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4篇 您的检索式:作者名="M.Seifalian"
    题名 作者 年代 出处 被引量
1Stem cells for spinal cord injuries bearing translational potential显示文摘Spinal cord injury(SCI) is a highly debilitating neurological disease, which still lacks effective treatment strategies, causing significant financial burden and distress to the affected families. Nevertheless, nanotechnology and regenerative medicine strategies holding promise for the development of novel therapies that would reach from bench to bedside to serve the SCI patients. There has already been significant progress in the field of cell-based therapies, with the clinical application for SCI, currently in phase II of the clinical trial. Stem cells(e.g., induced pluripotent stem cells, fetal stem cells, human embryonic stem cells, and olfactory ensheathing cells) are certainly not to be considered the panacea for neural repair but, especially when combined with rehabilitation or other combinatorial approaches using the help of nanotechnology, they seem to be the source of some of the most promising and clinical translatable cell-based therapies that could help solving impactful problems on neural repair.Kyriakos Dalamagkas Magdalini Tsintou Alexander M.Seifalian 2018Neural Regeneration Research2018,13,1:3
2Remote ischaemic preconditioning of the hind limb reduces experimental liver warm ischaemia–reperfusion injury显示文摘S.Kanoria R.Jalan N. A.Davies A. M.Seifalian R.Williams B. R.Davidson 2006Br J Surg2006,,6:3
3Modulation of microcirculatory changes in the late phase of hepatic ischaemia–reperfusion injury by remote ischaemic preconditioning显示文摘NiteenTapuria SameerJunnarkar MahmoudAbu‐Amara BarryFuller Alexander M.Seifalian Brian R.Davidson 2012HPB2012,,2:2
4Nanotechnology and bio-functionalisation for peripheral nerve regeneration显示文摘There is a high clinical demand for new smart biomaterials, which stimulate neuronal cell proliferation, migration and increase cell-material interaction to facilitate nerve regeneration across these critical-sized defects. This article briefly reviews several up-to-date published studies using Arginine-Glycine-Aspartic acid peptide sequence, nanocomposite based on polyhedral oligomeric silsesquioxane nanoparticle and nanofibrous scaffolds as promising strategies to enhance peripheral nerve regeneration by influencing cellular behaviour such as attachment, spreading and proliferation. The aim is to establish the potent manipulations, which are simple and easy to employ in the clinical conditions for nerve regeneration and repair.Tina Sedaghati Alexander M.Seifalian 2015Neural Regeneration Research2015,10,8:0
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