human leptin receptor enzyme Search Results


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Sino Biological murine st2
Murine St2, supplied by Sino Biological, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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LINCO non radioactive human elisa kits
Non Radioactive Human Elisa Kits, supplied by LINCO, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Becton Dickinson human mig elisa set opteia
Human Mig Elisa Set Opteia, supplied by Becton Dickinson, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Becton Dickinson and dickinson elispot set human il-5
Peripheral Blood Mononuclear Cells from immunised volunteers 28 days after the second immunisation and 28 days after the third immunisation (day 56 and 84 respectively) were stimulated with 6 µg of Pf AMA1 vaccine. Production of <t>IFNγ</t> and IL-5 was measured by counting spots in <t>ELISPOT</t> plates. Box plots and whiskers show the range and the 25 th , 50 th and 75 th percentile of spots per 2×10 5 cells. Circles represent outliers.
And Dickinson Elispot Set Human Il 5, supplied by Becton Dickinson, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bachem prolyl oligopeptidase inhibitor z-pro-pro-aldehyde-dimethyl acetal
Peripheral Blood Mononuclear Cells from immunised volunteers 28 days after the second immunisation and 28 days after the third immunisation (day 56 and 84 respectively) were stimulated with 6 µg of Pf AMA1 vaccine. Production of <t>IFNγ</t> and IL-5 was measured by counting spots in <t>ELISPOT</t> plates. Box plots and whiskers show the range and the 25 th , 50 th and 75 th percentile of spots per 2×10 5 cells. Circles represent outliers.
Prolyl Oligopeptidase Inhibitor Z Pro Pro Aldehyde Dimethyl Acetal, supplied by Bachem, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems mouse tnf α duoset elisa kit
PLY-EVs induce dendritic cell maturation and inflammatory cytokine release upon internalization (A) Confocal microscopy images showing the internalization of CFSE-labelled PLY (0.1) and naive EVs (green) by THP-1-monocyte-derived DCs at 24 h post-treatment. Scale bars, 25 μm. (B) Flow cytometry histograms ( N = 3) to quantify the DC uptake of CFSE-labeled PLY(0.5)EVs and naive EVs. (C) Dose-dependent uptake of PLY (0.1, 0.5) EVs by DCs. (D) Phase-contrast microscopy images of immature day 5 DCs coincubated with PLY (0.1, 0.5) EVs and naive EVs for 24 h. Arrows indicate matured DCs (magnified in inset). Scale bars, 50 μm. Images are representative of three independent experiments. (E–G) Flow cytometry histograms ( N = 3) to quantify the expression levels of (E) CD80, (F) CD86, and (G) CD83 on THP-1-monocyte-derived DCs treated with PLY(0.5) and naive EVs. (H and I) Flow cytometry histograms ( N = 2) showing the expression levels of DC maturation marker CD83 at 96 h post-incubation of primary human monocytes with (H) PLY(0.5) and naive EVs and (I) naive EVs pre-treated with recombinant PLY protein (naive EVs+rPLY). (J and K) Cytokine <t>ELISA</t> showing the levels of secreted TNF-α from (J) DCs treated with PLY (0.1) EVs or naive EVs alone ( N = 3) for 24 h and (K) DCs pre-treated with PLY (0.1,0.5) or naive EVs for 24 h followed by subsequent infection with S. pneumoniae , T4R strain ( N = 2). Recombinant PLY (0.5 μg/mL) was used as positive control. All data are represented as mean ± SEM. ∗ p < 0.05, ∗∗ p < 0.005, and ∗∗∗ p < 0.001 by one-way ANOVA with Tukey’s multiple comparisons test. n.s., not significant. See also <xref ref-type=Figures S6–S9 . " width="250" height="auto" />
