,3D tissue engineering, an emerging technique for pharmaceutical research

来源 :药学学报(英文版) | 被引量 : 0次 | 上传用户:lovejr622
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Tissue engineering and the tissue engineering model have shown promise in improving methods of drug delivery,drug action,and drug discovery in pharmaceutical research for the attenuation of the central nervous system inflammatory response.Such inflammation contributes to the lack of regenerative ability of neural cells,as well as the temporary and permanent loss of function associated with neurodegenerative diseases such as Alzheimer’s disease,Parkinson’s disease,and traumatic brain injury.This review is focused specifically on the recent advances in the tissue engineering model made by altering scaffold biophysical and biochemical properties for use in the treatment of neurodegenerative diseases.A portion of this article will also be spent on the review of recent progress made in extracellular matrix decellularization as a new and innovative scaffold for disease treatment.
其他文献
Biomimetic nanocarriers are emerging as efficient vehicles to facilitate dietary absorption of biomacromolecules.In this study,two vitamins,thiamine and niacin,
棉花是世界性重要的经济作物.在植物分类学上,所有野生和栽培的棉种都属于被子植物的锦葵目(Malvales)、锦葵科(Malvaceae)、棉族(Gossypieae)、棉属(Gossypium)。棉属植物的
HuR (human antigen R),an mRNA-binding protein responsible for poor prognosis in nearly all kinds of malignancies,is a potential anti-tumor target for drug devel
温引6号是通过外贸途经从泰国引进的“优、丰、抗”兼备的单晚、双晚均宜栽培的良种,一般亩产800市斤左右,高的可达千斤。江西省作为优质大米出口创汇。(一)主要特征特性该
增强地方小报可读性的突破口在哪里?我们从江西宜春地区《赣中报》复刊7年来的实践中认识到:增加报道的知识性、趣味性、服务性固然是一个方面,但更主要的是应发挥党报的优
Human APOBEC3G (hA3G) is a cytidine deaminase which inhibits HIV-1 replication.The HIV-1 accessory protein viral infectivity factor (Vif) counteracts with hA3G
博物馆面向社会免费开放以来,加强馆际之间的交流合作是推动其发展的一项重要实践工作。驻马店市博物馆充分发挥自身优势,与南阳汉画馆联合举办“汉画拓片精品”特色展览。即
2019年12月6~8日,中国交通教育研究会航海教育研究分会2019年学术年会在广东海洋大学(湛江)召开.中国交通教育研究会会长刘卫民、原会长吴兆麟,航海教育研究分会理事长赵友涛
期刊
Protein kinases and phosphatases signal by phosphorylation and dephosphorylation to precisely control the activities of their individual and common substrates f
【目的】增加种植密度是我国及世界玉米大面积高产的关键措施之一。大量调查表明吨粮田、超吨粮田的种植密度均大于7.5×104株·hm-2。然而,加大种植密度田间倒伏发生增加是限制玉米种植密度增加的主要因素之一。当前在密植条件下,能稳定获得高产、超高产的推广品种仍然较少。因此研究不同高产玉米品种(系)的耐密抗倒的规律,探讨不同密度条件下玉米茎秆物质生产分配与茎秆强度的关系,为挖掘玉米增产潜力,实现玉米高