Molecular insights on Eltrombopag: potential mitogen stimulants, angiogenesis, and therapeutic radioprotectant through TPO-R activation.

IF 2.5 3区 医学 Q3 CELL BIOLOGY Platelets Pub Date : 2024-12-01 Epub Date: 2024-06-04 DOI:10.1080/09537104.2024.2359028
Rajasekaran Subbarayan, Dhasarathdev Srinivasan, Salman Shadula Osmania, Dinesh Murugan Girija, Shoeb Ikhlas, Nityanand Srivastav, Ranjith Balakrishnan, Rupendra Shrestha, Ankush Chauhan
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Abstract

The purpose of this study is to investigate the molecular interactions and potential therapeutic uses of Eltrombopag (EPAG), a small molecule that activates the cMPL receptor. EPAG has been found to be effective in increasing platelet levels and alleviating thrombocytopenia. We utilized computational techniques to predict and confirm the complex formed by the ligand (EPAG) and the Thrombopoietin receptor (TPO-R) cMPL, elucidating the role of RAS, JAK-2, STAT-3, and other essential elements for downstream signaling. Molecular dynamics (MD) simulations were employed to evaluate the stability of the ligand across specific proteins, showing favorable characteristics. For the first time, we examined the presence of TPO-R in human umbilical cord mesenchymal stem cells (hUCMSC) and human gingival mesenchymal stem cells (hGMSC) proliferation. Furthermore, treatment with EPAG demonstrated angiogenesis and vasculature formation of endothelial lineage derived from both MSCs. It also indicated the activation of critical factors such as RUNX-1, GFI-1b, VEGF-A, MYB, GOF-1, and FLI-1. Additional experiments confirmed that EPAG could be an ideal molecule for protecting against UVB radiation damage, as gene expression (JAK-2, ERK-2, MCL-1, NFkB, and STAT-3) and protein CD90/cMPL analysis showed TPO-R activation in both hUCMSC and hGMSC. Overall, EPAG exhibits significant potential in treating radiation damage and mitigating the side effects of radiotherapy, warranting further clinical exploration.

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关于 Eltrombopag 的分子见解:潜在的有丝分裂原刺激物、血管生成和通过 TPO-R 激活的治疗性放射保护剂。
本研究的目的是调查 Eltrombopag(EPAG)的分子相互作用和潜在治疗用途,EPAG 是一种激活 cMPL 受体的小分子。研究发现,EPAG 能有效提高血小板水平并缓解血小板减少症。我们利用计算技术预测并确认了配体(EPAG)与血小板生成素受体(TPO-R)cMPL形成的复合物,阐明了RAS、JAK-2、STAT-3和其他下游信号转导基本要素的作用。我们利用分子动力学(MD)模拟评估了配体在特定蛋白上的稳定性,结果显示了良好的特性。我们首次检测了TPO-R在人脐带间充质干细胞(hUCMSC)和人牙龈间充质干细胞(hGMSC)增殖中的存在。此外,经 EPAG 处理后,这两种间充质干细胞的血管生成和内皮系血管形成均得到证实。这也表明了RUNX-1、GFI-1b、VEGF-A、MYB、GOF-1和FLI-1等关键因子的激活。其他实验证实,EPAG 可能是抵御 UVB 辐射损伤的理想分子,因为基因表达(JAK-2、ERK-2、MCL-1、NFkB 和 STAT-3)和蛋白 CD90/cMPL 分析表明 TPO-R 在 hUCMSC 和 hGMSC 中均被激活。总之,EPAG 在治疗辐射损伤和减轻放疗副作用方面具有巨大潜力,值得进一步临床探索。
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来源期刊
Platelets
Platelets 医学-细胞生物学
CiteScore
6.70
自引率
3.00%
发文量
79
审稿时长
1 months
期刊介绍: Platelets is an international, peer-reviewed journal covering all aspects of platelet- and megakaryocyte-related research. Platelets provides the opportunity for contributors and readers across scientific disciplines to engage with new information about blood platelets. The journal’s Methods section aims to improve standardization between laboratories and to help researchers replicate difficult methods. Research areas include: Platelet function Biochemistry Signal transduction Pharmacology and therapeutics Interaction with other cells in the blood vessel wall The contribution of platelets and platelet-derived products to health and disease The journal publishes original articles, fast-track articles, review articles, systematic reviews, methods papers, short communications, case reports, opinion articles, commentaries, gene of the issue, and letters to the editor. Platelets operates a single-blind peer review policy. Authors can choose to publish gold open access in this journal.
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