Mouse Tnf α Duoset Elisa Kit, supplied by R&D Systems, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Thermo Fisher zeocin
PLY-EVs induce dendritic cell maturation and inflammatory cytokine release upon internalization (A) Confocal microscopy images showing the internalization of CFSE-labelled PLY (0.1) and naive EVs (green) by THP-1-monocyte-derived DCs at 24 h post-treatment. Scale bars, 25 μm. (B) Flow cytometry histograms ( N = 3) to quantify the DC uptake of CFSE-labeled PLY(0.5)EVs and naive EVs. (C) Dose-dependent uptake of PLY (0.1, 0.5) EVs by DCs. (D) Phase-contrast microscopy images of immature day 5 DCs coincubated with PLY (0.1, 0.5) EVs and naive EVs for 24 h. Arrows indicate matured DCs (magnified in inset). Scale bars, 50 μm. Images are representative of three independent experiments. (E–G) Flow cytometry histograms ( N = 3) to quantify the expression levels of (E) CD80, (F) CD86, and (G) CD83 on THP-1-monocyte-derived DCs treated with PLY(0.5) and naive EVs. (H and I) Flow cytometry histograms ( N = 2) showing the expression levels of DC maturation marker CD83 at 96 h post-incubation of primary human monocytes with (H) PLY(0.5) and naive EVs and (I) naive EVs pre-treated with recombinant PLY protein (naive EVs+rPLY). (J and K) Cytokine <t>ELISA</t> showing the levels of secreted TNF-α from (J) DCs treated with PLY (0.1) EVs or naive EVs alone ( N = 3) for 24 h and (K) DCs pre-treated with PLY (0.1,0.5) or naive EVs for 24 h followed by subsequent infection with S. pneumoniae , T4R strain ( N = 2). Recombinant PLY (0.5 μg/mL) was used as positive control. All data are represented as mean ± SEM. ∗ p < 0.05, ∗∗ p < 0.005, and ∗∗∗ p < 0.001 by one-way ANOVA with Tukey’s multiple comparisons test. n.s., not significant. See also <xref ref-type=Figures S6–S9 . " width="250" height="auto" />
Zeocin, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+leptin+receptor+enzyme/Zeocin/pm16607379-38-105-107
Average 99 stars, based on 1 article reviews
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Alerchek Inc apolipoprotein a1
PLY-EVs induce dendritic cell maturation and inflammatory cytokine release upon internalization (A) Confocal microscopy images showing the internalization of CFSE-labelled PLY (0.1) and naive EVs (green) by THP-1-monocyte-derived DCs at 24 h post-treatment. Scale bars, 25 μm. (B) Flow cytometry histograms ( N = 3) to quantify the DC uptake of CFSE-labeled PLY(0.5)EVs and naive EVs. (C) Dose-dependent uptake of PLY (0.1, 0.5) EVs by DCs. (D) Phase-contrast microscopy images of immature day 5 DCs coincubated with PLY (0.1, 0.5) EVs and naive EVs for 24 h. Arrows indicate matured DCs (magnified in inset). Scale bars, 50 μm. Images are representative of three independent experiments. (E–G) Flow cytometry histograms ( N = 3) to quantify the expression levels of (E) CD80, (F) CD86, and (G) CD83 on THP-1-monocyte-derived DCs treated with PLY(0.5) and naive EVs. (H and I) Flow cytometry histograms ( N = 2) showing the expression levels of DC maturation marker CD83 at 96 h post-incubation of primary human monocytes with (H) PLY(0.5) and naive EVs and (I) naive EVs pre-treated with recombinant PLY protein (naive EVs+rPLY). (J and K) Cytokine <t>ELISA</t> showing the levels of secreted TNF-α from (J) DCs treated with PLY (0.1) EVs or naive EVs alone ( N = 3) for 24 h and (K) DCs pre-treated with PLY (0.1,0.5) or naive EVs for 24 h followed by subsequent infection with S. pneumoniae , T4R strain ( N = 2). Recombinant PLY (0.5 μg/mL) was used as positive control. All data are represented as mean ± SEM. ∗ p < 0.05, ∗∗ p < 0.005, and ∗∗∗ p < 0.001 by one-way ANOVA with Tukey’s multiple comparisons test. n.s., not significant. See also <xref ref-type=Figures S6–S9 . " width="250" height="auto" />
