Dysregulated phosphate metabolism in autism spectrum disorder: associations and insights for future research
暂无分享,去创建一个
[1] H. Zare,et al. Evaluation of brain structure abnormalities in children with autism spectrum disorder (ASD) using structural magnetic resonance imaging , 2022, The Egyptian Journal of Neurology, Psychiatry and Neurosurgery.
[2] M. Pontes,et al. Heightened Anxiety and Depression Among Autistic Adolescents with ADHD: Findings From the National Survey of Children’s Health 2016–2019 , 2022, Journal of autism and developmental disorders.
[3] C. Huttenhower,et al. Maternal consumption of ultra-processed foods and subsequent risk of offspring overweight or obesity: results from three prospective cohort studies , 2022, BMJ.
[4] C. Jameson,et al. Eczema and related atopic diseases are associated with increased symptom severity in children with autism spectrum disorder , 2022, Translational Psychiatry.
[5] Jiajie Chen,et al. The association between sugar-sweetened beverages and milk intake with emotional and behavioral problems in children with autism spectrum disorder , 2022, Frontiers in Nutrition.
[6] Ronald B. Brown. Parkinson’s Disease Etiology: Insights and Associations with Phosphate Toxicity , 2022, International journal of molecular sciences.
[7] M. Razzaque,et al. Phosphate Burden and Organ Dysfunction , 2022, Frontiers in Aging.
[8] G. Jicha,et al. Frontotemporal neurofibrillary tangles and cerebrovascular lesions are associated with autism spectrum behaviors in late-life dementia , 2022, Journal of Neurology.
[9] C. Richard,et al. Currently available handouts for low phosphorus diets in chronic kidney disease continue to restrict plant proteins and minimally processed dairy products. , 2022, Journal of renal nutrition : the official journal of the Council on Renal Nutrition of the National Kidney Foundation.
[10] A. Kolevzon,et al. Cancer risk in individuals with autism spectrum disorder. , 2022, Annals of oncology : official journal of the European Society for Medical Oncology.
[11] K. Panickar,et al. The Increase in Circulating Levels of Pro-Inflammatory Chemokines, Cytokines, and Complement C5 in Canines with Impaired Kidney Function , 2022, Current issues in molecular biology.
[12] E. Wentz,et al. Autism Spectrum Disorder and Obesity in Children: A Systematic Review and Meta-Analysis , 2022, Obesity Facts.
[13] K. Walsh,et al. Delineating the autistic phenotype in children with neurofibromatosis type 1 , 2022, Molecular Autism.
[14] Guochun Chen,et al. An Emerging Role of TIM3 Expression on T Cells in Chronic Kidney Inflammation , 2022, Frontiers in Immunology.
[15] K. Moon,et al. Kidney VISTA prevents IFN-γ/IL-9 axis–mediated tubulointerstitial fibrosis after acute glomerular injury , 2021, The Journal of clinical investigation.
[16] L. Lee,et al. Progress and Disparities in Early Identification of Autism Spectrum Disorder: Autism and Developmental Disabilities Monitoring Network, 2002-2016. , 2021, Journal of the American Academy of Child and Adolescent Psychiatry.
[17] V. Chang,et al. Ultra-processed food consumption among US adults from 2001 to 2018. , 2021, The American journal of clinical nutrition.
[18] R. Hendren,et al. A systematic review and meta-analysis of the benefits of a gluten-free diet and/or casein-free diet for children with autism spectrum disorder , 2021, Nutrition reviews.
[19] S. Peter,et al. 31-Phosphorus Magnetic Resonance Spectroscopy in Evaluation of Glioma and Metastases in 3T MRI , 2021, Indian Journal of Radiology and Imaging.
[20] V. Salomaa,et al. Chronic kidney disease and risk of atrial fibrillation and heart failure in general population‐based cohorts: the BiomarCaRE project , 2021, ESC heart failure.
