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gdf15  (R&D Systems)


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    Structured Review

    R&D Systems gdf15
    Gdf15, supplied by R&D Systems, used in various techniques. Bioz Stars score: 96/100, based on 286 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+gdf15+elisa/Human+GDF-15+Quantikine+ELISA+Kit/pm42017539-70-12-15
    Average 96 stars, based on 286 article reviews
    gdf15 - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    Enzyme-linked Immunosorbent Assay:

    Article Title: GDF15 mediates inflammation-associated bone loss through a brain-bone axis
    Article Snippet: .. GDF15 levels were determined using human GDF15 ELISA (R&D, Cat. DY957) with changes to the manufacturer’s protocol: Reagent diluent was replaced by 0.1% casein in PBS and the enzyme was replaced by avidin-HRP (Invitrogen, Cat. 18-4100-51). ..

    Article Title: Fetally-encoded GDF15 and maternal GDF15 sensitivity are major determinants of nausea and vomiting in human pregnancy
    Article Snippet: .. Human GDF15 was measured using the human GDF15 ELISA (Cat#DY957, R&D Systems, BioTechne). ..

    Article Title: GDF15 linked to maternal risk of nausea and vomiting during pregnancy
    Article Snippet: .. Human GDF15 was measured using the human GDF15 ELISA (catalogue no. DY957, R&D Systems, Bio-Techne). ..

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice.
    Article Snippet: .. Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions. ..

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice
    Article Snippet: .. Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions. ..

    Article Title: GDF15 linked to maternal risk of nausea and vomiting during pregnancy.
    Article Snippet: M. Fejzo, N. Rocha, I. Cimino, S. M. Lockhart, C. J. Petry, R. G. Kay, K. Burling, P. Barker, A. L. George, N. Yasara, A. Premawardhena, S. Gong, E. Cook, D. Rimmington, K. Rainbow, D. J. Withers, V. Cortessis, P. M. Mullin, K. W. MacGibbon, E. Jin, A. Kam, A. Campbell, O. Polasek, G. Tzoneva, F. M. Gribble, G. S. H. Yeo, B. Y. H. Lam, V. Saudek, I.. A. Hughes, K. K. Ong, J. R. B. Perry, A. Sutton Cole, M. Baumgarten, P. Welsh, N. Sattar, G. C. S. Smith, D. S. Charnock-Jones, A. P. Coll, C. L. Meek, S. Mettananda, C. Hayward, N. Mancuso & S. O’Rahilly2,24,25 ✉

    Article Title: Activation of the hypothalamic–pituitary–adrenal axis by exogenous and endogenous GDF15
    Article Snippet: For MS1 and MS2, plasma human GDF15 was measured using the human GDF15 Quantikine ELISA (R&D Systems) and plasma mouse corticosterone was measured using the mouse corticosterone ELISA (Cat# 55-CORMS-E01, ALPCO) as per manufacturer instructions. .. For MS12 to MS14, GDF15 was measured using the human GDF15 ELISA (CatDY957, R&D Systems, BioTechne) and plasma mouse corticosterone was measured using the mouse corticosterone EIA (Cat# AC14F1, IDS). .. Plasma leptin was measured using a Meso Scale Discovery two-plex mouse metabolic immunoassay kit (Cat# K15124C, Meso Scale Diagnostics).

    Avidin-Biotin Assay:

    Article Title: GDF15 mediates inflammation-associated bone loss through a brain-bone axis
    Article Snippet: .. GDF15 levels were determined using human GDF15 ELISA (R&D, Cat. DY957) with changes to the manufacturer’s protocol: Reagent diluent was replaced by 0.1% casein in PBS and the enzyme was replaced by avidin-HRP (Invitrogen, Cat. 18-4100-51). ..

    Clinical Proteomics:

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice.
    Article Snippet: .. Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions. ..

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice
    Article Snippet: .. Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions. ..

    Article Title: Activation of the hypothalamic–pituitary–adrenal axis by exogenous and endogenous GDF15
    Article Snippet: For MS1 and MS2, plasma human GDF15 was measured using the human GDF15 Quantikine ELISA (R&D Systems) and plasma mouse corticosterone was measured using the mouse corticosterone ELISA (Cat# 55-CORMS-E01, ALPCO) as per manufacturer instructions. .. For MS12 to MS14, GDF15 was measured using the human GDF15 ELISA (CatDY957, R&D Systems, BioTechne) and plasma mouse corticosterone was measured using the mouse corticosterone EIA (Cat# AC14F1, IDS). .. Plasma leptin was measured using a Meso Scale Discovery two-plex mouse metabolic immunoassay kit (Cat# K15124C, Meso Scale Diagnostics).



