Journal of Diabetes Mellitus

Journal of Diabetes Mellitus

ISSN Print: 2160-5831
ISSN Online: 2160-5858
www.scirp.org/journal/jdm
E-mail: jdm@scirp.org
"12/15-Lipoxygenase inhibition counteracts MAPK phosphorylation in mouse and cell culture models of diabetic peripheral neuropathy"
written by Roman Stavniichuk, Alexander A. Obrosov, Viktor R. Drel, Jerry L. Nadler, Irina G. Obrosova, Mark A. Yorek,
published by Journal of Diabetes Mellitus, Vol.3 No.3, 2013
has been cited by the following article(s):
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[1] 12/15-Lipoxygenase Regulation of Diabetic Cognitive Dysfunction Is Determined by Interfering with Inflammation and Cell Apoptosis
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[2] Association of hyperglycaemia with the placenta of GDM-induced macrosomia with normal pre-pregnancy BMI and the proliferation of trophoblast cells
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[3] Glycyrrhizic acid promotes sciatic nerves recovery in type 1 diabetic rats and protects Schwann cells from high glucose-induced cytotoxicity
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[4] Combination of Quercetin, Hirudin and Cinnamaldehyde Promotes Schwann Cell Differentiation and Myelination against High Glucose by Inhibiting ERK Signaling …
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[5] Upregulation of miR-133a-3p in the Sciatic Nerve Contributes to Neuropathic Pain Development
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[6] Targeting the NADPH Oxidase-4 and Liver X Receptor Pathway Preserves Schwann Cell Integrity in Diabetic Mice
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[7] Targeting the NADPH Oxidase-4 and Liver X Receptor Signaling Axis Preserve Schwann Cell Integrity in Diabetic Mice
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[8] Molecular mechanism of diabetic neuropathy and its pharmacotherapeutic targets
European Journal of Pharmacology, 2018
[9] Gene therapy with the angiogenic neuropeptide secretoneurin ameliorates experimental diabetic neuropathy
2018
[10] Role of the 12-Lipoxygenase Pathway in Diabetes Pathogenesis and Complications
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[11] Veränderungen der intrazellulären schmerzsensibilisierenden Signaltransduktion sensorischer Neurone im Rattenmodell der diabetischen Neuropathie
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[12] Inhibitors of Poly (ADP-Ribose) Polymerase-1 as Agents Providing Correction of Brain Dysfunctions Induced by Experimental Diabetes
Neurophysiology, 2017
[13] Schwann cell interactions with axons and microvessels in diabetic neuropathy
Nature Reviews Neurology, 2017
[14] Інгібітори полі (АDР-рибозо) полімерази-1 як агенти, що забезпечують корекцію дисфункцій мозку, індукованих експериментальним цукровим діабетом
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[15] Інгібітори полі (АDР-рибозо) полімерази-1 як агенти, що забезпечують корекцію дисфункцій мозку, індукованих експериментальним цукровим …
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[16] Імунорегуляторні ефекти вітаміну D3 за експериментального цукрового діабету 1го типу
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[17] Effects of High Glucose on Cell Viability and Differentiation in Primary Cultured Schwann Cells: Potential Role of ERK Signaling Pathway
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[18] Immunoregulatory effects of vitamin D3 in experimentally induced type 1 diabetes
Cytology and Genetics, 2016
[19] Immunoregulatory effects of vitamin D 3 in experimentally induced type 1 diabetes
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[20] 糖尿病周围神经病变发生机制研究进展
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[21] Synergistic Effects of Combining Anti-Midkine and Hepatocyte Growth Factor Therapies Against Diabetic Nephropathy in Rats
The American journal of the medical sciences, 2015
[22] 糖尿病患者局麻药敏感性的研究进展
中国生化药物杂志, 2015
[23] Effect of High-Fat Diet on Peripheral Neuropathy in C57BL/6 Mice
International Journal of Endocrinology, 2014
[24] Діабетична нейропатія. Роль 12/15-ліпоксигенази та метаболізму арахідонової кислоти
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[25] Імунорегуляторні ефекти вітаміну D 3 за експериментального цукрового діабету 1 го типу
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