques. The goal of cancer therapy has traditionally been to "search a thorn in a hayloft"; therefore, this article raises the possibility of treating TC using nano-oncotherapeutics, which might be useful clinically and will encourage future researchers to explore this tool's potential and drawbacks.

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纳米方法和应对甲状腺癌症治疗相关挑战的最新策略进展。
甲状腺癌症(TC)的患病率在女性中更常见,在45-65岁的患者中高达43%。由于缺乏有效的诊断和治疗方法,与TC的斗争受到阻碍。甲状腺切除术和营养治疗等外科手术的有效性伴随着一些困难,仍需进一步研究。或者,破坏DNA的传统化疗模式与溶解性差、不良全身反应和相关的细胞毒性有关,迫切需要建立一种专门、真实和可靠的递送工具。为了克服传统递送系统的局限性,基于纳米技术的递送工具显示出了表达无尽固有实现的潜力。新兴的基于纳米技术的诊断技术可能带来的好处包括快速筛查和早期疾病诊断,这吸引了研究人员调查和评估这种治疗TC的可能性。随后,有机(如脂质体、聚合物基和树枝状聚合物)和无机(如金、碳基、介孔二氧化硅、磁性和量子点)NP及其混合物(脂质体二氧化硅、壳聚糖碳和细胞膜涂层)已被用于TC生物标志物的筛选、治疗和检测,提供了比传统诊断和治疗技术更好的结果。因此,这篇综述旨在为TC中的纳米平台提供一个广阔的前景,以及目前和潜在的未来治疗选择和筛选技术。癌症治疗的目标传统上是“大海捞针”;因此,本文提出了使用纳米肿瘤疗法治疗TC的可能性,这可能在临床上有用,并将鼓励未来的研究人员探索这种工具的潜力和缺点。
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来源期刊
Recent Patents on Nanotechnology
Recent Patents on Nanotechnology NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
4.70
自引率
10.00%
发文量
50
审稿时长
3 months
期刊介绍: Recent Patents on Nanotechnology publishes full-length/mini reviews and research articles that reflect or deal with studies in relation to a patent, application of reported patents in a study, discussion of comparison of results regarding application of a given patent, etc., and also guest edited thematic issues on recent patents in the field of nanotechnology. A selection of important and recent patents on nanotechnology is also included in the journal. The journal is essential reading for all researchers involved in nanotechnology.
期刊最新文献
Development of Stabilized and Aqueous Dissolvable Nanosuspension Encompassing BCS Class IV Drug via Optimization of Process and Formulation Variables. Research on Controllable Synthesis and Growth Mechanism of Sodium Vanadium Fluorophosphate Nanosheets. Progress on One-dimensional Vanadium Pentoxide-based Nanomaterials for Advanced Energy Storage ANSTEEL Research Institute of Vanadium & Titanium (Iron & Steel), China. Design Optimization and Evaluation of Patented Fast-Dissolving Oral Thin Film of Ambrisentan for the Treatment of Hypertension. From Solid to Fluid: Novel Approaches in Neuromorphic Engineering.
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