30 Article(s)Download |
PMID | Title | Pub. Year | #Total Relationships |
1 | 34180254 | Contribution of Mitochondria to Insulin Secretion by Various Secretagogues. | 2022 May | 1 |
2 | 34718610 | Gain of Function of Malate Dehydrogenase 2 and Familial Hyperglycemia. | 2022 Feb 17 | 2 |
3 | 35134563 | The mechanisms of nucleotide actions in insulin resistance. | 2022 Apr | 2 |
4 | 33543238 | Importance of Adipose Tissue NAD+ Biology in Regulating Metabolic Flexibility. | 2021 Mar 1 | 1 |
5 | 33606677 | Imeglimin amplifies glucose-stimulated insulin release from diabetic islets via a distinct mechanism of action. | 2021 | 1 |
6 | 34233170 | The therapeutic promises of NAD+ boosters. | 2021 Jul 6 | 1 |
7 | 34629354 | Okamoto model for necrosis and its expansions, CD38-cyclic ADP-ribose signal system for intracellular Ca2+ mobilization and Reg (Regenerating gene protein)-Reg receptor system for cell regeneration. | 2021 | 1 |
8 | 35173682 | NAD+-Increasing Strategies to Improve Cardiometabolic Health? | 2021 | 1 |
9 | 32305451 | Interplay between NADH oxidation by complex I, glutathione redox state and sirtuin-3, and its role in the development of insulin resistance. | 2020 Aug 1 | 2 |
10 | 32308644 | Circadian Clock and Sirtuins in Diabetic Lung: A Mechanistic Perspective. | 2020 | 1 |
11 | 33442387 | Sirt6 Deacetylase: A Potential Key Regulator in the Prevention of Obesity, Diabetes and Neurodegenerative Disease. | 2020 | 1 |
12 | 30707625 | Fatty acid type-specific regulation of SIRT1 does not affect insulin sensitivity in human skeletal muscle. | 2019 Apr | 1 |
13 | 30576653 | Insulin PACS a Punch in SIRT1 Activity. | 2018 Dec 20 | 1 |
14 | 28973648 | The NAD+-dependent deacetylase SIRT2 attenuates oxidative stress and mitochondrial dysfunction and improves insulin sensitivity in hepatocytes. | 2017 Nov 1 | 1 |
15 | 26574954 | Obesity Is Associated With Low NAD(+)/SIRT Pathway Expression in Adipose Tissue of BMI-Discordant Monozygotic Twins. | 2016 Jan | 1 |
16 | 25536389 | Effect of NAD on PARP-mediated insulin sensitivity in oleic acid treated hepatocytes. | 2015 Jul | 3 |
17 | 26568959 | Roles of Pyruvate, NADH, and Mitochondrial Complex I in Redox Balance and Imbalance in β Cell Function and Dysfunction. | 2015 | 1 |
18 | 23813101 | Insulin resistance and dysregulation of tryptophan-kynurenine and kynurenine-nicotinamide adenine dinucleotide metabolic pathways. | 2013 Oct | 1 |
19 | 21149440 | FoxO1 mediates an autofeedback loop regulating SIRT1 expression. | 2011 Feb 18 | 1 |
20 | 21484571 | Nampt and its potential role in inflammation and type 2 diabetes. | 2011 | 1 |
21 | 22332087 | Emerging perspectives on essential amino acid metabolism in obesity and the insulin-resistant state. | 2011 Nov | 2 |
22 | 20638297 | Insulin signaling meets mitochondria in metabolism. | 2010 Oct | 2 |
23 | 19273250 | Therapeutic potential of SIRT1 and NAMPT-mediated NAD biosynthesis in type 2 diabetes. | 2009 Jan 1 | 2 |
24 | 19344310 | Overexpression of the malate-aspartate NADH shuttle member Aralar1 in the clonal beta-cell line BRIN-BD11 enhances amino-acid-stimulated insulin secretion and cell metabolism. | 2009 Sep 1 | 1 |
25 | 12909186 | The effect of alcohol on blood glucose in Type 1 diabetes--metabolic modelling and integration in a decision support system. | 2003 Jul | 1 |
26 | 12238047 | [Role of NADH shuttle system in glucose-stimulated insulin secretion]. | 2002 Jul | 1 |
27 | 8511877 | [Synthesis of cell membrane "signal" ATP in human erythrocyte membranes stimulated by insulin as criteria of the efficacy of therapeutic plasmapheresis]. | 1993 Mar-Apr | 1 |
28 | 2988200 | [Coupling of insulin-stimulated ATP formation by preparations of plasma membrane-enriched particles with proton transport across the plasma membranes of target cells]. | 1985 Mar-Apr | 1 |
29 | 6292673 | Does an increase in the ratio of cytoplasmic NADPH to NADP+ accompanied by a decrease in the ratio of cytoplasmic NADH to NAD+ mediate the actions of insulin? | 1982 Aug | 2 |
30 | 36318 | Effect of leucine on the pyridine nucleotide contents of islets and on the insulin released--interactions in vitro with methylene blue, thiol oxidants, and p-chloromercuribenzoate. | 1979 Jun | 2 |