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random blood glucose 16 7 mmol l rhadamts13  (R&D Systems)


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    Structured Review

    R&D Systems random blood glucose 16 7 mmol l rhadamts13
    ADAMTS13 maintained renal function and attenuated renal fibrosis in vivo . Control mice were treated with vehicle (Control). The STZ-treated mice were infused with vehicle (DN) or <t>rhADAMTS13</t> (DN + rhADAMTS13). rhADAMTS13 (2.6 ug/kg body weight) was injected into the tail vein daily for the subsequent 7 d. (A) The workflow of animal experiments. (B) Representative renal immunohistochemical staining of ADAMTS13 in the kidney. Scale Bar: 30 μm. (C) Representative renal morphological images of mice were shown. Hematoxylin-Eosin (HE), Masson’s trichrome and Periodic Acid-Schiff (PAS) staining of kidney slices. Scale Bar: 30 μm. (D) Body weight. (E) Serum glucose. (F) BUN. (G) Scr. (H) Urinary volume. (I) Proteinuria. (J) Urinary KIM-1. (K) Renal KIM-1 mRNA expression. ADAMTS13: a disintegrin and metalloprotease with a thrombospondin type 1 motif member 13; DN: diabetic nephropathy; BUN: blood urea nitrogen; Scr: serum creatinine; KIM-1: kidney injury molecule-1. Results were presented as mean ± SEM. N = 5, ** P < 0.01, *** P < 0.001, one-way ANOVA followed by Tukey’s post hoc test.
    Random Blood Glucose 16 7 Mmol L Rhadamts13, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 23 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rhadamts13/pmc13037144-108-11-18?v=R%26D+Systems
    Average 94 stars, based on 23 article reviews
    random blood glucose 16 7 mmol l rhadamts13 - by Bioz Stars, 2026-07
    94/100 stars

    Images

    1) Product Images from "ADAMTS13 ameliorates diabetic nephropathy by Nrf2/GPX4/eNOS signaling pathway"

    Article Title: ADAMTS13 ameliorates diabetic nephropathy by Nrf2/GPX4/eNOS signaling pathway

    Journal: Renal Failure

    doi: 10.1080/0886022X.2026.2646089

    ADAMTS13 maintained renal function and attenuated renal fibrosis in vivo . Control mice were treated with vehicle (Control). The STZ-treated mice were infused with vehicle (DN) or rhADAMTS13 (DN + rhADAMTS13). rhADAMTS13 (2.6 ug/kg body weight) was injected into the tail vein daily for the subsequent 7 d. (A) The workflow of animal experiments. (B) Representative renal immunohistochemical staining of ADAMTS13 in the kidney. Scale Bar: 30 μm. (C) Representative renal morphological images of mice were shown. Hematoxylin-Eosin (HE), Masson’s trichrome and Periodic Acid-Schiff (PAS) staining of kidney slices. Scale Bar: 30 μm. (D) Body weight. (E) Serum glucose. (F) BUN. (G) Scr. (H) Urinary volume. (I) Proteinuria. (J) Urinary KIM-1. (K) Renal KIM-1 mRNA expression. ADAMTS13: a disintegrin and metalloprotease with a thrombospondin type 1 motif member 13; DN: diabetic nephropathy; BUN: blood urea nitrogen; Scr: serum creatinine; KIM-1: kidney injury molecule-1. Results were presented as mean ± SEM. N = 5, ** P < 0.01, *** P < 0.001, one-way ANOVA followed by Tukey’s post hoc test.
    Figure Legend Snippet: ADAMTS13 maintained renal function and attenuated renal fibrosis in vivo . Control mice were treated with vehicle (Control). The STZ-treated mice were infused with vehicle (DN) or rhADAMTS13 (DN + rhADAMTS13). rhADAMTS13 (2.6 ug/kg body weight) was injected into the tail vein daily for the subsequent 7 d. (A) The workflow of animal experiments. (B) Representative renal immunohistochemical staining of ADAMTS13 in the kidney. Scale Bar: 30 μm. (C) Representative renal morphological images of mice were shown. Hematoxylin-Eosin (HE), Masson’s trichrome and Periodic Acid-Schiff (PAS) staining of kidney slices. Scale Bar: 30 μm. (D) Body weight. (E) Serum glucose. (F) BUN. (G) Scr. (H) Urinary volume. (I) Proteinuria. (J) Urinary KIM-1. (K) Renal KIM-1 mRNA expression. ADAMTS13: a disintegrin and metalloprotease with a thrombospondin type 1 motif member 13; DN: diabetic nephropathy; BUN: blood urea nitrogen; Scr: serum creatinine; KIM-1: kidney injury molecule-1. Results were presented as mean ± SEM. N = 5, ** P < 0.01, *** P < 0.001, one-way ANOVA followed by Tukey’s post hoc test.

