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Immobilized
Peptides
for Rare Earth Element Separation (Case No. 2026-031)
Summary: UCLA researchers in the Department of Materials Science and Engineering have developed a bead-based chromatography platform that employs immobilized
peptides
for improved rare earth element separation and recovery. Background: Rare earth elements (REEs) are critical inputs for renewable energy technologies, electric vehicles, advanced electronics,...
Published: 1/5/2026
|
Inventor(s):
Aaron Moment
,
Zihang Su
Keywords(s):
bulk material
,
clean material production
,
Composite Material
,
Composite Materials
,
Construction Materials
,
Functional Materials
,
material characterization
,
material science
,
Materials
,
meta materials
,
Nanomaterials
,
Peptide
,
Peptide Base
,
peptides
,
rare earth element separation
,
Raw materials supplier
,
safe materials
,
Smart Material
,
sustainable rare earth recovery
Category(s):
Materials
,
Materials > Functional Materials
,
Materials > Nanotechnology
,
Energy & Environment
,
Materials > Metals
Targeting Prostate Cancer with a Novel T-Cell Receptor and Tissue-Specific Cancer Antigens for Improved Immune Response (UCLA Case No. 2022-070)
Researchers from UCLA’s Department of Microbiology, Immunology, & Molecular Genetics (MIMG), and the department of Molecular and Medical Pharmacology have identified a set of tissue-specific antigens which have been used to isolate and characterize a group of novel T-cell receptors (TCRs) which target prostate cancer specifically. Furthermore,...
Published: 7/31/2025
|
Inventor(s):
Owen Witte
,
Zhiyuan Mao
,
Jami Witte
,
Pavlo Nesterenko
,
John Lee
Keywords(s):
Cancer
,
cancer antigen
,
Peptide
,
peptides
,
prostate cancer
,
protein
,
t-cells
Category(s):
Therapeutics
,
Therapeutics > Oncology > Oncology Immunotherapy
,
Therapeutics > Oncology
,
Therapeutics > Immunology And Immunotherapy