Apolipoprotein A1, supplied by Alerchek Inc, 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/human+leptin+receptor+enzyme/apolipoprotein+a1/us07723045-603-0-13
Average 90 stars, based on 1 article reviews
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Aviva Systems alpha 1 antitrypsin a1at
Fig. 2 Hydrogel scaffolds created a healthier physiological microenvironment and enhanced the responsiveness of hepatic tissue. (A and B) Levels of secreted analytes (pg mL−1) in day 15 effluent from hepatic tissue supported by either polystyrene or hydrogel scaffolds were measured; 53 analytes were above the LoD (n = 5 donors). (A) Scatter plot depicts levels of secreted analytes in hepatic tissue supported by polystyrene vs. hydrogel scaffolds. Significantly altered analytes (black circles) via non-parametric pairwise Wilcoxon rank sum tests (p < 0.05): IL-12p70, IL-13, IL-15, SDF-1α/β and VEGF-A, and those with a >1.5 ratio change (red circles). (B) Graphs summarize analytes exhibiting marked ratio changes >1.5 in polystyrene (top) or hydrogel (bottom) scaffolds. (C) Immunofluorescent images of hepatic tissue formed in polystyrene or hydrogel scaffolds on day 15, obtained using a 20× objective. Red – α-SMA; blue – DAPI. (D and E) Fold changes in acute phase protein production <t>(A1AT</t> and fibrinogen) fol- lowing stimulation with LPS. Protein levels were measured by ELISA on day 15 following stimulation with 1 μg mL−1 LPS for 24 hours (n = 2 do- nors each in duplicate). Fold change was determined by for each pa- tient donor by normalizing each stimulated group to its respective unstimulated control group. Significant differences were determined via non-parametric pairwise Wilcoxon rank sum tests (*p < 0.05).
Alpha 1 Antitrypsin A1at, supplied by Aviva Systems, 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/human+leptin+receptor+enzyme/Human+Alpha+1-Antitrypsin+Protein/10__1039_slash_C6LC01171C-70-0-21
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Thermo Fisher copy number variation aldh1b1 hs00494449 cn
Fig. 2 Hydrogel scaffolds created a healthier physiological microenvironment and enhanced the responsiveness of hepatic tissue. (A and B) Levels of secreted analytes (pg mL−1) in day 15 effluent from hepatic tissue supported by either polystyrene or hydrogel scaffolds were measured; 53 analytes were above the LoD (n = 5 donors). (A) Scatter plot depicts levels of secreted analytes in hepatic tissue supported by polystyrene vs. hydrogel scaffolds. Significantly altered analytes (black circles) via non-parametric pairwise Wilcoxon rank sum tests (p < 0.05): IL-12p70, IL-13, IL-15, SDF-1α/β and VEGF-A, and those with a >1.5 ratio change (red circles). (B) Graphs summarize analytes exhibiting marked ratio changes >1.5 in polystyrene (top) or hydrogel (bottom) scaffolds. (C) Immunofluorescent images of hepatic tissue formed in polystyrene or hydrogel scaffolds on day 15, obtained using a 20× objective. Red – α-SMA; blue – DAPI. (D and E) Fold changes in acute phase protein production <t>(A1AT</t> and fibrinogen) fol- lowing stimulation with LPS. Protein levels were measured by ELISA on day 15 following stimulation with 1 μg mL−1 LPS for 24 hours (n = 2 do- nors each in duplicate). Fold change was determined by for each pa- tient donor by normalizing each stimulated group to its respective unstimulated control group. Significant differences were determined via non-parametric pairwise Wilcoxon rank sum tests (*p < 0.05).