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    Circulating <t>GDF15</t> levels increase in individuals with PBH after a mixed meal (A) Experimental design. Blood samples were collected from 15 individuals with PBH, 15 asymptomatic (Asx) individuals, and 10 overweight/obese (Ow/Ob) controls at 0, 30, and 120 min during a mixed-meal test. (B) Plasma glucose measured by yellow springs instruments (YSI). (C) Glucose nadir. (D–G) Plasma insulin, C-peptide, GLP-1, and GDF15 measured by ELISA. (H–P) Pearson correlation analyses between GDF15 and plama glucose (H–J), insulin (K–M), and GLP-1 (N–P) at fasting state, 30 min, and 120 min after meal digestion. Data are represented as mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗ p < 0.0001.
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    Circulating <t>GDF15</t> levels increase in individuals with PBH after a mixed meal (A) Experimental design. Blood samples were collected from 15 individuals with PBH, 15 asymptomatic (Asx) individuals, and 10 overweight/obese (Ow/Ob) controls at 0, 30, and 120 min during a mixed-meal test. (B) Plasma glucose measured by yellow springs instruments (YSI). (C) Glucose nadir. (D–G) Plasma insulin, C-peptide, GLP-1, and GDF15 measured by ELISA. (H–P) Pearson correlation analyses between GDF15 and plama glucose (H–J), insulin (K–M), and GLP-1 (N–P) at fasting state, 30 min, and 120 min after meal digestion. Data are represented as mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗ p < 0.0001.
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    Circulating <t>GDF15</t> levels increase in individuals with PBH after a mixed meal (A) Experimental design. Blood samples were collected from 15 individuals with PBH, 15 asymptomatic (Asx) individuals, and 10 overweight/obese (Ow/Ob) controls at 0, 30, and 120 min during a mixed-meal test. (B) Plasma glucose measured by yellow springs instruments (YSI). (C) Glucose nadir. (D–G) Plasma insulin, C-peptide, GLP-1, and GDF15 measured by ELISA. (H–P) Pearson correlation analyses between GDF15 and plama glucose (H–J), insulin (K–M), and GLP-1 (N–P) at fasting state, 30 min, and 120 min after meal digestion. Data are represented as mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗ p < 0.0001.
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    Image Search Results


    Circulating GDF15 levels increase in individuals with PBH after a mixed meal (A) Experimental design. Blood samples were collected from 15 individuals with PBH, 15 asymptomatic (Asx) individuals, and 10 overweight/obese (Ow/Ob) controls at 0, 30, and 120 min during a mixed-meal test. (B) Plasma glucose measured by yellow springs instruments (YSI). (C) Glucose nadir. (D–G) Plasma insulin, C-peptide, GLP-1, and GDF15 measured by ELISA. (H–P) Pearson correlation analyses between GDF15 and plama glucose (H–J), insulin (K–M), and GLP-1 (N–P) at fasting state, 30 min, and 120 min after meal digestion. Data are represented as mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗ p < 0.0001.

    Journal: Cell Reports Medicine

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice

    doi: 10.1016/j.xcrm.2026.102656

    Figure Lengend Snippet: Circulating GDF15 levels increase in individuals with PBH after a mixed meal (A) Experimental design. Blood samples were collected from 15 individuals with PBH, 15 asymptomatic (Asx) individuals, and 10 overweight/obese (Ow/Ob) controls at 0, 30, and 120 min during a mixed-meal test. (B) Plasma glucose measured by yellow springs instruments (YSI). (C) Glucose nadir. (D–G) Plasma insulin, C-peptide, GLP-1, and GDF15 measured by ELISA. (H–P) Pearson correlation analyses between GDF15 and plama glucose (H–J), insulin (K–M), and GLP-1 (N–P) at fasting state, 30 min, and 120 min after meal digestion. Data are represented as mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗ p < 0.0001.

    Article Snippet: Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions.

    Techniques: Clinical Proteomics, Enzyme-linked Immunosorbent Assay

    GDF15 levels are elevated in PBH individuals during hypoglycemia induced by hyperinsulinemic hypoglycemic clamp (A) Experimental design. Blood samples were collected from 15 PBH, 15 Asx, and 10 Ow/Ob patients at time 0, 40, 90, 110, and 120 min during hyperinsulinemic hypoglycemic clamp. (B) Plasma glucose. (C) Plasma epinephrine. (D) Plasma norepinephrine. (E) Plasma GDF15. (F–H) Pearson correlation between glucose and GDF15. (I–K) Pearson correlation between epinephrine and GDF15. For all panels, asterisks denote significant difference between PBH vs. Ow/Ob (blue color), between PBH vs. Asx (green), or between PBH vs. Asx (orange). ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗ p < 0.0001. Data are represented as mean ± SD.