[21] Suvi T. Itkonen,et al. Phosphorus-Containing Food Additives in the Food Supply-An Audit of Products on Supermarket Shelves. , 2021, Journal of renal nutrition : the official journal of the Council on Renal Nutrition of the National Kidney Foundation.
[22] Jeffrey N. Martin,et al. Tutorial on Directed Acyclic Graphs. , 2021, Journal of clinical epidemiology.
[23] Jun Xie,et al. The Role of Macrophages in Kidney Fibrosis , 2021, Frontiers in Physiology.
[24] P. Lichtenstein,et al. Neurodevelopmental Disorders, Glycemic Control, and Diabetic Complications in Type 1 Diabetes: a Nationwide Cohort Study , 2021, The Journal of clinical endocrinology and metabolism.
[25] Yuxian He,et al. Association of Autism Spectrum Disorder, Neuroticism, and Subjective Well-Being With Cardiovascular Diseases: A Two-Sample Mendelian Randomization Study , 2021, Frontiers in Cardiovascular Medicine.
[26] B. Giasson,et al. “Don’t Phos Over Tau”: recent developments in clinical biomarkers and therapies targeting tau phosphorylation in Alzheimer’s disease and other tauopathies , 2021, Molecular Neurodegeneration.
[27] Qinrui Li,et al. A Ketogenic Diet and the Treatment of Autism Spectrum Disorder , 2021, Frontiers in Pediatrics.
[28] S. Kontulainen,et al. Bone health in children and youth with ASD: a systematic review and meta-analysis , 2021, Osteoporosis International.
[29] P. Miller,et al. Osteoporosis and Chronic Kidney Disease-Mineral and Bone Disorder (CKD-MBD): Back to Basics. , 2021, American journal of kidney diseases : the official journal of the National Kidney Foundation.
[30] A. Peres,et al. The impact of intradialytic exercise on immune cells expressing CCR5+ in patients with chronic kidney disease: A cross-over trial , 2021, The International journal of artificial organs.
[31] K. Peris,et al. Pruritus as a Distinctive Feature of Type 2 Inflammation , 2021, Vaccines.
[32] Kei Nagai. Dysfunction of natural killer cells in end-stage kidney disease on hemodialysis , 2021, Renal Replacement Therapy.
[33] Shahar Shefer,et al. The Weak Link: Hypotonia in Infancy and Autism Early Identification , 2021, Frontiers in Neurology.
[34] N. Hoggard,et al. Gluten and Autism Spectrum Disorder , 2021, Nutrients.
[35] T. Strom,et al. Systemic Jak1 activation provokes hepatic inflammation and imbalanced FGF23 production and cleavage , 2021, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[36] F. Rodríguez‐Artalejo,et al. Ultra-Processed Food Consumption is Associated with Renal Function Decline in Older Adults: A Prospective Cohort Study , 2021, Nutrients.
[37] A. Stark,et al. PHF3 regulates neuronal gene expression through the Pol II CTD reader domain SPOC , 2020, Nature Communications.
[38] T. Brugha,et al. The Prevalence of Diabetes in Autistic Persons: A Systematic Review , 2020, Clinical practice and epidemiology in mental health : CP & EMH.
[39] S. Begum,et al. Serum Calcium and Phosphate in Children with Autism Spectrum Disorder , 2020 .
[40] J. Clothier,et al. Autism spectrum disorder and kidney disease , 2020, Pediatric Nephrology.
[41] Zhulin Wu,et al. Characterization of the Prognostic Values of the CXCR1-7 in Clear Cell Renal Cell Carcinoma (ccRCC) Microenvironment , 2020, Frontiers in Molecular Biosciences.
[42] N. Rezaei,et al. Autism spectrum disorders and natural killer cells: a review on pathogenesis and treatment , 2020, Expert review of clinical immunology.
[43] Brian K. Lee,et al. Maternal Dietary Factors and the Risk of Autism Spectrum Disorders: A Systematic Review of Existing Evidence , 2020, Autism research : official journal of the International Society for Autism Research.