Copy Number Variation Aldh1b1 Hs00494449 Cn, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Thermo Fisher edta plasma
Fig. 2 Hydrogel scaffolds created a healthier physiological microenvironment and enhanced the responsiveness of hepatic tissue. (A and B) Levels of secreted analytes (pg mL−1) in day 15 effluent from hepatic tissue supported by either polystyrene or hydrogel scaffolds were measured; 53 analytes were above the LoD (n = 5 donors). (A) Scatter plot depicts levels of secreted analytes in hepatic tissue supported by polystyrene vs. hydrogel scaffolds. Significantly altered analytes (black circles) via non-parametric pairwise Wilcoxon rank sum tests (p < 0.05): IL-12p70, IL-13, IL-15, SDF-1α/β and VEGF-A, and those with a >1.5 ratio change (red circles). (B) Graphs summarize analytes exhibiting marked ratio changes >1.5 in polystyrene (top) or hydrogel (bottom) scaffolds. (C) Immunofluorescent images of hepatic tissue formed in polystyrene or hydrogel scaffolds on day 15, obtained using a 20× objective. Red – α-SMA; blue – DAPI. (D and E) Fold changes in acute phase protein production <t>(A1AT</t> and fibrinogen) fol- lowing stimulation with LPS. Protein levels were measured by ELISA on day 15 following stimulation with 1 μg mL−1 LPS for 24 hours (n = 2 do- nors each in duplicate). Fold change was determined by for each pa- tient donor by normalizing each stimulated group to its respective unstimulated control group. Significant differences were determined via non-parametric pairwise Wilcoxon rank sum tests (*p < 0.05).
Edta Plasma, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Thermo Fisher mirvana rna isolation kit
Fig. 2 Hydrogel scaffolds created a healthier physiological microenvironment and enhanced the responsiveness of hepatic tissue. (A and B) Levels of secreted analytes (pg mL−1) in day 15 effluent from hepatic tissue supported by either polystyrene or hydrogel scaffolds were measured; 53 analytes were above the LoD (n = 5 donors). (A) Scatter plot depicts levels of secreted analytes in hepatic tissue supported by polystyrene vs. hydrogel scaffolds. Significantly altered analytes (black circles) via non-parametric pairwise Wilcoxon rank sum tests (p < 0.05): IL-12p70, IL-13, IL-15, SDF-1α/β and VEGF-A, and those with a >1.5 ratio change (red circles). (B) Graphs summarize analytes exhibiting marked ratio changes >1.5 in polystyrene (top) or hydrogel (bottom) scaffolds. (C) Immunofluorescent images of hepatic tissue formed in polystyrene or hydrogel scaffolds on day 15, obtained using a 20× objective. Red – α-SMA; blue – DAPI. (D and E) Fold changes in acute phase protein production <t>(A1AT</t> and fibrinogen) fol- lowing stimulation with LPS. Protein levels were measured by ELISA on day 15 following stimulation with 1 μg mL−1 LPS for 24 hours (n = 2 do- nors each in duplicate). Fold change was determined by for each pa- tient donor by normalizing each stimulated group to its respective unstimulated control group. Significant differences were determined via non-parametric pairwise Wilcoxon rank sum tests (*p < 0.05).
Mirvana Rna Isolation Kit, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Peripheral Blood Mononuclear Cells from immunised volunteers 28 days after the second immunisation and 28 days after the third immunisation (day 56 and 84 respectively) were stimulated with 6 µg of Pf AMA1 vaccine. Production of IFNγ and IL-5 was measured by counting spots in ELISPOT plates. Box plots and whiskers show the range and the 25 th , 50 th and 75 th percentile of spots per 2×10 5 cells. Circles represent outliers.

