School of Mechanical and Aerospace Engineering and ReCAPT, Gyeongsang National University, Jinju 660-701, Korea.
J Biomed Nanotechnol. 2013 Jul;9(7):1190-4. doi: 10.1166/jbn.2013.1533.
When dealing with nano targeted drug delivery process the significant area of virtual reality application can be visualizing real time process and simulating it at nano-scale, since the effectiveness of a drug primarily depends on the affected cell and targeted doze. This paper proposes virtual reality (VR) as a tool to analyze and simulate nanoparticles (NPs) manipulation, in this paper amorphous NPs are analyzed and simulated in virtual environment. Haptic guides virtualizing the atomic force microscope (AFM) is applied in the virtual environment which allows the operators to sense and touch the NPs when evaluating its structure, drug release time, and behavioral study. Cisplatin was loaded as a modal drug to the self-assembled amorphous copolymer P(3HV-co-4HB)-b-mPEG NPs, where the efficiency and bioavailability of Cisplatin was further investigated. The prepared NPs when simulated in virtual environment proved to show good biocompatibility. Results showed that amorphous polymeric NPs could be efficient vehicles for the constant and targeted delivery of toxic anticancer drugs.
在处理纳米靶向药物输送过程时,虚拟现实应用的重要领域可以是实时可视化和在纳米尺度上模拟该过程,因为药物的有效性主要取决于受影响的细胞和靶向剂量。本文提出虚拟现实 (VR) 作为一种工具来分析和模拟纳米颗粒 (NP) 的操作,本文在虚拟环境中分析和模拟非晶态 NPs。用于虚拟原子力显微镜 (AFM) 的触觉指南应用于虚拟环境中,允许操作员在评估其结构、药物释放时间和行为研究时感知和触摸 NPs。顺铂被加载到自组装非晶态共聚物 P(3HV-co-4HB)-b-mPEG NPs 中作为模式药物,进一步研究了顺铂的效率和生物利用度。在虚拟环境中模拟的制备好的 NPs 被证明具有良好的生物相容性。结果表明,非晶态聚合物 NPs 可以作为高效的载体,用于持续和靶向输送有毒抗癌药物。