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GRK 2154: Materials for Brain (M4B): Thin film functional materials for minimally invasive therapy of brain dieseases

GRK 2154: Materials for Brain (M4B): Thin film functional materials for minimally invasive therapy of brain dieseases
GRK 2154:脑材料(M4B):用于脑部病变微创治疗的薄膜功能材料
批准号:
270394294
负责人:
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Training Groups
财政年份:
2017
资助国家:
德国
项目状态:
已结题
起止时间:
2016-12-31 至 2020-12-31

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中文摘要
翻译
慢性脑疾病患者的治疗主要以全身药物治疗为主。大脑中足够大的药物浓度通常伴随着影响身体其他器官的副作用。神经植入物,允许局部和个性化治疗,是一种替代解决方案,如果它们能满足以下要求:它们必须紧凑,生物相容性,弹性和高度灵活,特别是在儿童和青少年中使用时。定义的纳米级治疗活性涂层以及用于磁共振成像(MRI)诊断的植入物的适用性可以为新疗法开辟新的前景。为了实现这些目标,将研究基于薄膜技术的微结构功能材料,用于癫痫、脑肿瘤和血管疾病的创新局部治疗。材料控制的药物释放和植入物与细胞的相互作用将首先通过细胞培养进行研究。随后,将在与疾病相关的动物模型中,通过组织学和体内方法,通过MRI和功能测试(行为测试、脑电图)来研究植入物对大脑特定结构和功能的影响。开发这种尖端的局部疗法和合适的功能材料需要材料科学和医学之间的大量合作。通过这里提出的研究培训小组,我们将为跨学科博士学位建立巨大的可能性:跨学科语言和解决问题的策略将在未来的医学和材料科学联合研究领域中培养与实践一致的跨学科语言和解决问题的策略。教育计划将包括强制性和可理解的跨学科交流,目标,方法和结果来自其他学科的同事。我们预见未来,在德国和国际上,对具有医学和材料科学跨学科研究经验的科学家的需求将大幅增加。这些科学家将在材料科学和医学研究方面进行竞争性研究和先进技术的开发。对受过专门教育的科学家的需求是这个研究培训小组的主要焦点。
英文摘要
The treatment of patients with chronic brain diseases is mainly based on systemic drug treatments. Sufficiently large drug concentrations in the brain are often accompanied by side effects affecting other organs in the body. Neural implants, which allow localized and individualized therapy, are an alternative solution if they can satisfy the following requirements: they must be compact, biocompatible, resilient and highly flexible, particularly when used in kids and teens. Defined, nano-scale, therapeutically active coatings as well as suitability of the implants for diagnostics with magnetic resonance imaging (MRI) can open up new prospects for novel therapies. In order to reach these goals, micro-structured, functional materials based on thin film technology will be investigated for innovative local treatment of epilepsies, brain tumors and vascular diseases. Material-controlled drug release and implant interactions with cells will initially be studied using cell cultures. Subsequently, the effect of the implants on specific structures and functions of the brain will be investigated in disease-related animal models by histological and in vivo approaches by MRI and functional tests (behavioral tests, electroencephalography). The development of such cutting-edge localized therapies and suitable functional materials requires substantial collaboration between materials science and medicine. With the research training group proposed here, we will establish great possibilities for an interdisciplinary doctorate: interdisciplinary languages and problem-solving strategies will be fostered in line with hands-on practice in a future, joint research area of medical and materials sciences. The education program will include mandatory and comprehensible interdisciplinary communication of goals, methods and results to co-workers from other disciplines. We foresee a future where there will be a strongly increasing need for scientists with interdisciplinary research experience in medical and materials sciences both in Germany and internationally. Such scientists will carry out competitive research as well as developments for advancing technologies in both materials science and medical research. This demand for specifically educated scientists is a main focus within this research training group.
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