纳米载体
药物输送
药品
纳米技术
纳米颗粒
脂质体
磁性纳米粒子
毒品携带者
靶向给药
纳米医学
树枝状大分子
表面改性
药理学
化学
材料科学
医学
有机化学
物理化学
作者
Agnieszka Z. Wilczewska,Katarzyna Niemirowicz,Karolina H. Markiewicz,Halina Car
标识
DOI:10.1016/s1734-1140(12)70901-5
摘要
Controlled drug delivery systems (DDS) have several advantages compared to the traditional forms of drugs. A drug is transported to the place of action, hence, its influence on vital tissues and undesirable side effects can be minimized. Accumulation of therapeutic compounds in the target site increases and, consequently, the required doses of drugs are lower. This modern form of therapy is especially important when there is a discrepancy between the dose or the concentration of a drug and its therapeutic results or toxic effects. Cell-specific targeting can be accomplished by attaching drugs to specially designed carriers. Various nanostructures, including liposomes, polymers, dendrimers, silicon or carbon materials, and magnetic nanoparticles, have been tested as carriers in drug delivery systems. In this review, the aforementioned nanocarriers and their connections with drugs are analyzed. Special attention is paid to the functionalization of magnetic nanoparticles as carriers in DDS. Then, the advantages and disadvantages of using magnetic nanoparticles as DDS are discussed.
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