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postmortem als brain tissue from motor and occipital cortex  (Johns Hopkins HealthCare)

 
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    Structured Review

    Johns Hopkins HealthCare postmortem als brain tissue from motor and occipital cortex
    Postmortem Als Brain Tissue From Motor And Occipital Cortex, supplied by Johns Hopkins HealthCare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/postmortem+als+brain+tissue/postmortem+als+brain+tissue+from+motor+and+occipital+cortex/pmc10785776-65-8-13
    Average 90 stars, based on 1 article reviews
    postmortem als brain tissue from motor and occipital cortex - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Immunohistochemistry:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Mutagenesis:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Two Tailed Test:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Cell Culture:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Sterility:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Recombinant:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Multiplex sample analysis:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Western Blot:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Stripping:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Protease Inhibitor:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Plasmid Preparation:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Activity Assay:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Magnetic Beads:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Ligation:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Bicinchoninic Acid Protein Assay:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Mass Spectrometry:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Virus:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Software:

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis
    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).



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    90
    Johns Hopkins HealthCare postmortem als brain tissue from motor and occipital cortex
    Postmortem Als Brain Tissue From Motor And Occipital Cortex, supplied by Johns Hopkins HealthCare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/postmortem+als+brain+tissue/postmortem+als+brain+tissue+from+motor+and+occipital+cortex/pmc10785776-65-8-13
    Average 90 stars, based on 1 article reviews
    postmortem als brain tissue from motor and occipital cortex - by Bioz Stars, 2026-09
    90/100 stars
      Buy from Supplier

    90
    Johns Hopkins HealthCare postmortem als brain tissue
    (A and B) Immunohistochemistry of VCP and SOD1 in postmortem motor (affected) (A) and occipital (unaffected) (B) cortex from an <t>ALS</t> patient <t>(patient</t> <t>#1-JHU74)</t> carrying the A4V mutation in the SOD1 gene. The pictures on the right column represent the magnified regions within the yellow dashed squares. Scale bar, 20 μm. (C) Quantification of SOD1 and VCP intensities in MAP2 + neurons within the motor or occipital cortex. Motor cortex, n = 17 neurons; occipital cortex, n = 16 neurons. Unpaired t test (two-tailed), SOD1 p < 0.0001; VCP p < 0.0001.
    Postmortem Als Brain Tissue, supplied by Johns Hopkins HealthCare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/postmortem+als+brain+tissue/brain+tissue/pmc10785776-64-3-13
    Average 90 stars, based on 1 article reviews
    postmortem als brain tissue - by Bioz Stars, 2026-09
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      Buy from Supplier

    Image Search Results


    (A and B) Immunohistochemistry of VCP and SOD1 in postmortem motor (affected) (A) and occipital (unaffected) (B) cortex from an ALS patient (patient #1-JHU74) carrying the A4V mutation in the SOD1 gene. The pictures on the right column represent the magnified regions within the yellow dashed squares. Scale bar, 20 μm. (C) Quantification of SOD1 and VCP intensities in MAP2 + neurons within the motor or occipital cortex. Motor cortex, n = 17 neurons; occipital cortex, n = 16 neurons. Unpaired t test (two-tailed), SOD1 p < 0.0001; VCP p < 0.0001.

    Journal: Cell reports

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis

    doi: 10.1016/j.celrep.2023.113160

    Figure Lengend Snippet: (A and B) Immunohistochemistry of VCP and SOD1 in postmortem motor (affected) (A) and occipital (unaffected) (B) cortex from an ALS patient (patient #1-JHU74) carrying the A4V mutation in the SOD1 gene. The pictures on the right column represent the magnified regions within the yellow dashed squares. Scale bar, 20 μm. (C) Quantification of SOD1 and VCP intensities in MAP2 + neurons within the motor or occipital cortex. Motor cortex, n = 17 neurons; occipital cortex, n = 16 neurons. Unpaired t test (two-tailed), SOD1 p < 0.0001; VCP p < 0.0001.

    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Techniques: Immunohistochemistry, Mutagenesis, Two Tailed Test

    Journal: Cell reports

    Article Title: Analysis of proteome-wide degradation dynamics in ALS SOD1 iPSC-derived patient neurons reveals disrupted VCP homeostasis

    doi: 10.1016/j.celrep.2023.113160

    Figure Lengend Snippet:

    Article Snippet: Patient 1 (JHU74), postmortem ALS brain tissue from motor and occipital cortex , Johns Hopkins University , SOD1 +/A4V , Male,47 (age of death).

    Techniques: Cell Culture, Sterility, Recombinant, Multiplex sample analysis, Western Blot, Stripping, Protease Inhibitor, Plasmid Preparation, Activity Assay, Magnetic Beads, Ligation, Bicinchoninic Acid Protein Assay, Mass Spectrometry, Virus, Software