Journal: PLoS ONE

Article Title: Safety and Immunogenicity of a Recombinant Plasmodium falciparum AMA1 Malaria Vaccine Adjuvanted with Alhydrogel™, Montanide ISA 720 or AS02

doi: 10.1371/journal.pone.0003960

Figure Lengend Snippet: Peripheral Blood Mononuclear Cells from immunised volunteers 28 days after the second immunisation and 28 days after the third immunisation (day 56 and 84 respectively) were stimulated with 6 µg of Pf AMA1 vaccine. Production of IFNγ and IL-5 was measured by counting spots in ELISPOT plates. Box plots and whiskers show the range and the 25 th , 50 th and 75 th percentile of spots per 2×10 5 cells. Circles represent outliers.

Article Snippet: ELISPOT was performed according to manufacturer's instructions (Becton and Dickinson Elispot Set Human IFNγ or IL-5).

Techniques: Enzyme-linked Immunospot

PLY-EVs induce dendritic cell maturation and inflammatory cytokine release upon internalization (A) Confocal microscopy images showing the internalization of CFSE-labelled PLY (0.1) and naive EVs (green) by THP-1-monocyte-derived DCs at 24 h post-treatment. Scale bars, 25 μm. (B) Flow cytometry histograms ( N = 3) to quantify the DC uptake of CFSE-labeled PLY(0.5)EVs and naive EVs. (C) Dose-dependent uptake of PLY (0.1, 0.5) EVs by DCs. (D) Phase-contrast microscopy images of immature day 5 DCs coincubated with PLY (0.1, 0.5) EVs and naive EVs for 24 h. Arrows indicate matured DCs (magnified in inset). Scale bars, 50 μm. Images are representative of three independent experiments. (E–G) Flow cytometry histograms ( N = 3) to quantify the expression levels of (E) CD80, (F) CD86, and (G) CD83 on THP-1-monocyte-derived DCs treated with PLY(0.5) and naive EVs. (H and I) Flow cytometry histograms ( N = 2) showing the expression levels of DC maturation marker CD83 at 96 h post-incubation of primary human monocytes with (H) PLY(0.5) and naive EVs and (I) naive EVs pre-treated with recombinant PLY protein (naive EVs+rPLY). (J and K) Cytokine ELISA showing the levels of secreted TNF-α from (J) DCs treated with PLY (0.1) EVs or naive EVs alone ( N = 3) for 24 h and (K) DCs pre-treated with PLY (0.1,0.5) or naive EVs for 24 h followed by subsequent infection with S. pneumoniae , T4R strain ( N = 2). Recombinant PLY (0.5 μg/mL) was used as positive control. All data are represented as mean ± SEM. ∗ p < 0.05, ∗∗ p < 0.005, and ∗∗∗ p < 0.001 by one-way ANOVA with Tukey’s multiple comparisons test. n.s., not significant. See also <xref ref-type=Figures S6–S9 . " width="100%" height="100%">

Journal: iScience

Article Title: Bacterial pore-forming toxin pneumolysin drives pathogenicity through host extracellular vesicles released during infection

doi: 10.1016/j.isci.2024.110589

Figure Lengend Snippet: PLY-EVs induce dendritic cell maturation and inflammatory cytokine release upon internalization (A) Confocal microscopy images showing the internalization of CFSE-labelled PLY (0.1) and naive EVs (green) by THP-1-monocyte-derived DCs at 24 h post-treatment. Scale bars, 25 μm. (B) Flow cytometry histograms ( N = 3) to quantify the DC uptake of CFSE-labeled PLY(0.5)EVs and naive EVs. (C) Dose-dependent uptake of PLY (0.1, 0.5) EVs by DCs. (D) Phase-contrast microscopy images of immature day 5 DCs coincubated with PLY (0.1, 0.5) EVs and naive EVs for 24 h. Arrows indicate matured DCs (magnified in inset). Scale bars, 50 μm. Images are representative of three independent experiments. (E–G) Flow cytometry histograms ( N = 3) to quantify the expression levels of (E) CD80, (F) CD86, and (G) CD83 on THP-1-monocyte-derived DCs treated with PLY(0.5) and naive EVs. (H and I) Flow cytometry histograms ( N = 2) showing the expression levels of DC maturation marker CD83 at 96 h post-incubation of primary human monocytes with (H) PLY(0.5) and naive EVs and (I) naive EVs pre-treated with recombinant PLY protein (naive EVs+rPLY). (J and K) Cytokine ELISA showing the levels of secreted TNF-α from (J) DCs treated with PLY (0.1) EVs or naive EVs alone ( N = 3) for 24 h and (K) DCs pre-treated with PLY (0.1,0.5) or naive EVs for 24 h followed by subsequent infection with S. pneumoniae , T4R strain ( N = 2). Recombinant PLY (0.5 μg/mL) was used as positive control. All data are represented as mean ± SEM. ∗ p < 0.05, ∗∗ p < 0.005, and ∗∗∗ p < 0.001 by one-way ANOVA with Tukey’s multiple comparisons test. n.s., not significant. See also Figures S6–S9 .

