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2016-219-3 SYSTEM AND METHOD FOR OPTICAL TRANSIENT LIQUID MOLDING OF MICROPARTICLES AND USES FOR THE SAME
SUMMARY: The Di Carlo group at UCLA has invented a microparticle that enables analysis of adherent cells via flow cytometry with high throughput. BACKGROUND: Traditional flow cytometry is a fluorescence-based technique used to characterize cells on a molecular level usually suspended in a fluid. However, many cells are inherently attached to matrix...
Published: 7/19/2023
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Inventor(s):
Dino Di Carlo
,
Chueh-Yu Wu
Keywords(s):
Cell Counting/Imaging
,
Cytometry
,
Diagnostic Platform Technologies (E.G. Microfluidics)
,
Flow Cytometry
,
Life Science Research Tools
,
Microfluidics
,
Microfluidics And Mem's
,
Targets And Assays
Category(s):
Life Science Research Tools > Research Methods
,
Diagnostic Markers > Targets And Assays
,
Life Science Research Tools > Cell Counting And Imaging
,
Life Science Research Tools > Microfluidics And Mems
,
Platforms > Diagnostic Platform Technologies
Monodisperse Emulsions Templated by 3D-Structured Microparticles
dana,Geneva,sans-serif">UCLA Case No. 2019-471 SUMMARY UCLA Researchers in the Departments of Bioengineering and Mathematics have developed a method to generate uniform, thermodynamically stabilized microdroplets with digitizable solid structures. BACKGROUND In standard emulsions, mixtures of different types of liquids result in non-uniform and...
Published: 7/19/2023
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Inventor(s):
Dino Di Carlo
,
Chueh-Yu Wu
,
Andrea Bertozzi
,
Bao Wang
,
Joseph de Rutte
,
Kyung Ha
Keywords(s):
Category(s):
Chemical > Instrumentation & Analysis
,
Chemical > Chemical Processing & Manufacturing
Engineered-Microparticle-Based Cell Carriers For Culture And Adhesive Flow Cytometry
UC Case No. 2016-219 SUMMARY: The Di Carlo group at UCLA has invented a microparticle that enables the analysis of adherent cells by flow cytometry. In addition, they have developed a high-throughput method to fabricate these microparticles. BACKGROUND: Traditional flow cytometry is a fluorescence-based technique used to characterize cells in...
Published: 7/19/2023
|
Inventor(s):
Dino Di Carlo
,
Chueh-Yu Wu
Keywords(s):
Category(s):
Platforms > Diagnostic Platform Technologies
Drop-Carrier Particles for Digital Assays
UC Case No. 2017-533SUMMARYUCLA researchers in the Department of Bioengineering have developed a drop-carrier particle for single cell or single molecule assays.BACKGROUNDSingle-molecule or single-cell digital assays (e.g. digital PCR, digital LAMP, digital ELISA, dropSeq) require fractionating or compartmentalizing a large volume to...
Published: 7/19/2023
|
Inventor(s):
Dino Di Carlo
,
Chueh-Yu Wu
Keywords(s):
Diagnostic Platform Technologies (E.G. Microfluidics)
,
Lab Equipment
,
Life Science Research Tools
,
Nanosensor
,
Targets And Assays
Category(s):
Life Science Research Tools > Lab Equipment
,
Life Science Research Tools
,
Diagnostic Markers > Targets And Assays
,
Platforms > Diagnostic Platform Technologies