[44] P. Cravedi,et al. Kidney Failure Associates With T Cell Exhaustion and Imbalanced Follicular Helper T Cells , 2020, Frontiers in Immunology.
[45] L. Margari,et al. Vitamin D Deficiency in Autism Spectrum Disorder: A Cross-Sectional Study , 2020, Disease markers.
[46] A. Coleman,et al. Prevalence of ophthalmologic diagnoses in children with autism spectrum disorder using the Optum dataset: a population-based study. , 2020, American journal of ophthalmology.
[47] Liliane Silvano Araújo,et al. Renal expression of cytokines and chemokines in diabetic nephropathy , 2020, BMC Nephrology.
[48] L. D. Costa,et al. Vascular contributions to 16p11.2 deletion autism syndrome modeled in mice , 2020, Nature Neuroscience.
[49] H. Gray,et al. P120 Children with Autism Spectrum Disorder Who Are Picky Eaters May Consume More Ultra-Processed Foods than Non-Picky Eaters , 2020 .
[50] V. Sarafian,et al. Inflammation and Mitochondrial Dysfunction in Autism Spectrum Disorder. , 2020, CNS & neurological disorders drug targets.
[51] C. Exley,et al. Aluminium in human brain tissue from donors without neurodegenerative disease: A comparison with Alzheimer’s disease, multiple sclerosis and autism , 2020, Scientific Reports.
[52] C. Exley,et al. Aluminium in human brain tissue from donors without neurodegenerative disease: A comparison with Alzheimer’s disease, multiple sclerosis and autism , 2020, Scientific Reports.
[53] S. Rossetti,et al. Management of Hyperphosphatemia in End-Stage Renal Disease: A New Paradigm. , 2020, Journal of renal nutrition : the official journal of the Council on Renal Nutrition of the National Kidney Foundation.
[54] Asmaa A. Mahmoud,et al. Neurophysiological and Neuroradiological Changes in Children With Chronic Kidney Disease , 2020, Frontiers in Pediatrics.
[55] Juergen Hahn,et al. Urinary Essential Elements of Young Children with Autism Spectrum Disorder and their Mothers. , 2020, Research in autism spectrum disorders.
[56] Ronald B. Brown. Breakthrough Knowledge Synthesis in the Age of Google , 2020, Philosophies.
[57] L. Mucke,et al. Tau Reduction Prevents Key Features of Autism in Mouse Models , 2020, Neuron.
[58] N. Soares,et al. Autism spectrum disorder: definition, epidemiology, causes, and clinical evaluation , 2020, Translational pediatrics.
[59] A. Nadeem,et al. Differential regulation of Nrf2 is linked to elevated inflammation and nitrative stress in monocytes of children with autism , 2019, Psychoneuroendocrinology.
[60] S. Levy,et al. Identification, Evaluation, and Management of Children With Autism Spectrum Disorder , 2019, Pediatrics.
[61] C. Eng,et al. The Clinical Spectrum of PTEN Mutations. , 2020, Annual review of medicine.
[62] Ya-ping Tang,et al. Maternal diabetes induces autism-like behavior by hyperglycemia-mediated persistent oxidative stress and suppression of superoxide dismutase 2 , 2019, Proceedings of the National Academy of Sciences.
[63] D. Gutmann,et al. Brain tumors in neurofibromatosis type 1 , 2019, Neuro-oncology advances.
[64] M. Picot,et al. Comorbidity Burden in Adults With Autism Spectrum Disorders and Intellectual Disabilities—A Report From the EFAAR (Frailty Assessment in Ageing Adults With Autism Spectrum and Intellectual Disabilities) Study , 2019, Front. Psychiatry.
[65] S. Mayes,et al. Atypical eating behaviors in children and adolescents with autism, ADHD, other disorders, and typical development , 2019, Research in Autism Spectrum Disorders.
[66] Mehreen M Khan,et al. Pruritus Associated With Chronic Kidney Disease: A Comprehensive Literature Review , 2019, Cureus.