Article Snippet: Mouse TNF-α DuoSet ELISA kit , R & D Systems , DY410-05.

Techniques: Confocal Microscopy, Derivative Assay, Flow Cytometry, Labeling, Microscopy, Expressing, Marker, Incubation, Recombinant, Enzyme-linked Immunosorbent Assay, Infection, Positive Control

Adoptive transfer of EVs from infected mice drives inflammation and pathology in a PLY-dependent manner (A) C57BL/6 mice were intranasally administered with 4 × 10 6 CFU of serotype 4 strain, T4 or the isogenic PLY mutant strain, T4Δply. At day 4 post-infection, EVs isolated from BALF were labeled and administered to healthy recipient mice at 35 μg/mice. The EV retention in murine respiratory tract was imaged by IVIS imaging and immune infiltration into lungs, and cytokine levels in BALF was measured. (B) Bacterial load in murine BALF ( N = 5 mice/group) upon infection with T4 and T4Δply strains was measured by CFU dilution assay. ∗∗ in (B) indicates p < 0.01 by Mann-Whitney test. (C) Quantification of relative total EV protein content from mice ( N = 3 mice/group) infected with T4 and T4Δply strains by BCA protein assay. PBS-treated mice served as control. ∗ and ∗∗ in (C) indicates p < 0.05 and p < 0.005, respectively, by unpaired t test. (D) IVIS imaging of mice intranasally administered with Nile-red-labeled EVs isolated from mice infected with T4 (EVs-T4) or T4Δply (EVs-T4Δply). EVs from PBS-treated mice (naive EVs) served as control. ROI intensity values indicate the total flux (photons/sec) recorded from the given region showing higher intensity of EVs from T4-infected mice in the respiratory tract. The color scale (photons/sec/cm 2 ) indicates the relative intensities of individual signals. (E and F) Flow cytometry analysis of inflammatory macrophages (F4/80 + ) and neutrophils (Ly6G + ) in BALF of mice ( N = 6 mice/group) administered with EVs from infected or untreated mice at 18 h. (G) TNF-α levels in the BALF of mice ( N = 5 mice/group) treated with EVs isolated from infected or untreated mice were measured post-sacrifice at 18 h by ELISA. ∗∗ and ∗∗∗ in (G) indicates p < 0.01 and p < 0.001, respectively, by unpaired t test. (H) Hematoxylin and eosin (H&E) staining of mouse lungs ( N = 6 mice/group) at 18 h post-administration of EVs from infected or PBS-treated mice. Mice treated with EVs from T4-infected mice showed tissue microlesions (MLEs) and immune cell infiltration in the alveolar interstitium indicative of PLY-induced tissue damage (magnified in the inset). BR, bronchiole; MLE, microlesions. Scale bars, 200 μm. Blind histopathological scoring was performed based on presence or absence of cellularity in alveolar interstitium and lesions. A score of “0” was given when no lesions were found, and a score of “1” was given to tissue showing increasing cellularity and lesions. Mouse BALF flow cytometry and histology data are representative of three independent experiments. All data are represented as mean ± SEM. See also <xref ref-type=Figure S12 . " width="100%" height="100%">

