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  • EngiTek 2020
  • 47.Cnf-1131
Engineering Congresses with Published Papers
Papers Published at EngiTek 2020
All 8 Papers
IDAuthors and TitlePages
51.Cnf-17 Mr. Ameer Mubaslat
Mr. Ahmad Al Haj
Prof. Saud Khashan
Simulation assisted leak detection in pressurized systems using machine learning
1-6
51.Cnf-1062 Dr. Aqeed M. Chyad
Dr. Osama Abudayyeh
Dr. Maha Alkasisbeh
A Nonlinear Regression-Based Machine Learning Model for Predicting Concrete Bridge Deck Condition
7-11
47.Cnf-1071 Dr. Mohammad M. Banat
Mr. Ahmed Al-Shwmi
Detailed Simplified Implementation of Filter Bank Multicarrier Modulation Using Sub-Channel Prototype Filters
12-18
47.Cnf-1097 Dr. Mohammad M. Banat
Mrs. Haifaa Elayyan
Academic Rewards Coin (ARC) Concept: Mining Academic Contribution Into Bitcoin
19-27
47.Cnf-1098 Mr. Chris Matrakidis
Dr. Dimitris Uzunidis
Alexandros Stavdas
Prof. Gerasimos Pagiatakis
Analytical modeling of dispersion penalty for NRZ transmission
28-32
47.Cnf-1099 Dr. Dimitris Uzunidis
Mr. Chris Matrakidis
Alexandros Stavdas
Prof. Gerasimos Pagiatakis
On the Attainable Transparent Length of Multi-Band Optical Systems Employing Rare – Earth Doped Fiber Amplifiers
33-38
47.Cnf-1101 Mr. Georgios D. Kolezas
Dr. Grigorios Zouros
Prof. Gerasimos Pagiatakis
Complex Magnetic and Electric Dipolar Resonances of Subwavelength GaAs Prolate Spheroids
39-42
51.Cnf-1104 Dr. Rafat Al-Waked
Underground Car Park - Mechanical Ventilation
43-48
47.Cnf-1131 Paper View Page
Title Simulation and Synthesis of Homogeneous Drug Encapsulating Nanoparticles
Authors Dr. Ruba Khnouf, Jordan University of Science and Technology, Irbid, Jordan
Ms. Ala'a Migdade, Jordan University of Science and Technology, Irbid, Jordan
Ms. Esraa Alshawwa, Jordan University of Science and Technology, Irbid, Jordan
Abstract Targeted cancer therapeutics delivery has been a challenge that has been under investigation for years, where the need for a delivery conduit that is small enough to accumulate in tumor cells while being biocompatible and in coherence with the drug’s chemistry has only increased. Polymer-based Nanocapsules have proven to be an attractive vehicle for targeted cancer therapies, however drug encapsulation using polymeric materials has been difficult in terms of maintaining a homogeneous capsule size distribution and the ability to efficiently load small Nanocapsules with drugs. It has been suggested and shown that the application of microfluidic devices in the high throughput- controlled synthesis of drug-loaded nanoparticles can overcome these obstacles. We employed a microfluidic system to synthesize homogenous polymeric nanoparticles (NPs) with controlled characteristics. We also demonstrated the effect of polymer concentration, flow rate ratio, and the flow rate of the aqueous phase on the NPs size. We finally simulated different similar conditions to better explain the observations made.
Track BME: Biomedical Engineering
Conference 1st International Conference on Electrical Engineering and Technologies (ElectriTek 2020)
Congress International Congress on Engineering Technologies (EngiTek 2020), 16-18 June 2020, Irbid, Jordan
Pages --1
Topics Bionanotechnology
BioMEMS and Microfluidics
ISSN 2227-331X
DOI
BibTeX @inproceedings{1131EngiTek2020,
title={Simulation and Synthesis of Homogeneous Drug Encapsulating Nanoparticles },
author={Ruba Khnouf, and Ala'a Migdade, and Esraa Alshawwa},
booktitle={International Congress on Engineering Technologies (EngiTek 2020)},
year={2020},
pages={--1},
doi={}},
organization={Mosharaka for Research and Studies} }
Paper Views 65 Paper Views Rank 135/524
Paper Downloads 27 Paper Downloads Rank 181/524
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