miR-124 in Neuroblastoma: Mechanistic Insights, Biomarker Potential, and Therapeutic Prospects

IF 0.5 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS Current Proteomics Pub Date : 2024-08-28 DOI:10.2174/0115701646331003240821061517
K M Monisha, Dhanu A S, D Mutthuraj, G Nandini, Sridhar Muthusami, Kanthesh M. Basalingappa
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Abstract

: Neuroblastoma, a malignancy predominantly affecting young children, originates from neural crest cells in the sympathetic nervous system. It primarily appears in the adrenal gland but can also affect nerve tissues in regions, such as the chest, neck, abdomen, and pelvis. Despite advancements in treatment, high-risk neuroblastoma patients often face poor prognoses, underscoring the need for ongoing research. This review paper examines the numerous factors responsible for neuroblastoma, emphasizing the importance of approaching the disorder with more strategic therapeutic methods. MicroRNAs, particularly miR-124, play critical roles in gene regulation and cancer pathogenesis. Abundant in the brain, miR-124 functions as a tumor suppressor by inhibiting cell growth, migration, and invasion and is often dysregulated in neuroblastoma. This study investigates the molecular functions of miR-124 in neuroblastoma, its potential as a biomarker, and its application in targeted therapy. MiR-124 regulates key pathways in neuroblastoma, including PI3K/AKT, TGF-β, and p53 signaling, impacting cell proliferation, apoptosis, and metastasis. The study also explores the promise of miR-124 as a biomarker for neuroblastoma through liquid biopsy, enabling non-invasive diagnosis and disease monitoring. Therapeutic strategies targeting miR-124 pathways show potential for overcoming chemotherapy resistance and improving treatment efficacy. The research underscores the significance of miR-124 in neuroblastoma, aiming to enhance early diagnosis, identify specific drug targets, and expand treatment options, ultimately improving patient outcomes.
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神经母细胞瘤中的 miR-124:机理认识、生物标记潜力和治疗前景
:神经母细胞瘤是一种主要影响幼儿的恶性肿瘤,起源于交感神经系统的神经嵴细胞。它主要出现在肾上腺,但也可影响胸部、颈部、腹部和骨盆等部位的神经组织。尽管在治疗方面取得了进步,但高危神经母细胞瘤患者往往预后不良,这凸显了持续研究的必要性。这篇综述论文探讨了导致神经母细胞瘤的众多因素,强调了采用更具战略性的治疗方法治疗这种疾病的重要性。微小核糖核酸(microRNA),尤其是 miR-124,在基因调控和癌症发病机制中发挥着关键作用。miR-124在大脑中含量丰富,通过抑制细胞生长、迁移和侵袭而发挥肿瘤抑制因子的功能,在神经母细胞瘤中经常失调。本研究探讨了 miR-124 在神经母细胞瘤中的分子功能、其作为生物标志物的潜力及其在靶向治疗中的应用。MiR-124 调节神经母细胞瘤的关键通路,包括 PI3K/AKT、TGF-β 和 p53 信号转导,影响细胞增殖、凋亡和转移。该研究还探讨了 miR-124 通过液体活检作为神经母细胞瘤生物标记物的前景,从而实现无创诊断和疾病监测。针对 miR-124 通路的治疗策略显示出克服化疗耐药性和提高疗效的潜力。这项研究强调了miR-124在神经母细胞瘤中的重要作用,旨在加强早期诊断、确定特异性药物靶点和扩大治疗选择,最终改善患者的预后。
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来源期刊
Current Proteomics
Current Proteomics BIOCHEMICAL RESEARCH METHODS-BIOCHEMISTRY & MOLECULAR BIOLOGY
CiteScore
1.60
自引率
0.00%
发文量
25
审稿时长
>0 weeks
期刊介绍: Research in the emerging field of proteomics is growing at an extremely rapid rate. The principal aim of Current Proteomics is to publish well-timed in-depth/mini review articles in this fast-expanding area on topics relevant and significant to the development of proteomics. Current Proteomics is an essential journal for everyone involved in proteomics and related fields in both academia and industry. Current Proteomics publishes in-depth/mini review articles in all aspects of the fast-expanding field of proteomics. All areas of proteomics are covered together with the methodology, software, databases, technological advances and applications of proteomics, including functional proteomics. Diverse technologies covered include but are not limited to: Protein separation and characterization techniques 2-D gel electrophoresis and image analysis Techniques for protein expression profiling including mass spectrometry-based methods and algorithms for correlative database searching Determination of co-translational and post- translational modification of proteins Protein/peptide microarrays Biomolecular interaction analysis Analysis of protein complexes Yeast two-hybrid projects Protein-protein interaction (protein interactome) pathways and cell signaling networks Systems biology Proteome informatics (bioinformatics) Knowledge integration and management tools High-throughput protein structural studies (using mass spectrometry, nuclear magnetic resonance and X-ray crystallography) High-throughput computational methods for protein 3-D structure as well as function determination Robotics, nanotechnology, and microfluidics.
期刊最新文献
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