Department of Physics, Maharaja Krishnakumarsinhji Bhavnagar University, Bhavnagar 364002, India.
Mater Sci Eng C Mater Biol Appl. 2017 Oct 1;79:901-916. doi: 10.1016/j.msec.2017.05.135. Epub 2017 May 28.
Biomedical and biotechnological applications of magnetic nanoparticles and their dispersions in liquids are found to be potentially useful. An exponential growth in publications of papers, reviews and patents has been observed. Possibilities of their indiscriminate use on individual as well as environmental health hazards are also investigated. Still, there appears to be a good scope for further research work in the field. Even a small improvement either in preparation method or development of novel nanoparticles may prove to be beneficial in longer run. With this aim in mind, the present review discussed the work carried out in author's laboratory on synthesis and characterization of certain biomagnetic particles and biocompatible fluids composed of these particles. Modified methods were used to synthesize these particles. Notable amongst these are direct binding of biomolecules or drug on magnetic nano particles, low Curie point functionalized magnetic particles, targeted drug delivery system, photodyne therapy, anti-bacterial activity and bioremediation of marine fungi. Advantages and limitations of these work in light of recent work is also discussed.
磁性纳米粒子及其在液体中的分散体在生物医学和生物技术方面的应用被证明是具有潜在用途的。人们观察到相关文献、综述和专利的数量呈指数级增长。同时,也对它们在个体和环境健康危害方面的任意使用的可能性进行了研究。尽管如此,该领域似乎仍有很大的进一步研究空间。即使在制备方法上的微小改进或新型纳米粒子的开发,从长远来看也可能是有益的。有鉴于此,本综述讨论了作者实验室在合成和表征某些生物磁性粒子以及由这些粒子组成的生物相容性流体方面所开展的工作。对这些粒子的合成采用了改良方法。其中值得注意的是生物分子或药物与磁性纳米粒子的直接结合、低居里点功能化磁性粒子、靶向药物输送系统、光动力学疗法、抗菌活性和海洋真菌的生物修复。还根据最近的工作讨论了这些工作的优缺点。