    Techniques Used: In Vivo, Control, Injection, Immunohistochemical staining, Staining, Expressing



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    ADAMTS13 maintained renal function and attenuated renal fibrosis in vivo . Control mice were treated with vehicle (Control). The STZ-treated mice were infused with vehicle (DN) or <t>rhADAMTS13</t> (DN + rhADAMTS13). rhADAMTS13 (2.6 ug/kg body weight) was injected into the tail vein daily for the subsequent 7 d. (A) The workflow of animal experiments. (B) Representative renal immunohistochemical staining of ADAMTS13 in the kidney. Scale Bar: 30 μm. (C) Representative renal morphological images of mice were shown. Hematoxylin-Eosin (HE), Masson’s trichrome and Periodic Acid-Schiff (PAS) staining of kidney slices. Scale Bar: 30 μm. (D) Body weight. (E) Serum glucose. (F) BUN. (G) Scr. (H) Urinary volume. (I) Proteinuria. (J) Urinary KIM-1. (K) Renal KIM-1 mRNA expression. ADAMTS13: a disintegrin and metalloprotease with a thrombospondin type 1 motif member 13; DN: diabetic nephropathy; BUN: blood urea nitrogen; Scr: serum creatinine; KIM-1: kidney injury molecule-1. Results were presented as mean ± SEM. N = 5, ** P < 0.01, *** P < 0.001, one-way ANOVA followed by Tukey’s post hoc test.
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    R&D Systems rhadamts13
    Fig. 3. Effect of <t>rhADAMTS13</t> on plasma ADAMTS13 activity and vWF-Ag balance and coagulation function in AKI-F mice. (A) Experimental design of treatment with rhADAMTS13 against AKI-F mice. (B) Body weight at the end of experiment. (C and D) Plasma ADAMTS13 activity (C) and plasma vWF-Ag level (D). The values are indicated as % NC group. (E) Pearson’s correlation between plasma ADAMTS13 activity and vWF-Ag level in all of experimental mice. (F) Multimer distribution and the ratios of high (H) to low (L) molecular weight of vWF multimers. (G and H) Platelet count and plasma D-dimer level. Data are the mean ± SD, and *: p < 0.05, **: p < 0.01 with significant difference between groups by Student’s t-test (n = 9; B − D, G and H) or Mann−Whitney U test (n = 3; F). NC, normal control without CCl4 and LPS administration; AKI-F, acute kidney injury mice with advanced liver fibrosis.
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    Fig. 3. Effect of <t>rhADAMTS13</t> on plasma ADAMTS13 activity and vWF-Ag balance and coagulation function in AKI-F mice. (A) Experimental design of treatment with rhADAMTS13 against AKI-F mice. (B) Body weight at the end of experiment. (C and D) Plasma ADAMTS13 activity (C) and plasma vWF-Ag level (D). The values are indicated as % NC group. (E) Pearson’s correlation between plasma ADAMTS13 activity and vWF-Ag level in all of experimental mice. (F) Multimer distribution and the ratios of high (H) to low (L) molecular weight of vWF multimers. (G and H) Platelet count and plasma D-dimer level. Data are the mean ± SD, and *: p < 0.05, **: p < 0.01 with significant difference between groups by Student’s t-test (n = 9; B − D, G and H) or Mann−Whitney U test (n = 3; F). NC, normal control without CCl4 and LPS administration; AKI-F, acute kidney injury mice with advanced liver fibrosis.
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    Fig. 3. Effect of <t>rhADAMTS13</t> on plasma ADAMTS13 activity and vWF-Ag balance and coagulation function in AKI-F mice. (A) Experimental design of treatment with rhADAMTS13 against AKI-F mice. (B) Body weight at the end of experiment. (C and D) Plasma ADAMTS13 activity (C) and plasma vWF-Ag level (D). The values are indicated as % NC group. (E) Pearson’s correlation between plasma ADAMTS13 activity and vWF-Ag level in all of experimental mice. (F) Multimer distribution and the ratios of high (H) to low (L) molecular weight of vWF multimers. (G and H) Platelet count and plasma D-dimer level. Data are the mean ± SD, and *: p < 0.05, **: p < 0.01 with significant difference between groups by Student’s t-test (n = 9; B − D, G and H) or Mann−Whitney U test (n = 3; F). NC, normal control without CCl4 and LPS administration; AKI-F, acute kidney injury mice with advanced liver fibrosis.
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    Image Search Results


