2699-9307
4
否
不在预警名单内
是
Q0区
0
Germany
Wiley-VCH, Germany
ESCI
112
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Advanced NanoBiomed Research will provide an Open Access home for cutting-edge nanomedicine, bioengineering and biomaterials research aimed at improving human health. The journal will capture a broad spectrum of research from increasingly multi- and interdisciplinary fields of the traditional areas of biomedicine, bioengineering and health-related materials science as well as precision and personalized medicine, drug delivery, and artificial intelligence-driven health science. The scope of Advanced NanoBiomed Research will cover the following key subject areas:▪ Nanomedicine and nanotechnology, with applications in drug and gene delivery, diagnostics, theranostics, photothermal and photodynamic therapy and multimodal imaging.▪ Biomaterials, including hydrogels, 2D materials, biopolymers, composites, biodegradable materials, biohybrids and biomimetics (such as artificial cells, exosomes and extracellular vesicles), as well as all organic and inorganic materials for biomedical applications.▪ Biointerfaces, such as anti-microbial surfaces and coatings, as well as interfaces for cellular engineering, immunoengineering and 3D cell culture.▪ Biofabrication including (bio)inks and technologies, towards generation of functional tissues and organs.▪ Tissue engineering and regenerative medicine, including scaffolds and scaffold-free approaches, for bone, ligament, muscle, skin, neural, cardiac tissue engineering and tissue vascularization.▪ Devices for healthcare applications, disease modelling and treatment, such as diagnostics, lab-on-a-chip, organs-on-a-chip, bioMEMS, bioelectronics, wearables, actuators, soft robotics, and intelligent drug delivery systems. with a strong focus on applications of these fields, from bench-to-bedside, for treatment of all diseases and disorders, such as infectious, autoimmune, cardiovascular and metabolic diseases, neurological disorders and cancer; including pharmacology and toxicology studies.
高级纳米生物医学研究将为旨在改善人类健康的尖端纳米医学、生物工程和生物材料研究提供一个开放获取的家园。该杂志将涵盖越来越多的多学科和跨学科领域的研究,包括生物医学、生物工程和健康相关材料科学等传统领域,以及精准和个性化医疗、药物输送和人工智能驱动的健康科学。高级纳米生物医学研究的范围将涵盖以下关键主题领域:▪纳米医学和纳米技术,应用于药物和基因输送、诊断、治疗诊断学、光热和光动力学治疗以及多模态成像。▪生物材料,包括水凝胶、二维材料、生物聚合物、复合材料、生物可降解材料、生物混合物和仿生学(如人造细胞、外来体和细胞外囊泡),以及生物医学应用的所有有机和无机材料。▪生物界面,如抗菌表面和涂层,以及细胞工程、免疫工程和三维细胞培养的界面。▪生物制造,包括(生物)墨水和技术,以产生功能组织和器官。▪组织工程和再生医学,包括支架和无支架方法,用于骨、韧带、肌肉、皮肤、神经、心脏组织工程和组织血管化。▪医疗保健应用、疾病建模和治疗的设备,如诊断、芯片实验室、芯片上器官、生物MEMS重点关注这些领域的应用,从实验室到床边,用于治疗所有疾病和紊乱,例如传染病、自身免疫病、心血管和代谢疾病、神经紊乱和癌症;包括药理学和毒理学研究。
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