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Search Results - min+shen
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ID
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Identification and Use of Heterocyclic Alcohol Compounds for the Treatment of SULT1A1-expressing Cancers
This technology includes the identification and use of heterocyclic alcohol compounds, including RITA and N-BIC, for the treatment of SULT1A1-expression cancers. A high-throughput screen (qHTS) was performed using >1,000 caner cell lines identified a compound called YC-1 (also called Lificiguat) that is effective across cancer cell types that express...
Published: 10/28/2024
|
Inventor(s):
Min Shen
,
Ke Kong
,
Toble Lee
,
Samarjit Patnaik
,
Olivia Lee
,
Jonathan Shrimp
,
Mindy Davis
,
Juan Marugan
,
Wei Zhao
,
Matthew Hall
Keywords(s):
Agents
,
Alcohol
,
anti-cancer
,
Class
,
compounds
,
HETEROCYCLIC
,
SULT1A1-dependent
,
VCXXXX
,
WKXXXX
,
XCXXXX
,
XEXXXX
Category(s):
Application > Research Materials
,
Application > Therapeutics
,
Application > Diagnostics
,
TherapeuticArea > Oncology
Pyruvate Kinase M2 Activators for the Treatment of Cancer
This technology describes a series of small-molecule activators of the pyruvate kinase M2 isoform (PK-M2). Pyruvate kinase (PK) is a critical metabolic enzyme that catalyzes the last step of the glycolytic pathway. It exists in several isoforms with different patterns of tissue expression. One isoform, PK-M2, is expressed in cells with a high rate...
Published: 11/5/2024
|
Inventor(s):
Jian-kang Jiang
,
Matthew Boxer
,
Min Shen
,
Douglas Auld
,
Craig Thomas
Keywords(s):
Activator
,
ACTIVATORS
,
CANCER
,
CBXXXX
,
CXXXXX
,
Dimer
,
IBXXXX
,
ISOFORM
,
IXXXXX
,
M2
,
METABOLIC
,
METABOLITE
,
PK
,
PKM2
,
PK-M2
,
Proliferation
,
PYRUVATE
,
pyruvate kinase
,
small molecule
,
Tetramer
,
tumor
Category(s):
Collaboration Sought > Collaboration
,
Application > Therapeutics
,
TherapeuticArea > Oncology
,
Application > Diagnostics
,
Application > Research Materials
Pyruvate Kinase M2 Activators for the Treatment of Cancer
NIH investigators have discovered a series of small compounds with the potential to treat a variety of cancers as well as hemolytic anemia. Contrary to most cancer medications, these molecules can be non-toxic to normal cells because they target a protein specific to the metabolic pathways in tumors, thus representing a significant clinical advantage...
Published: 10/28/2024
|
Inventor(s):
Min Shen
,
Craig Thomas
,
Douglas Auld
,
Matthew Boxer
Keywords(s):
[1
,
[b]
,
2
,
2-oxo-1
,
3
,
3-oxo-3
,
4]
,
4-dihydroquinoline-2H-benzo
,
4-tetrahydroquinoline-6-sulfonamides
,
ACTIVATORS
,
CB3CXX
,
CB3XXX
,
CBXXXX
,
CXXXXX
,
Human
,
Kinase
,
MOLECULE
,
Oxazine-7-sulfonamides
,
Patent Category - Chemistry
,
PYRUVATE
,
Small
,
Substituted
Category(s):
Collaboration Sought > Collaboration
,
Application > Therapeutics
,
TherapeuticArea > Oncology