OmicsDI
Toggle navigation
Browse
Submit Data
Databases
API
Help
Advanced
Search
8
Results
Show all
Save search
Copy query
Show results for
Unknown
(7)
Proteomics
(1)
Organisms
Andropogon gerardi
(1)
Bacteria
(1)
Borrelia
(1)
Botrytis cinerea
(1)
Candida albicans
(1)
Canis lupus familiaris
(1)
Clostridium perfringens
(1)
Cnidaria
(1)
Eukaryota
(1)
Fasciola
(1)
Fungi
(1)
Hepatitis B virus
(1)
Human betaherpesvirus 5
(1)
Influenza C virus
(1)
Japanese encephalitis virus group
(1)
Miscanthus x giganteus
(1)
Mycobacterium tuberculosis
(1)
Orthoflavivirus
(1)
Panicum virgatum
(1)
Platyhelminthes
(1)
Rickettsia
(1)
Saccharomyces cerevisiae
(1)
Schizosaccharomyces pombe
(1)
Severe acute respiratory syndrome coronavirus 2
(1)
Shigella
(1)
Sorghastrum nutans
(1)
Streptococcus pneumoniae
(1)
Toxoplasma gondii
(1)
Tripsacum dactyloides
(1)
Trypanosoma cruzi
(1)
Repository
pride
(1)
Tissue
Retinal pigment epithelial cell
(1)
Retinal pigment epithelium cell
(1)
Disease
Age related macular degeneration
(1)
Technology Type
Mass Spectrometry
(1)
Shotgun proteomics
(1)
Publication Date
2021
(1)
Release Date
2024
(1)
2023
(1)
2022
(1)
2021
(1)
2020
(1)
2016
(1)
2008
(1)
Lab affiliation
University of Pittsburgh School of Medicine, Ophthalmology department
(1)
Previous
page
1 / 1
You're on page
1
Next
page
Sort
by:
Relevance
Page size
10
mouse retinal pigmented epithelium (RPE)-LC/MS/MS
In this experiment, we compared the phosphorylated protein profile of Cryba1 cKO (RPE-specific) RPE tissue and that of the age-matched control samples.
ORGANISM(S):
Mus musculus (Mouse)
2021-09-07
|
PXD026777
|
Pride
Mouse
Lc/ms/ms
Rpe
Cite
Aberrant Akt2 signaling in the RPE may contribute to retinal fibrosis process in diabetic retinopathy.
Not available
S-EPMC10345150
|
biostudies-literature
Cite
Nutraceutical with Resveratrol and Omega-3 Fatty Acids Induces Autophagy in ARPE-19 Cells.
Not available
S-EPMC4882697
|
biostudies-literature
Cite
Reducing Akt2 in retinal pigment epithelial cells causes a compensatory increase in Akt1 and attenuates diabetic retinopathy.
Not available
S-EPMC9561713
|
biostudies-literature
Cite
The role of lipocalin-2 in age-related macular degeneration (AMD).
Not available
S-EPMC7079812
|
biostudies-literature
Cite
betaA3/A1-crystallin in astroglial cells regulates retinal vascular remodeling during development.
Not available
S-EPMC4943342
|
biostudies-literature
Cite
βA1-crystallin regulates glucose metabolism and mitochondrial function in mouse retinal astrocytes by modulating PTP1B activity.
Not available
S-EPMC7904954
|
biostudies-literature
Cite
The AKT2/SIRT5/TFEB pathway as a potential therapeutic target in non-neovascular AMD.
Not available
S-EPMC11271488
|
biostudies-literature
Cite
Previous
page
1 / 1
You're on page
1
Next
page
Sort
by:
Relevance
Page size
10
OmicsDI
is part of the ELIXIR infrastructure
OmicsDI is an Elixir interoperability service.
Learn more ›
Tweets