Journal: iScience

Article Title: Bacterial pore-forming toxin pneumolysin drives pathogenicity through host extracellular vesicles released during infection

doi: 10.1016/j.isci.2024.110589

Figure Lengend Snippet: Adoptive transfer of EVs from infected mice drives inflammation and pathology in a PLY-dependent manner (A) C57BL/6 mice were intranasally administered with 4 × 10 6 CFU of serotype 4 strain, T4 or the isogenic PLY mutant strain, T4Δply. At day 4 post-infection, EVs isolated from BALF were labeled and administered to healthy recipient mice at 35 μg/mice. The EV retention in murine respiratory tract was imaged by IVIS imaging and immune infiltration into lungs, and cytokine levels in BALF was measured. (B) Bacterial load in murine BALF ( N = 5 mice/group) upon infection with T4 and T4Δply strains was measured by CFU dilution assay. ∗∗ in (B) indicates p < 0.01 by Mann-Whitney test. (C) Quantification of relative total EV protein content from mice ( N = 3 mice/group) infected with T4 and T4Δply strains by BCA protein assay. PBS-treated mice served as control. ∗ and ∗∗ in (C) indicates p < 0.05 and p < 0.005, respectively, by unpaired t test. (D) IVIS imaging of mice intranasally administered with Nile-red-labeled EVs isolated from mice infected with T4 (EVs-T4) or T4Δply (EVs-T4Δply). EVs from PBS-treated mice (naive EVs) served as control. ROI intensity values indicate the total flux (photons/sec) recorded from the given region showing higher intensity of EVs from T4-infected mice in the respiratory tract. The color scale (photons/sec/cm 2 ) indicates the relative intensities of individual signals. (E and F) Flow cytometry analysis of inflammatory macrophages (F4/80 + ) and neutrophils (Ly6G + ) in BALF of mice ( N = 6 mice/group) administered with EVs from infected or untreated mice at 18 h. (G) TNF-α levels in the BALF of mice ( N = 5 mice/group) treated with EVs isolated from infected or untreated mice were measured post-sacrifice at 18 h by ELISA. ∗∗ and ∗∗∗ in (G) indicates p < 0.01 and p < 0.001, respectively, by unpaired t test. (H) Hematoxylin and eosin (H&E) staining of mouse lungs ( N = 6 mice/group) at 18 h post-administration of EVs from infected or PBS-treated mice. Mice treated with EVs from T4-infected mice showed tissue microlesions (MLEs) and immune cell infiltration in the alveolar interstitium indicative of PLY-induced tissue damage (magnified in the inset). BR, bronchiole; MLE, microlesions. Scale bars, 200 μm. Blind histopathological scoring was performed based on presence or absence of cellularity in alveolar interstitium and lesions. A score of “0” was given when no lesions were found, and a score of “1” was given to tissue showing increasing cellularity and lesions. Mouse BALF flow cytometry and histology data are representative of three independent experiments. All data are represented as mean ± SEM. See also Figure S12 .

Article Snippet: Mouse TNF-α DuoSet ELISA kit , R & D Systems , DY410-05.

Techniques: Adoptive Transfer Assay, Infection, Mutagenesis, Isolation, Labeling, Imaging, Dilution Assay, MANN-WHITNEY, Bicinchoninic Acid Protein Assay, Control, Flow Cytometry, Enzyme-linked Immunosorbent Assay, Staining

Journal: iScience

Article Title: Bacterial pore-forming toxin pneumolysin drives pathogenicity through host extracellular vesicles released during infection

doi: 10.1016/j.isci.2024.110589

Figure Lengend Snippet:

Article Snippet: Mouse TNF-α DuoSet ELISA kit , R & D Systems , DY410-05.