    ADAMTS13 maintained renal function and attenuated renal fibrosis in vivo . Control mice were treated with vehicle (Control). The STZ-treated mice were infused with vehicle (DN) or rhADAMTS13 (DN + rhADAMTS13). rhADAMTS13 (2.6 ug/kg body weight) was injected into the tail vein daily for the subsequent 7 d. (A) The workflow of animal experiments. (B) Representative renal immunohistochemical staining of ADAMTS13 in the kidney. Scale Bar: 30 μm. (C) Representative renal morphological images of mice were shown. Hematoxylin-Eosin (HE), Masson’s trichrome and Periodic Acid-Schiff (PAS) staining of kidney slices. Scale Bar: 30 μm. (D) Body weight. (E) Serum glucose. (F) BUN. (G) Scr. (H) Urinary volume. (I) Proteinuria. (J) Urinary KIM-1. (K) Renal KIM-1 mRNA expression. ADAMTS13: a disintegrin and metalloprotease with a thrombospondin type 1 motif member 13; DN: diabetic nephropathy; BUN: blood urea nitrogen; Scr: serum creatinine; KIM-1: kidney injury molecule-1. Results were presented as mean ± SEM. N = 5, ** P < 0.01, *** P < 0.001, one-way ANOVA followed by Tukey’s post hoc test.

    Journal: Renal Failure

    Article Title: ADAMTS13 ameliorates diabetic nephropathy by Nrf2/GPX4/eNOS signaling pathway

    doi: 10.1080/0886022X.2026.2646089

    Figure Lengend Snippet: ADAMTS13 maintained renal function and attenuated renal fibrosis in vivo . Control mice were treated with vehicle (Control). The STZ-treated mice were infused with vehicle (DN) or rhADAMTS13 (DN + rhADAMTS13). rhADAMTS13 (2.6 ug/kg body weight) was injected into the tail vein daily for the subsequent 7 d. (A) The workflow of animal experiments. (B) Representative renal immunohistochemical staining of ADAMTS13 in the kidney. Scale Bar: 30 μm. (C) Representative renal morphological images of mice were shown. Hematoxylin-Eosin (HE), Masson’s trichrome and Periodic Acid-Schiff (PAS) staining of kidney slices. Scale Bar: 30 μm. (D) Body weight. (E) Serum glucose. (F) BUN. (G) Scr. (H) Urinary volume. (I) Proteinuria. (J) Urinary KIM-1. (K) Renal KIM-1 mRNA expression. ADAMTS13: a disintegrin and metalloprotease with a thrombospondin type 1 motif member 13; DN: diabetic nephropathy; BUN: blood urea nitrogen; Scr: serum creatinine; KIM-1: kidney injury molecule-1. Results were presented as mean ± SEM. N = 5, ** P < 0.01, *** P < 0.001, one-way ANOVA followed by Tukey’s post hoc test.

    Article Snippet: Hyperglycemia was defined as a fasting blood glucose ≥11.1 mmol/L or random blood glucose ≥16.7 mmol/L. rhADAMTS13 (4245-AD, R&D Systems, Minneapolis, MN) was dissolved in saline and administered to mice via tail vein injections.

    Techniques: In Vivo, Control, Injection, Immunohistochemical staining, Staining, Expressing

    Fig. 3. Effect of rhADAMTS13 on plasma ADAMTS13 activity and vWF-Ag balance and coagulation function in AKI-F mice. (A) Experimental design of treatment with rhADAMTS13 against AKI-F mice. (B) Body weight at the end of experiment. (C and D) Plasma ADAMTS13 activity (C) and plasma vWF-Ag level (D). The values are indicated as % NC group. (E) Pearson’s correlation between plasma ADAMTS13 activity and vWF-Ag level in all of experimental mice. (F) Multimer distribution and the ratios of high (H) to low (L) molecular weight of vWF multimers. (G and H) Platelet count and plasma D-dimer level. Data are the mean ± SD, and *: p < 0.05, **: p < 0.01 with significant difference between groups by Student’s t-test (n = 9; B − D, G and H) or Mann−Whitney U test (n = 3; F). NC, normal control without CCl4 and LPS administration; AKI-F, acute kidney injury mice with advanced liver fibrosis.