    Journal: Cell Reports Medicine

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice

    doi: 10.1016/j.xcrm.2026.102656

    Figure Lengend Snippet: GDF15 levels are elevated in PBH individuals during hypoglycemia induced by hyperinsulinemic hypoglycemic clamp (A) Experimental design. Blood samples were collected from 15 PBH, 15 Asx, and 10 Ow/Ob patients at time 0, 40, 90, 110, and 120 min during hyperinsulinemic hypoglycemic clamp. (B) Plasma glucose. (C) Plasma epinephrine. (D) Plasma norepinephrine. (E) Plasma GDF15. (F–H) Pearson correlation between glucose and GDF15. (I–K) Pearson correlation between epinephrine and GDF15. For all panels, asterisks denote significant difference between PBH vs. Ow/Ob (blue color), between PBH vs. Asx (green), or between PBH vs. Asx (orange). ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗ p < 0.0001. Data are represented as mean ± SD.

    Article Snippet: Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions.

    Techniques: Clinical Proteomics

    Heatmap showing correlations between GDF15 levels and hypoglycemia symptoms (Edinburgh Hypoglycemia Symptom Scale) during the hyperinsulinemic hypoglycemic clamp An asterisk (∗) indicates a significant correlation between the symptom and GDF15 levels during the hypoglycemic clamp (Pearson correlation, p < 0.05). Data include 15 individuals with PBH, 15 Asx, and 10 Ow/Ob, assessed at 0, 40, 90, and 110 min.

    Journal: Cell Reports Medicine

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice

    doi: 10.1016/j.xcrm.2026.102656

    Figure Lengend Snippet: Heatmap showing correlations between GDF15 levels and hypoglycemia symptoms (Edinburgh Hypoglycemia Symptom Scale) during the hyperinsulinemic hypoglycemic clamp An asterisk (∗) indicates a significant correlation between the symptom and GDF15 levels during the hypoglycemic clamp (Pearson correlation, p < 0.05). Data include 15 individuals with PBH, 15 Asx, and 10 Ow/Ob, assessed at 0, 40, 90, and 110 min.

    Article Snippet: Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions.

    Techniques:

    GDF15 levels are increased with insulin-induced hypoglycemia, and exogenous GDF15 inhibits food intake after meal-stimulated hypoglycemia (A) Experimental design for (B and C) ( n = 10 per group). (B and C) (B) Blood glucose and (C) plasma GDF15. (D–F) Pearson correlation between glucose and GDF15. (G) Schematic of the insulin-augmented mixed meal tolerance test ( n = 5 per group). (H and I) (H) Blood glucose and (I) body weight after GDF15 or saline treatment. (J) Blood glucose in male mice ( n = 5 per group). (K) Food intake during insulin-induced hypoglycemia in male mice. (L) Blood glucose in female mice ( n = 5 per group). (M) Food intake during insulin-induced hypoglycemia in female mice. In all panels, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 by two-way ANOVA with Tukey’s multiple-comparison test. Data are presented as mean ± SD from two independent experiments.

    Journal: Cell Reports Medicine

    Article Title: Plasma GDF15 increases during hyperinsulinemic hypoglycemia in humans with post-bariatric hypoglycemia and after insulin exposure in mice

    doi: 10.1016/j.xcrm.2026.102656

    Figure Lengend Snippet: GDF15 levels are increased with insulin-induced hypoglycemia, and exogenous GDF15 inhibits food intake after meal-stimulated hypoglycemia (A) Experimental design for (B and C) ( n = 10 per group). (B and C) (B) Blood glucose and (C) plasma GDF15. (D–F) Pearson correlation between glucose and GDF15. (G) Schematic of the insulin-augmented mixed meal tolerance test ( n = 5 per group). (H and I) (H) Blood glucose and (I) body weight after GDF15 or saline treatment. (J) Blood glucose in male mice ( n = 5 per group). (K) Food intake during insulin-induced hypoglycemia in male mice. (L) Blood glucose in female mice ( n = 5 per group). (M) Food intake during insulin-induced hypoglycemia in female mice. In all panels, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 by two-way ANOVA with Tukey’s multiple-comparison test. Data are presented as mean ± SD from two independent experiments.

    Article Snippet: Plasma collected at baseline (fasting) and at 30 and 120 min following the mixed meal, or plasma collected at baseline (fasting) and at 40 and 100 min after initiation of the hyperinsulinemic hypoglycemic clamp was assayed by human GDF15 ELISA (R&D systems, Minneapolis, MN, USA, DGD150) following the manufacturer’s instructions.

    Techniques: Clinical Proteomics, Saline, Comparison