Label-free proteomic analysis of the hydrophobic membrane protein complement in articular chondrocytes: a technique for identification of membrane biomarkers

scientific article published on 10 February 2016

Label-free proteomic analysis of the hydrophobic membrane protein complement in articular chondrocytes: a technique for identification of membrane biomarkers is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3109/1354750X.2015.1130191
P932PMC publication ID4819840
P698PubMed publication ID26864288

P50authorAli MobasheriQ4725023
Csaba MattaQ42387708
P2093author name stringJulia R Smith
Xiaofei Zhang
Susan Liddell
P2860cites workImmunophenotypic analysis of human articular chondrocytes: changes in surface markers associated with cell expansion in monolayer culture.Q51610394
Voltage-gated ionic channels in cultured rabbit articular chondrocytes.Q52291502
CD73/5'-ecto-nucleotidase acts as a regulatory factor in osteo-/chondrogenic differentiation of mechanically stimulated mesenchymal stromal cells.Q52885286
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Triton X-114 phase separation in the isolation and purification of mouse liver microsomal membrane proteinsQ57091965
IntroductionQ58629228
Integrin expression by human articular chondrocytesQ72340208
Membrane proteins ride shotgunQ73331521
CD147 (extracellular matrix metalloproteinase inducer-emmprin) expression by human articular chondrocytesQ81909499
Simplified enrichment of plasma membrane proteins for proteomic analyses in Arabidopsis thalianaQ95473474
Tumor detection using folate receptor-targeted imaging agentsQ33340330
A reappraisal of the structure of normal canine articular cartilageQ34091076
Partitioning the proteome: phase separation for targeted analysis of membrane proteins in human post-mortem brainQ34321463
Integrins and stretch activated ion channels; putative components of functional cell surface mechanoreceptors in articular chondrocytesQ34485780
Quantitative in vivo immunohistochemistry of epidermal growth factor receptor using a receptor concentration imaging approachQ34717908
Transamidation by transglutaminase 2 transforms S100A11 calgranulin into a procatabolic cytokine for chondrocytesQ36959741
Functions of S100 proteins.Q37001259
The future of osteoarthritis therapeutics: targeted pharmacological therapyQ37213622
Diverse roles of integrin receptors in articular cartilage.Q37220030
Proteomics of membrane receptors and signalingQ37258542
Technologies for plasma membrane proteomics.Q37616097
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Applications of proteomics in cartilage biology and osteoarthritis researchQ37881631
Biomarkers and proteomic analysis of osteoarthritisQ38245409
Comparative proteomic analysis of hypertrophic chondrocytes in osteoarthritis.Q38463545
Voltage-dependent calcium channels in chondrocytes: roles in health and diseaseQ38484547
Comparative proteomic characterization of articular cartilage tissue from normal donors and patients with osteoarthritisQ38515107
Carprofen inhibits the release of matrix metalloproteinases 1, 3, and 13 in the secretome of an explant model of articular cartilage stimulated with interleukin 1β.Q38650698
Effects of overexpression of membrane-bound transferrin-like protein (MTf) on chondrogenic differentiation in VitroQ40698254
Human chondrocyte cell lines from articular cartilage of metatarsal phalangeal jointsQ40900696
Changes in the proteomic profile of adipose tissue-derived mesenchymal stem cells during passagesQ41421784
Chloride conductance determining membrane potential of rabbit articular chondrocytesQ43916368
Human Wharton's jelly mesenchymal stem cells maintain the expression of key immunomodulatory molecules when subjected to osteogenic, adipogenic and chondrogenic differentiation in vitro: new perspectives for cellular therapyQ44941467
Differential proteome analysis of normal and osteoarthritic chondrocytes reveals distortion of vimentin network in osteoarthritisQ49048702
Proteome characterization of human articular chondrocytes leads to novel insights in the function of small heat-shock proteins in chondrocyte homeostasisQ49121542
Mapping the human membrane proteome: a majority of the human membrane proteins can be classified according to function and evolutionary originQ21093241
The emerging chondrocyte channelomeQ21129265
Permeation of hydrophilic solutes through mitochondrial outer membranes: review on mitochondrial porinsQ28244927
Voltage-dependent anion-selective channel (VDAC) in the plasma membraneQ28274225
Phase separation of integral membrane proteins in Triton X-114 solutionQ29547600
Protein profile of osteoarthritic human articular cartilage using tandem mass spectrometryQ30441562
A modified silver staining protocol for visualization of proteins compatible with matrix-assisted laser desorption/ionization and electrospray ionization-mass spectrometryQ30660638
Chondrocyte channel transcriptomics: do microarray data fit with expression and functional data?Q30664498
Human articular chondrocytes express three facilitative glucose transporter isoforms: GLUT1, GLUT3 and GLUT9.Q30703137
The chondrocyteQ31129465
Proteomic characterization of human normal articular chondrocytes: a novel tool for the study of osteoarthritis and other rheumatic diseasesQ33220043
Proteomic analysis of human osteoarthritic chondrocytes reveals protein changes in stress and glycolysisQ33314088
P275copyright licenseCreative Commons Attribution-NonCommercial-NoDerivs 4.0 InternationalQ24082749
P6216copyright statuscopyrightedQ50423863
P4510describes a project that usesImageJQ1659584
P433issue8
P921main subjectmembrane proteinQ423042
biomarkerQ864574
P304page(s)572-589
P577publication date2016-02-10
P1433published inBiomarkersQ4915076
P1476titleLabel-free proteomic analysis of the hydrophobic membrane protein complement in articular chondrocytes: a technique for identification of membrane biomarkers
P478volume20

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cites work (P2860)
Q42869232Biomarkers of (osteo)arthritis
Q98394689Identification of potential diagnostic gene biomarkers in patients with osteoarthritis
Q64902631Molecular phenotyping of the surfaceome of migratory chondroprogenitors and mesenchymal stem cells using biotinylation, glycocapture and quantitative LC-MS/MS proteomic analysis.

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