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하장호 (Ha Jang Ho) 논문수  · 이용수 18 · 피인용수 3

소속기관
서강대학교
소속부서
Department of Mechanical Engineering
주요 연구분야
공학 > 화학공학 > 고분자공학 공학 > 기계공학 > 기계공학 일반 공학 > 화학공학 > 생물공학
연구경력
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  • 저자정보 . 논문
  • 공저자 . 저널

저자의 연구 키워드

저자의 연구 키워드
#Algorithm
#allowing for facile dispensing of droplets. Computational fluid dynamic simulations were conducted to optimize the design parameters of the microfluidic device.
#Flow rate
#Gas microbubble
#Gut-on-a-chip
#Inflammation bowel disease
#Microbiome
#Microfluidic device
#Shear stress
#Surface tension
#the dispensing of droplets from these microfluidic devices is a challenge due to aggregation and merging of droplets at the interface of microfluidic devices. Here
#The droplet-generating microfluidics has become an important technique for a variety of applications ranging from single cell analysis to nanoparticle synthesis. Although there are a large number of methods for generating and experimenting with droplets on microfluidic devices
#this microfluidic co-culture platform could be a potentially powerful tool for studying cancer cell targeting and photothermal therapy.
#Tween80
#we analyzed the molecular spectrum using UV–visible and Fourier-transform infrared spectroscopy (FT-IR). We demonstrated the effect of rGO-FA-based nanomaterials on photothermal therapy of breast cancer cells in the microfluidic co-culture platform. From the microfluidic co-culture platform with breast cancer cells and human umbilical vein endothelial cells (HUVECs)
#We developed the microfluidic co-culture platform to study photothermal therapy applications. We conjugated folic acid (FA) to target breast cancer cells using reduced graphene oxide (rGO)-based functional nanomaterials. To characterize the structure of rGO-based nanomaterials
#we observed that the viability of breast cancer cells treated with rGO-FA-based functional nanomaterials was significantly decreased after near-infrared (NIR) laser irradiation. Therefore
#we present a microfluidic dual-nozzle device for the generation and dispensing of uniform-sized droplets. The first nozzle of the microfluidic device is used for the generation of the droplets
#while the second nozzle can accelerate the droplets and increase the spacing between them

저자의 논문

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