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Functional Enrichment and Purification of a Therapeutically Superior Population of Cells (Case No. 2024-024)
Summary: UCLA researchers in the Departments of Bioengineering and Biological Chemistry have developed a method for identifying and enriching therapeutically useful cell sub-populations based on their secretions (SEC-seq). Background: Cell function is defined by a myriad of biomolecules that they secrete; over 3 thousand proteins are estimated to...
Published: 9/11/2024
|
Inventor(s):
Dino Di Carlo
,
Kathrin Plath
,
Shreya Udani
,
Justin Langerman
Keywords(s):
Cell Surface Receptor
,
Cytometry
,
Flow
Cytometry
,
Functional Genomics
,
High-Throughput Screening
,
hydrogel
,
Microfluidics
,
single cell analysis
,
Therapeutics
Category(s):
Therapeutics > Immunology And Immunotherapy
,
Therapeutics
,
Therapeutics > Oncology > Oncology Immunotherapy
,
Life Science Research Tools
,
Life Science Research Tools > Research Methods
,
Diagnostic Markers > Targets And Assays
,
Therapeutics > Cell Therapy
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
|
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
2021-309-METHODS OF USING SHAPED PARTICLES IN FLOW CYTOMETERS FOR ASSAYS ON B CELLS AND T CELLS
Summary: UCLA researchers in the Department of Bioengineering have developed a platform to sort single cells based on their secreted product at high throughput using commonly accessible lab infrastructure, i.e., flow cytometers. Background: Techniques to sort single cells based on secreted products have the potential to accelerate the development...
Published: 7/19/2023
|
Inventor(s):
Dino Di Carlo
,
Joseph de Rutte
,
Robert Dimatteo
,
Maani Archang
,
Robert Damoiseaux
,
Doyeon Koo
Keywords(s):
Antibody
,
B Cell
,
Bioassay
,
Cell Counting/Imaging
,
Cellular Differentiation
,
Cytometry
,
Flow
Cytometry
,
Fluorescence
,
Hybridoma Technology
,
Secretory Component
,
T Cell
,
Targets And Assays
Category(s):
Life Science Research Tools
,
Life Science Research Tools > Antibodies
,
Life Science Research Tools > Cell Lines
,
Life Science Research Tools > Research Methods
,
Life Science Research Tools > Other Reagents
,
Diagnostic Markers
,
Diagnostic Markers > Targets And Assays
,
Platforms > Diagnostic Platform Technologies