Effect and mechanism of fluctuant glucose on restraining implant osseointegration in diabetes.
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[1] Y. Liu,et al. Glucose fluctuation promotes cardiomyocyte apoptosis by triggering endoplasmic reticulum (ER) stress signaling pathway in vivo and in vitro , 2022, Bioengineered.
[2] D. Zhang,et al. Glycemic fluctuation exacerbates inflammation and bone loss and alters microbiota profile around implants in diabetic mice with experimental peri-implantitis , 2021, International Journal of Implant Dentistry.
[3] Yi Liu,et al. Acute glucose fluctuation promotes RAGE expression via reactive oxygen species-mediated NF-κB activation in rat podocytes , 2021, Molecular Medicine Reports.
[4] Q. Chai,et al. Glucose fluctuations promote vascular BK channels dysfunction via PKCα/NF-κB/MuRF1 signaling. , 2020, Journal of molecular and cellular cardiology.
[5] M. Saito,et al. Intracellular Accumulation of Advanced Glycation End Products Induces Osteoblast Apoptosis Via Endoplasmic Reticulum Stress , 2020, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[6] G. Romanos,et al. Chronic hyperglycemia as a risk factor in implant therapy. , 2019, Periodontology 2000.
[7] Chunbo Wang,et al. Curcumin protects against palmitic acid-induced apoptosis via the inhibition of endoplasmic reticulum stress in testicular Leydig cells , 2019, Reproductive Biology and Endocrinology.
[8] Shanshan Wang,et al. Glucose fluctuation increased mesangial cell apoptosis related to AKT signal pathway , 2019, Archives of medical science : AMS.
[9] L. Lei,et al. Curcumin attenuates palmitic acid-induced cell apoptosis by inhibiting endoplasmic reticulum stress in H9C2 cardiomyocytes , 2019, Human & experimental toxicology.
[10] Ching-Kuan Liu,et al. Acute glucose fluctuation impacts microglial activity, leading to inflammatory activation or self-degradation , 2019, Scientific Reports.
[11] Zhenzhen Jiang,et al. Palmitic acid induces human osteoblast-like Saos-2 cell apoptosis via endoplasmic reticulum stress and autophagy , 2018, Cell Stress and Chaperones.
[12] P. Agostinis,et al. Endoplasmic reticulum stress signalling – from basic mechanisms to clinical applications , 2018, The FEBS journal.
[13] S. Battaglia-Hsu,et al. Endoplasmic Reticulum Stress in Metabolic Disorders , 2018, Cells.
[14] M. Doumas,et al. Diabetes and lipid metabolism , 2018, Hormones.
[15] Xin Rong,et al. Immunomodulatory ECM-like Microspheres for Accelerated Bone Regeneration in Diabetes Mellitus. , 2018, ACS applied materials & interfaces.
[16] J. López‐López,et al. Oral manifestations of Diabetes Mellitus. A systematic review , 2017, Medicina oral, patologia oral y cirugia bucal.
[17] Hao Wu,et al. Role of endoplasmic reticulum stress signalling in diabetic endothelial dysfunction and atherosclerosis , 2017, Diabetes & vascular disease research.
[18] Zhiming Ge,et al. BRD7 mediates hyperglycaemia‐induced myocardial apoptosis via endoplasmic reticulum stress signalling pathway , 2016, Journal of cellular and molecular medicine.
[19] M. Zhu,et al. Ca2+-Dependent Endoplasmic Reticulum Stress Regulates Mechanical Stress–Mediated Cartilage Thinning , 2016, Journal of dental research.
[20] Lingzhou Zhao,et al. In vivo osseointegration of Ti implants with a strontium-containing nanotubular coating , 2016, International journal of nanomedicine.
[21] Xingbo Cheng,et al. Blood glucose fluctuation accelerates renal injury involved to inhibit the AKT signaling pathway in diabetic rats , 2016, Endocrine.
[22] G. Mollet,et al. Endoplasmic reticulum stress drives proteinuria-induced kidney lesions via Lipocalin 2 , 2016, Nature Communications.
[23] Randal J. Kaufman,et al. Protein misfolding in the endoplasmic reticulum as a conduit to human disease , 2016, Nature.
[24] E. Bak,et al. Diabetic characteristics and alveolar bone loss in streptozotocin- and streptozotocin-nicotinamide-treated rats with periodontitis. , 2014, Journal of periodontal research.
[25] W. Borgnakke,et al. Effect of periodontal disease on diabetes: systematic review of epidemiologic observational evidence. , 2013, Journal of periodontology.
[26] Giovanni Sartore,et al. Association between glucose variability as assessed by continuous glucose monitoring (CGM) and diabetic retinopathy in type 1 and type 2 diabetes , 2013, Acta Diabetologica.
[27] P. Walter,et al. The Unfolded Protein Response: From Stress Pathway to Homeostatic Regulation , 2011, Science.
[28] Panos N. Papapanou,et al. Diabetes mellitus and periodontitis: a tale of two common interrelated diseases , 2011, Nature Reviews Endocrinology.
[29] L. Monnier,et al. Glycemic Variability: Can We Bridge the Divide Between Controversies? , 2011, Diabetes Care.
[30] H. Daida,et al. Insulin and nateglinide reduce monocyte adhesion to endothelial cells in Goto-Kakizaki rats exhibiting repetitive blood glucose fluctuation. , 2006, Biochemical and biophysical research communications.
[31] Jo-Young Suh,et al. Effects of high glucose on cellular activity of periodontal ligament cells in vitro. , 2006, Diabetes research and clinical practice.