Techniques: Virus, Mutagenesis, Isolation, Recombinant, Modification, Saline, Labeling, Staining, Electron Microscopy, Lysis, Western Blot, Buffer Exchange, Bicinchoninic Acid Protein Assay, Enzyme-linked Immunosorbent Assay, Clone Assay, Software, Membrane

Fig. 2 Hydrogel scaffolds created a healthier physiological microenvironment and enhanced the responsiveness of hepatic tissue. (A and B) Levels of secreted analytes (pg mL−1) in day 15 effluent from hepatic tissue supported by either polystyrene or hydrogel scaffolds were measured; 53 analytes were above the LoD (n = 5 donors). (A) Scatter plot depicts levels of secreted analytes in hepatic tissue supported by polystyrene vs. hydrogel scaffolds. Significantly altered analytes (black circles) via non-parametric pairwise Wilcoxon rank sum tests (p < 0.05): IL-12p70, IL-13, IL-15, SDF-1α/β and VEGF-A, and those with a >1.5 ratio change (red circles). (B) Graphs summarize analytes exhibiting marked ratio changes >1.5 in polystyrene (top) or hydrogel (bottom) scaffolds. (C) Immunofluorescent images of hepatic tissue formed in polystyrene or hydrogel scaffolds on day 15, obtained using a 20× objective. Red – α-SMA; blue – DAPI. (D and E) Fold changes in acute phase protein production (A1AT and fibrinogen) fol- lowing stimulation with LPS. Protein levels were measured by ELISA on day 15 following stimulation with 1 μg mL−1 LPS for 24 hours (n = 2 do- nors each in duplicate). Fold change was determined by for each pa- tient donor by normalizing each stimulated group to its respective unstimulated control group. Significant differences were determined via non-parametric pairwise Wilcoxon rank sum tests (*p < 0.05).

Journal: Lab on a Chip

Article Title: A liver microphysiological system of tumor cell dormancy and inflammatory responsiveness is affected by scaffold properties

doi: 10.1039/C6LC01171C

Figure Lengend Snippet: Fig. 2 Hydrogel scaffolds created a healthier physiological microenvironment and enhanced the responsiveness of hepatic tissue. (A and B) Levels of secreted analytes (pg mL−1) in day 15 effluent from hepatic tissue supported by either polystyrene or hydrogel scaffolds were measured; 53 analytes were above the LoD (n = 5 donors). (A) Scatter plot depicts levels of secreted analytes in hepatic tissue supported by polystyrene vs. hydrogel scaffolds. Significantly altered analytes (black circles) via non-parametric pairwise Wilcoxon rank sum tests (p < 0.05): IL-12p70, IL-13, IL-15, SDF-1α/β and VEGF-A, and those with a >1.5 ratio change (red circles). (B) Graphs summarize analytes exhibiting marked ratio changes >1.5 in polystyrene (top) or hydrogel (bottom) scaffolds. (C) Immunofluorescent images of hepatic tissue formed in polystyrene or hydrogel scaffolds on day 15, obtained using a 20× objective. Red – α-SMA; blue – DAPI. (D and E) Fold changes in acute phase protein production (A1AT and fibrinogen) fol- lowing stimulation with LPS. Protein levels were measured by ELISA on day 15 following stimulation with 1 μg mL−1 LPS for 24 hours (n = 2 do- nors each in duplicate). Fold change was determined by for each pa- tient donor by normalizing each stimulated group to its respective unstimulated control group. Significant differences were determined via non-parametric pairwise Wilcoxon rank sum tests (*p < 0.05).

Article Snippet: Alpha-1-antitrypsin (A1AT) and fibrinogen secretion from hepatic tissue was measured using Enzyme-linked immunosorbent assays (ELISAs) kits according to the manufacturer's instructions (Genway Biotech Inc, San Diego, CA).

Techniques: Enzyme-linked Immunosorbent Assay, Control