Netrin-1: Key insights in neural development and disorders

IF 2.5 4区 生物学 Q1 ANATOMY & MORPHOLOGY Tissue & cell Pub Date : 2024-12-14 DOI:10.1016/j.tice.2024.102678
Anfal Nabeel Mustafa , Morug Salih Mahdi , Suhas Ballal , Mamata Chahar , Rajni Verma , Ali M. Ali Al-Nuaimi , M.Ravi Kumar , Rouaida Kadhim A_al-hussein , Mohaned Adil , Mahmood Jasem Jawad
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Abstract

Netrin-1, an essential extracellular protein, has gained significant attention due to its pivotal role in guiding axon and cell migration during embryonic development. The fundamental significance of netrin-1 in developmental biology is reflected in its high conservation across different species as a part of the netrin family. The bifunctional nature of netrin-1 demonstrates its functional versatility, as it can function as either a repellent or an attractant according to the context and the expressed receptors on the target cells including the deleted in colorectal cancer (DCC), the uncoordinated-5 (UNC5), DSCAM, Neogenin-1, Adenosine A2b and Draxin receptors. By directing axonal growth cones toward the appropriate targets, netrin-1 is a critical actor in the formation of the intricate architecture of the nervous system. Netrin-1 is believed to be involved in additional biological and pathological processes in addition to its traditional function in neural development. The behavior of a diverse array of cell types is influenced by controlling cell adhesion and movement, which is impacted by netrin-1. It is a molecule of interest in both developmental biology and clinical research because of its involvement in angiogenesis, tumorigenesis, inflammation, and tissue regeneration, as confirmed by recent studies. The therapeutic capability of netrin-1 in disorders such as cancer, neurodegenerative disorders, and cardiovascular diseases warrants significant attention.
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Netrin-1:神经发育和疾病的关键见解。
Netrin-1是一种重要的细胞外蛋白,因其在胚胎发育过程中引导轴突和细胞迁移的关键作用而受到广泛关注。netrin-1作为netrin家族的一员,其在不同物种间的高度保守性反映了其在发育生物学中的重要意义。netrin-1的双功能特性证明了其功能的多功能性,因为它可以根据环境和靶细胞上表达的受体,包括结肠直肠癌中缺失的(DCC)、不协调的5 (UNC5)、DSCAM、Neogenin-1、腺苷A2b和Draxin受体,作为驱避剂或引诱剂发挥作用。通过将轴突生长锥导向适当的目标,netrin-1在神经系统复杂结构的形成中起着关键作用。Netrin-1被认为除了其在神经发育中的传统功能外,还参与了其他的生物和病理过程。多种细胞类型的行为受到控制细胞粘附和运动的影响,这是由netrin-1影响的。最近的研究证实,它参与血管生成、肿瘤发生、炎症和组织再生,是发育生物学和临床研究中感兴趣的分子。netrin-1在癌症、神经退行性疾病和心血管疾病等疾病中的治疗能力值得重视。
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来源期刊
Tissue & cell
Tissue & cell 医学-解剖学与形态学
CiteScore
3.90
自引率
0.00%
发文量
234
期刊介绍: Tissue and Cell is devoted to original research on the organization of cells, subcellular and extracellular components at all levels, including the grouping and interrelations of cells in tissues and organs. The journal encourages submission of ultrastructural studies that provide novel insights into structure, function and physiology of cells and tissues, in health and disease. Bioengineering and stem cells studies focused on the description of morphological and/or histological data are also welcomed. Studies investigating the effect of compounds and/or substances on structure of cells and tissues are generally outside the scope of this journal. For consideration, studies should contain a clear rationale on the use of (a) given substance(s), have a compelling morphological and structural focus and present novel incremental findings from previous literature.
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