[67] Kong Y. Chen,et al. Ultra-Processed Diets Cause Excess Calorie Intake and Weight Gain: An Inpatient Randomized Controlled Trial of Ad Libitum Food Intake. , 2019, Cell metabolism.
[68] A. Bellanger,et al. Impact of early protein and energy intakes on neurodevelopment at 2 years of corrected age in very low birth weight infants: A single-center observational study , 2019, PloS one.
[69] S. Naser,et al. Propionic Acid Induces Gliosis and Neuro-inflammation through Modulation of PTEN/AKT Pathway in Autism Spectrum Disorder , 2019, Scientific Reports.
[70] F. Castora. Mitochondrial function and abnormalities implicated in the pathogenesis of ASD , 2019, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[71] S. Warfield,et al. Neurobehavioral phenotype of autism spectrum disorder associated with germline heterozygous mutations in PTEN , 2019, Translational Psychiatry.
[72] Qiao Chen,et al. Urine Organic Acids as Potential Biomarkers for Autism-Spectrum Disorder in Chinese Children , 2019, Front. Cell. Neurosci..
[73] Nahed Alateeqi,et al. Evidence-Based Treatments of Autism Spectrum Disorder , 2019, Psychiatric Annals.
[74] A. Nadeem,et al. Oxidative and inflammatory mediators are upregulated in neutrophils of autistic children: Role of IL-17A receptor signaling , 2019, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[75] Ronald B. Brown. Dysregulated Phosphate Metabolism, Periodontal Disease, and Cancer: Possible Global Health Implications , 2019, Dentistry journal.
[76] A. Nadeem,et al. Dysregulation of T cell immunoglobulin and mucin domain 3 (TIM-3) signaling in peripheral immune cells is associated with immune dysfunction in autistic children. , 2019, Molecular immunology.
[77] Maria Elisa Paiva Pires,et al. Ketogenic Diet and Epilepsy: What We Know So Far , 2019, Front. Neurosci..
[78] Ronald B. Brown. Diabetes, diabetic complications, and phosphate toxicity: a scoping review. , 2019, Current diabetes reviews.
[79] A. Nadeem,et al. Elevated IL-16 expression is associated with development of immune dysfunction in children with autism , 2018, Psychopharmacology.
[80] Wei He,et al. Tau Pathology in Parkinson's Disease , 2018, Front. Neurol..
[81] M. Kretzler,et al. JAK-STAT signaling is activated in the kidney and peripheral blood cells of patients with focal segmental glomerulosclerosis. , 2018, Kidney international.
[82] M. Wolf,et al. Fibroblast growth factor23 is associated with axonal integrity and neural network architecture in the human frontal lobes , 2018, PloS one.
[83] J. Silver,et al. Interleukin-6 contributes to the increase in fibroblast growth factor 23 expression in acute and chronic kidney disease. , 2018, Kidney international.
[84] A. Magnan,et al. Food allergen‐sensitized CCR9+ lymphocytes enhance airways allergic inflammation in mice , 2018, Allergy.
[85] M. Jordana,et al. The Initiation of Th2 Immunity Towards Food Allergens , 2018, International journal of molecular sciences.
[86] M. Razzaque,et al. Phosphate toxicity and tumorigenesis. , 2018, Biochimica et biophysica acta. Reviews on cancer.
[87] C. Monteiro,et al. Consumption of ultra-processed foods and associated sociodemographic factors in the USA between 2007 and 2012: evidence from a nationally representative cross-sectional study , 2018, BMJ Open.
[88] A. King,et al. Aluminium in brain tissue in autism. , 2018, Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements.
[89] A. Nadeem,et al. Upregulation of peripheral CXC and CC chemokine receptor expression on CD4+ T cells is associated with immune dysregulation in children with autism , 2018, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[90] A. Katsnelson. Modeling autism , 2018, Lab Animal.
[91] Stephan J Sanders,et al. Children with autism spectrum disorder who improve with fever: Insights from the Simons Simplex Collection , 2018, Autism research : official journal of the International Society for Autism Research.
