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Abbott Laboratories i stat 1 portable blood analyzer
I Stat 1 Portable Blood Analyzer, supplied by Abbott Laboratories, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Related Articles

other:

Article Title: High Frailty Index Scores Predict Mortality and Changes in Blood-Based Biomarkers in Aging Female Mice.
Article Snippet: We used a CHEM8+ cartridge (Abbott Diagnostics) to measure the levels of electrolytes (sodium, potassium, chloride, ionized calcium, total CO2), metabolic markers (glucose, urea, creatinine), hematocrit, and hemoglobin.

Article Title: High-Altitude Hypoxic Preconditioning Attenuates Lipopolysaccharide-Induced Lung Injury and is Associated with Alveolar-Capillary Barrier Maintenance
Article Snippet: After opening the abdominal cavity as described above, arterial blood was collected from the abdominal aorta using a heparinized syringe and immediately analyzed with a blood gas analyzer (iSTAT1, Abbott, USA).

Concentration Assay:

Article Title: Interference of high dose ascorbate in blood gas, point-of-care, and automated clinical chemistry assays.
Article Snippet: Ascorbic acid (AA) has been under investigation for a variety of therapeutic indications, including cancer treatment and sepsis.. New investigational treatments utilize much higher concentrations than historical studies, leading to uncertainty about the effects on clinical testing platforms.. Published work indicates AA interferes with lipid and point-of-care glucometer measurements, however a comprehensive evaluation of potential interference at these higher concentrations with a unified experimental design is lacking.

Stripping Membranes:

Article Title: Heat Stress Induces Metabolic and Physiological Imbalance in Laying Hens, Accompanied by Hepatic Transcriptomic, Cecal Microbial, and Metabolomic Alterations.
Article Snippet: .. The strip was immediately inserted into an i-STAT 1 portable blood analyzer (Abbott, Chicago, IL, USA), and the blood gas parameters were automatically measured and recorded [34]. ..



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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio <t>Mouse</t> <t>JAK/STAT</t> Pathway <t>Phosphorylation</t> Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.
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Image Search Results


Summary of pharmacologic  PKC  isoform inhibitors used <xref ref-type= a " width="100%" height="100%">

Journal: Journal of Virology

Article Title: PKC inhibitors reveal PKC isoforms involved in HIV latency reversal and immunomodulation

doi: 10.1128/jvi.00500-26

Figure Lengend Snippet: Summary of pharmacologic PKC isoform inhibitors used a

Article Snippet: The following commercially available PKC isoform inhibitor compounds were used based on their reported biological activities against PKC isoforms: PKCε inhibitor V1-2/εV1-2 (MedChemExpress and Cayman Chemicals) ( , ), ζ-Stat (MedChemExpress) ( , ), PKCθ inhibitor (MedChemExpress and Selleck Chemicals) , PKCβ inhibitor 1 (MedChemExpress) ( , ), and Go-6983 (MedChemExpress) ( , ). summarizes the specific inhibitor used and the complement of PKC isoforms inhibited by the compound at the concentrations used in this study.

Techniques: Concentration Assay

CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio Mouse JAK/STAT Pathway Phosphorylation Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.

Journal: Stem Cell Reports

Article Title: CCL5 exposure promotes acute and transient megakaryopoiesis and hematopoietic progenitor expansion

doi: 10.1016/j.stemcr.2026.103014

Figure Lengend Snippet: CCL5 administration induces transcriptional changes in megakaryocytes (A) Mice were treated with CCL5 as previously described, and bone marrow MKs were isolated after 24 h following lineage depletion and enrichment by flow cytometry sorting. RNA was extracted using TRIzol purification, and RNA sequencing was performed (4n vs. 4n). (B) Volcano plot shows genes that are significantly up- and down-regulated. The points highlighted in purple are genes that have padj <0.05 and a log2-fold change >1. Points in blue have a padj <0.05 and a log2-fold change <1. Gray points are non-significant. The dashed lines correspond to the cutoff values of log2 fold-change and padj chosen. (C) Differentially expressed genes associated with mitochondrial metabolism. Expression values are presented in log 2 scale, and statistical significance was determined using padj. N represents a pool of 2 mice. (D) Male mice received retro-orbital injections of CCL5 (0.05 mg/kg) or vehicle ( Ctrl ). After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio Mouse JAK/STAT Pathway Phosphorylation Array. Signal intensity was quantified with Fiji. N represents a pool of 5 mice per group. (E) Representative histograms of TMRM in MKs by flow cytometry after CCL5 administration (Gray: FMO; Black: Ctrl; Red: CCL5). (F) MKs were identified by flow cytometry, and the mean fluorescence intensity of TMRM was quantified ( n = 4–5). Data are presented as mean ± SD. Statistical analyses were performed using an unpaired, two-tailed Student’s t test. N represents an individual mouse. Illustrations were created with BioRender. padj, adjusted p value.

Article Snippet: After 24 h, MKs were isolated by size exclusion, lysed, and analyzed using a RayBio Mouse JAK/STAT Pathway Phosphorylation Array.

Techniques: Isolation, Flow Cytometry, Purification, RNA Sequencing, Expressing, Phospho-proteomics, Fluorescence, Two Tailed Test