首页> 外文会议>Annual TechConnect World Innovation Conference Expo >Mn nanoparticles exacerbates concussive head injury induced blood-brain barrier disruption, brain pathology, and sensory motor dysfunctions. Neuroproetction by Nanowired delivery of 5-HT2 receptor antagonists Ketanserin and Ritanserin
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Mn nanoparticles exacerbates concussive head injury induced blood-brain barrier disruption, brain pathology, and sensory motor dysfunctions. Neuroproetction by Nanowired delivery of 5-HT2 receptor antagonists Ketanserin and Ritanserin

机译:Mn纳米颗粒加剧震荡头部损伤诱导血脑屏障中断,脑病和感官电动机功能障碍。通过纳米次数递送5-HT2受体拮抗剂Ketanserin和Ritanserin的神经术

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This innovation deals with adverse effects of Mn nanoparticles (NPs) on brain pathology in concussive head injury. Also Mn nanoparticles treatment alters therapeutic modalities. The novel data presented in the abstract show that Mn exposure to our military personal from various industries, welding or deep mine work could make them more vulnerable to any additional head injury. This work also for the first time showed that neuroprotective agents in Mn treated traumatized group require in high concentration to treat effectively the brain pathologies. These data are strategically very important for further development of industrial or military medicine for health benefits. We have shown that nanowired delivery of 5-HT2 receptor antagonists e.g., ketanserin and ritanserin remarkably attenuated exacerbation of brain pathology after CHI in MN NPs treated group, not reported earlier.
机译:这种创新涉及Mn纳米颗粒(NPS)对脑脑病理造成的不利影响。 MN纳米粒子处理改变治疗方式。摘要中提出的新型数据表明,MN暴露于我们的军事个人免受各种行业,焊接或深入矿井工作可能使它们更容易受到任何额外的头部伤害。这项工作也首次表明,MN处理的创伤组中的神经保护剂需要高浓度以有效治疗脑病理。这些数据对于进一步发展工业或军医进行健康益处的战略性非常重要。我们已经表明,纳米3递送了5-HT2受体拮抗剂,例如,Ketanserin和Ritanserin在Mn NPS治疗组中的CHI后显着减弱了脑病理学的恶化,未提前报道。

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