[92] F. Besag. Epilepsy in patients with autism: links, risks and treatment challenges , 2017, Neuropsychiatric disease and treatment.
[93] Sema Nur Ayyıldız,et al. Decreased levels of serum fibroblast growth factor-2 in children with autism spectrum disorder , 2017, Psychiatry Research.
[94] A. Nadeem,et al. Upregulation of IL-9 and JAK-STAT signaling pathway in children with autism , 2017, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[95] A. C. Mello-Moura,et al. Oral health status of children and young adults with autism spectrum disorders: systematic review and meta‐analysis , 2017, International journal of paediatric dentistry.
[96] B. Puri,et al. The putative role of environmental aluminium in the development of chronic neuropathology in adults and children. How strong is the evidence and what could be the mechanisms involved? , 2017, Metabolic Brain Disease.
[97] W. Mandy,et al. What Is the Male-to-Female Ratio in Autism Spectrum Disorder? A Systematic Review and Meta-Analysis. , 2017, Journal of the American Academy of Child and Adolescent Psychiatry.
[98] C. Gross. Defective phosphoinositide metabolism in autism , 2017, Journal of neuroscience research.
[99] M. Speeckaert,et al. The role of interleukin-17A in the pathogenesis of kidney diseases. , 2017, Pathology.
[100] R. Moriggl,et al. STAT5 drives abnormal proliferation in autosomal dominant polycystic kidney disease. , 2017, Kidney international.
[101] A. Tardón,et al. Association between breastfeeding duration and cognitive development, autistic traits and ADHD symptoms: a multicenter study in Spain , 2017, Pediatric Research.
[102] Godfrey L. Smith,et al. Deleterious effects of phosphate on vascular and endothelial function via disruption to the nitric oxide pathway , 2016, Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association.
[103] E. Slatopolsky,et al. Phosphate Toxicity in CKD: The Killer among Us. , 2016, Clinical journal of the American Society of Nephrology : CJASN.
[104] A. Riley,et al. The Association of Maternal Obesity and Diabetes With Autism and Other Developmental Disabilities , 2016, Pediatrics.
[105] A. Sarode,et al. Casein and Caseinate: Methods of Manufacture , 2016 .
[106] M. Razzaque,et al. Dysregulation of phosphate metabolism and conditions associated with phosphate toxicity. , 2015, BoneKEy reports.
[107] J. Sampson,et al. Epilepsy in Tuberous Sclerosis: Phenotypes, Mechanisms, and Treatments , 2015, Seminars in Neurology.
[108] M. Sahin,et al. Tuberous Sclerosis: A New Frontier in Targeted Treatment of Autism , 2015, Neurotherapeutics.
[109] M. Szczepańska,et al. Expression of Chemokine Receptors on Peripheral Blood T Cells in Children with Chronic Kidney Disease , 2015, Mediators of Inflammation.
[110] C. McDougle,et al. Brief Report: Bone Fractures in Children and Adults with Autism Spectrum Disorders , 2015, Journal of autism and developmental disorders.
[111] Tzeng-Ji Chen,et al. Risk of cancer in children, adolescents, and young adults with autistic disorder. , 2015, The Journal of pediatrics.
[112] G. Piccoli,et al. The “phosphorus pyramid”: a visual tool for dietary phosphate management in dialysis and CKD patients , 2015, BMC Nephrology.
[113] J. He,et al. JAK inhibition and progressive kidney disease , 2015, Current opinion in nephrology and hypertension.
[114] Martha A. Kahlson,et al. Glial Tau Pathology in Tauopathies: Functional Consequences , 2015, Journal of experimental neuroscience.
[115] F. Ünal,et al. DNA damage in human lymphocytes exposed to four food additives in vitro , 2014, Toxicology and industrial health.
[116] C. Eng,et al. Molecular and Phenotypic Abnormalities in Individuals with Germline Heterozygous PTEN Mutations and Autism , 2014, Molecular Psychiatry.