    Journal: Biochimica et biophysica acta. Molecular cell research

    Article Title: Recombinant human ADAMTS13 attenuates LPS-induced acute kidney injury and renal microangiopathy in murine advanced liver fibrosis by cleaving vWF.

    doi: 10.1016/j.bbamcr.2025.120000

    Figure Lengend Snippet: Fig. 3. Effect of rhADAMTS13 on plasma ADAMTS13 activity and vWF-Ag balance and coagulation function in AKI-F mice. (A) Experimental design of treatment with rhADAMTS13 against AKI-F mice. (B) Body weight at the end of experiment. (C and D) Plasma ADAMTS13 activity (C) and plasma vWF-Ag level (D). The values are indicated as % NC group. (E) Pearson’s correlation between plasma ADAMTS13 activity and vWF-Ag level in all of experimental mice. (F) Multimer distribution and the ratios of high (H) to low (L) molecular weight of vWF multimers. (G and H) Platelet count and plasma D-dimer level. Data are the mean ± SD, and *: p < 0.05, **: p < 0.01 with significant difference between groups by Student’s t-test (n = 9; B − D, G and H) or Mann−Whitney U test (n = 3; F). NC, normal control without CCl4 and LPS administration; AKI-F, acute kidney injury mice with advanced liver fibrosis.

    Article Snippet: Recombinant Human ADAMTS13 (Full Length) Protein, Carrier-free used as rhADAMTS13 was obtained from R&D systems (Minneapolis, MN, USA).

    Techniques: Clinical Proteomics, Activity Assay, Coagulation, Molecular Weight, MANN-WHITNEY, Control

    Fig. 6. Effect of rADAMTS13 on renal microthrombus and microangiopathy in AKI-F mice. (A) Renal ADAMTS13 (A) and vWF (B) levels. The values are indicated as % NC group. (C) Pearson’s correlation between renal ADAMTS13 and vWF levels in all of experimental mice. (D) Representative photographs of CD41a staining in kidney tissue of NC, D + 2, D + 3 (with and without treatment with rhADAMTS13) groups. (E) Quantification of CD41a+ microthrombus in kidney tissues. DAPI was used as nuclear staining. (F) Microvascular blood flow in the bilateral kidney tissues. (G) Renal mRNA levels of angiogenic factors (Hif1a, Vegfa, Vegfr2, Angpt1, and Tie2). (H) Renal mRNA levels of vascular inflammation markers (Vcam1, Icam1, Sele, and Selp). Gapdh was used as an internal control for qRT-PCR (G and H). The values are indicated as the ratio to NC group (E − H). Data are the mean ± SD, and *: p < 0.05, **: p < 0.01 with significant difference between groups by Student’s t-test (n = 9; A, B, F −H, n = 6; E). NC, normal control without CCl4 and LPS administration; AKI-F, acute kidney injury mice with advanced liver fibrosis; rAD, recombinant ADAMTS13.

    Journal: Biochimica et biophysica acta. Molecular cell research

    Article Title: Recombinant human ADAMTS13 attenuates LPS-induced acute kidney injury and renal microangiopathy in murine advanced liver fibrosis by cleaving vWF.

    doi: 10.1016/j.bbamcr.2025.120000

    Figure Lengend Snippet: Fig. 6. Effect of rADAMTS13 on renal microthrombus and microangiopathy in AKI-F mice. (A) Renal ADAMTS13 (A) and vWF (B) levels. The values are indicated as % NC group. (C) Pearson’s correlation between renal ADAMTS13 and vWF levels in all of experimental mice. (D) Representative photographs of CD41a staining in kidney tissue of NC, D + 2, D + 3 (with and without treatment with rhADAMTS13) groups. (E) Quantification of CD41a+ microthrombus in kidney tissues. DAPI was used as nuclear staining. (F) Microvascular blood flow in the bilateral kidney tissues. (G) Renal mRNA levels of angiogenic factors (Hif1a, Vegfa, Vegfr2, Angpt1, and Tie2). (H) Renal mRNA levels of vascular inflammation markers (Vcam1, Icam1, Sele, and Selp). Gapdh was used as an internal control for qRT-PCR (G and H). The values are indicated as the ratio to NC group (E − H). Data are the mean ± SD, and *: p < 0.05, **: p < 0.01 with significant difference between groups by Student’s t-test (n = 9; A, B, F −H, n = 6; E). NC, normal control without CCl4 and LPS administration; AKI-F, acute kidney injury mice with advanced liver fibrosis; rAD, recombinant ADAMTS13.

    Article Snippet: Recombinant Human ADAMTS13 (Full Length) Protein, Carrier-free used as rhADAMTS13 was obtained from R&D systems (Minneapolis, MN, USA).

    Techniques: Staining, Control, Quantitative RT-PCR, Recombinant