1) Magnetic targeted drug delivery
磁靶向药物控制释放
2) Drug controlled release
药物控制释放
1.
This review deals with recent progress in the study on pH and thermo-responsive polymer gels, involving their preparation and their current or potential applications like drug controlled release.
详细介绍了目前此类凝胶的3种结构设计即共聚结构、互穿网络结构和核壳结构及其在药物控制释放等方面的应用。
2.
The design and study of polymer materials used as drug controlled release devices have been reviewed, specifically the characteristics of main biodegradable polymers were evaluated and compared.
分析比较了用作药物控制释放载体的高分子材料的结构组成对其性能的影响 ,并从分子设计的角度阐述了调节降解速率以控制释药行为的物理和化学方
3.
In the research background section, we review the recent advances in the liposomes for biomedical applications, including drug controlled release and gene delivery.
由于其结构的独特性,作为生物膜模型和药物控制释放、基因转染的载体而被广泛研究。
3) controlled drug release
药物控制释放
1.
The controlled drug release systems are an important research field in biomedical materials applications.
由于天然多糖作为药物控制释放材料具有比合成聚合物更多的优势,因而一直是国内外学者研究的重点。
2.
Based on the properties of the polymers and the functions of the polymer/silica hybrid materials,controlled drug release systems,including temperature-sensitive polymer/silica,polyelectrolyte/silica,biopolymer/silica,and other polymer/silica hybrid materials are reviewed in this article.
聚合物用作药物控制释放载体时,具有释药浓度可控、药物的生物利用度高、可实现靶向治疗等优点。
4) Controlled drug-release
控制药物释放
5) magnetic target drug
磁靶向药物
1.
An experiment for sitting magnetic particles(Fe_2O_3)in the capillary was introduced,forces that magnetic particles bear in the capillary are analyzed,the condition that magnetic particles are sited in the capillary is deduced out,the conclusion in this article may be consulted in designing magnetic carriers and sitting magnetic target drug.
本研究介绍毛细管内磁性微粒(Fe2O3)的磁场定位实验,对磁性颗粒在毛细血管内的受力进行分析,得到了磁靶向药物的磁场定位条件。
补充资料:控制释放
分子式:
CAS号:
性质:在药物缓释系统中,以特制的薄膜、胶囊或其他方式,使药物以可控制的速度释放并为人体吸收,在血液中维持较为恒定的血药浓度,取得较好的治疗效果,通过改变材料的种类、制备不同厚度的薄膜,可以有效地控制药物释放速度,理想的控制释放是零级释放。
CAS号:
性质:在药物缓释系统中,以特制的薄膜、胶囊或其他方式,使药物以可控制的速度释放并为人体吸收,在血液中维持较为恒定的血药浓度,取得较好的治疗效果,通过改变材料的种类、制备不同厚度的薄膜,可以有效地控制药物释放速度,理想的控制释放是零级释放。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条