[117] A. Cupisti,et al. Phosphate control in dialysis , 2013, International journal of nephrology and renovascular disease.
[118] S. de Lusignan,et al. Serum Phosphate as a Risk Factor for Cardiovascular Events in People with and without Chronic Kidney Disease: A Large Community Based Cohort Study , 2013, PloS one.
[119] A. Legido,et al. Mitochondrial dysfunction in autism. , 2013, Seminars in pediatric neurology.
[120] A. Sehgal,et al. The prevalence of phosphorus-containing food additives in top-selling foods in grocery stores. , 2013, Journal of renal nutrition : the official journal of the Council on Renal Nutrition of the National Kidney Foundation.
[121] H. Schmidt,et al. Regression in cancer following fever and acute infection , 2013, Acta oncologica.
[122] Elfi Furtmueller,et al. Using grounded theory as a method for rigorously reviewing literature , 2013, Eur. J. Inf. Syst..
[123] N. Vaziri,et al. Targeting the Transcription Factor Nrf2 to Ameliorate Oxidative Stress and Inflammation in Chronic Kidney Disease , 2012, Kidney international.
[124] M. Razzaque,et al. Can features of phosphate toxicity appear in normophosphatemia? , 2012, Journal of Bone and Mineral Metabolism.
[125] H. Paudel,et al. Regulation and Function of Protein Kinases and Phosphatases , 2011, Enzyme research.
[126] D. Amaral,et al. In Search of Cellular Immunophenotypes in the Blood of Children with Autism , 2011, PloS one.
[127] Janet K. Kern,et al. Evidence of microglial activation in autism and its possible role in brain underconnectivity , 2011, Neuron glia biology.
[128] N. Meguid,et al. Reduced serum levels of 25-hydroxy and 1,25-dihydroxy vitamin D in Egyptian children with autism. , 2010, Journal of alternative and complementary medicine.
[129] Carmine Zoccali,et al. Selection Bias and Information Bias in Clinical Research , 2010, Nephron Clinical Practice.
[130] M. Cho,et al. High dietary inorganic phosphate increases lung tumorigenesis and alters Akt signaling. , 2009, American journal of respiratory and critical care medicine.
[131] C. Johnson,et al. Identification and Evaluation of Children With Autism Spectrum Disorders , 2007, Pediatrics.
[132] David M Sabatini,et al. Defining the role of mTOR in cancer. , 2007, Cancer cell.
[133] C. Cohen,et al. The contribution of B cells to renal interstitial inflammation. , 2007, The American journal of pathology.
[134] M. Pfeffer,et al. Relation Between Serum Phosphate Level and Cardiovascular Event Rate in People With Coronary Disease , 2005, Circulation.
[135] R. Greil,et al. Up-Regulation of Functional Chemokine Receptor CCR3 in Human Renal Cell Carcinoma , 2005, Clinical Cancer Research.
[136] R. Yokel,et al. Aluminium content of some foods and food products in the USA, with aluminium food additives , 2005, Food additives and contaminants.
[137] Y. Kuang,et al. Biological stoichiometry of tumor dynamics: Mathematical models and analysis , 2003 .
[138] A. Leung,et al. Whole cow's milk in infancy. , 2003, Paediatrics & child health.
[139] N. Minshew,et al. 31P Magnetic resonance spectroscopy and its application to autism and brain development , 1998 .
[140] Bernadette M. Marriott,et al. Nutritional Needs in Hot Environments-Applications for Military Personnel in Field Operations , 1993 .
[141] Michael W. Weiner,et al. Increased pH and Seizure Foci Inorganic Phosphate in Temporal Demonstrated by [31P]MRS , 1992 .
[142] T. Oppé,et al. Calcium and phosphorus levels in healthy newborn infants given various types of milk. , 1968, Lancet.
[143] B. S. Platt,et al. Nutritional comparison of human and cow's milk for infant-feeding. , 1947 .