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Single-cell proteomic data from RO-3306 treated alveolar type II epithelial cells (C10) and untreated C10 cells. Cells were sorted using cellenONE onto several nanoSPLITS chips. Cell lysates were then split for parallel RNAseq and proteomic analysis. For proteomics recovery experiment where both chi...
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2022-12-02 | MSV000090828 | MassIVE
We followed the Arabidopsis tape-sandwich protocol to isolate the leaf protoplast enriched with palisade mesophyll cells. Briefly, control and WD-stressed Arabidopsis rosette leaves were placed on 3M tape, and abaxial cell layers were peeled off by gently removing the tape, thereby exposing the adax...
ORGANISM(S): Arabidopsis Thaliana (ncbitaxon:3702) 
2024-06-18 | MSV000095072 | MassIVE
Human pancreatic islets from two human donors (Prodo Laboratories) were acquired and cultured for 24 hr in pancreatic islet media (PIMS, Prodo Laboratories). Single cells were dissociated with TrypLE for ~15-30 minutes, washed with PBS, stained with Calcein-AM/propidium iodide, and sorted onto nanoS...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2023-11-07 | MSV000093330 | MassIVE
Development and evaluation of nested nanowell (N2) chip in single-cell proteomics. The newly designed chip helps to improve the sensitivity and robustness of the tandem mass tag labeling approach by sizing down wells.
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2021-02-04 | MSV000086809 | MassIVE
The influence of selected pentose catabolic pathway (PCP) deletion strains on growth of plant biomass and re-routing of sugar catabolism was addressed to gain a better understanding of the flexibility of the fungus Aspergillus niger in using plant biomass-derived monomers. The transcriptome, metabol...
ORGANISM(S): Aspergillus Niger (ncbitaxon:5061) 
2020-12-17 | MSV000086614 | MassIVE
The influence of selected pentose catabolic pathway (PCP) deletion strains on growth of plant biomass and re-routing of sugar catabolism was addressed to gain a better understanding of the flexibility of the fungus Aspergillus niger in using plant biomass-derived monomers. The transcriptome, metabol...
ORGANISM(S): Aspergillus Niger (ncbitaxon:5061) 
2020-12-17 | MSV000086614 | GNPS
A deep understanding of the tissue microenvironment can provide significant insight into the function of tissue and organs in health and disease states. Spatially resolved proteomics techniques can aid in studying spatial tissue organization and cellular communication in their native microenvironmen...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2023-03-22 | MSV000091531 | MassIVE
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