Huynh Kim-Hung, Hahm Eunil, Noh Mi Suk, Lee Jong-Hwan, Pham Xuan-Hung, Lee Sang Hun, Kim Jaehi, Rho Won-Yeop, Chang Hyejin, Kim Dong Min, Baek Ahruem, Kim Dong-Eun, Jeong Dae Hong, Park Seung-Min, Jun Bong-Hyun
Department of Bioscience and Biotechnology, Konkuk University,120 Neungdong-ro, Gwangjin-Gu, Seoul 05029, Korea.
Medical Device & Bio-research Team, Bio-medical & Environ-chemical Division, Korea Testing Certification, Gunpo, Gyeonggi-do 15809, Korea.
Nanomaterials (Basel). 2021 May 4;11(5):1215. doi: 10.3390/nano11051215.
The surface-enhanced Raman scattering (SERS) technique, that uses magnetic plasmonic particles (MPPs), is an advanced SERS detection platform owing to the synergetic effects of the particles' magnetic and plasmonic properties. As well as being an ultrasensitive and reliable SERS material, MPPs perform various functions, such as aiding in separation, drug delivery, and acting as a therapeutic material. This literature discusses the structure and multifunctionality of MPPs, which has enabled the novel application of MPPs to various biological fields.
使用磁性等离子体粒子(MPP)的表面增强拉曼散射(SERS)技术,由于粒子的磁性和等离子体特性的协同效应,是一种先进的SERS检测平台。MPP不仅是一种超灵敏且可靠的SERS材料,还具有多种功能,如辅助分离、药物递送以及作为治疗材料。本文献讨论了MPP的结构和多功能性,这使得MPP能够在各种生物领域得到新的应用。