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Development of a Microfluidics Platform for Efficient MUSE Cell Isolation for Personalized Cell Therapeutics and Disease Modeling
Al-Maslamani, Noor Ali A A
(Lead Principal Investigator)
Assistant-1, Research
(Research Assistant)
Al-Shammari, Abeer Raji M A
(Principal Investigator)
Ltaief, Samia
(Research Associate)
Shuaibu, Abdullahi
(Graduate Student)
QBRI - Neurological Disorders Research Center
HBKU College of Science and Engineering
Hamad Bin Khalifa University (HBKU)
Project
:
Experimental Development/Translation Research
Overview
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Keyphrases
Cell Isolation
100%
Microfluidic Platform
100%
Disease Modeling
50%
Induced Pluripotent Stem Cells (iPSCs)
33%
Scalable Platform
16%
Therapeutic Screening
16%
Microfluidic-based
16%
Therapeutic Testing
16%
Patient-specific
16%
Cost Efficiency
8%
In Vitro Disease Modeling
8%
Size Separation
8%
Cost Reduction
8%
Khalifa
8%
Genetic Code Reprogramming
8%
Mesodermal Lineage
8%
Peripheral Blood
8%
Ectodermal
8%
Cost Scalability
8%
Modeling Platform
8%
Personalized Therapy
8%
Pharmaceutical Industry
8%
Reduced Time
8%
High Failure Rate
8%
Biomedical Research
8%
Therapeutic Agents
8%
Differentiation Efficiency
8%