Current Applications and Future Directions for Vascular Stents with Stem Cells in the Treatment of Intracranial Aneurysms: A Mini-Review.

Kaustav Chattopadhyay, Sanjeev Sreenivasan, Gaurav Gupta, Arevik Abramyan, Idiberto Jose Zotarelli Filho, Srihari Sundararajan, Anil Nanda, Sudipta Roychowdhury
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Abstract

Vascular stents and stem cells have been used in high-acuity cases for many decades, particularly in cardiology. Providing the physician with another avenue of treatment, they have had a reasonable amount of success. However, there has been very little research conducted on seeding vascular stents with stem cells when treating intracranial aneurysms. Our work aims to understand the current literature available on the viability of such stents and the future directions one should take when choosing stents seeded with stem cells. Three computerized searches in PubMed were used. Four papers met the criteria, and two were excluded. There have been some experiments where the efficacy of vascular stents seeded with different materials was tested. G/PLL- coated stents provided multiple advantages and bioactive benefits to the mesenchymal stem cells. On the other hand, SF/SDF-1α also promoted similar benefits but provoked multiple unwanted inflammatory responses. G/PLL and SF/SDF-1α coated stents were able to provide satisfactory results but still require more extensive research to thoroughly understand their efficacies and safety. Future directions may include researching and discovering a wider array of biocompatible materials to seed the stents.

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干细胞血管支架在颅内动脉瘤治疗中的应用现状及未来发展方向
血管支架和干细胞在高敏度病例中已经使用了几十年,特别是在心脏病学中。为医生提供了另一种治疗途径,他们取得了相当大的成功。然而,目前关于干细胞植入血管支架治疗颅内动脉瘤的研究还很少。我们的工作旨在了解目前关于此类支架可行性的文献,以及在选择干细胞植入支架时应该采取的未来方向。在PubMed中使用了三种计算机搜索。4篇论文符合标准,2篇被排除。有一些实验测试了不同材料植入血管支架的效果。G/PLL包被支架对间充质干细胞具有多种优势和生物活性。另一方面,SF/SDF-1α也促进了类似的益处,但引发了多种不必要的炎症反应。G/PLL和SF/SDF-1α涂层支架能够提供令人满意的结果,但仍需要更广泛的研究来彻底了解其有效性和安全性。未来的方向可能包括研究和发现更广泛的生物相容性材料来植入支架。
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Molecular Mechanisms and Pathways of Mesenchymal Stem Cell-mediated Therapy in Brain Cancer. Anti-arthritic Effects of Undifferentiated and Chondrogenic Differentiated MSCs in MIA-induced Osteoarthritis in Wistar Rats: Involvement of Oxidative Stress and Immune Modulation. Semaphorin 3A Confers Protection against Oxidative Stress-induced Damage in Periodontal Ligament Stem Cells through the Activation of the Wnt/β-catenin Signaling Pathway. Current Applications and Future Directions for Vascular Stents with Stem Cells in the Treatment of Intracranial Aneurysms: A Mini-Review. Insights into the Biological Properties of Prostate Cancer Stem Cells: Implications for Cancer Progression and Therapy.
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