2022
Hypercalcaemic and Hypocalcaemic Syndromes in Children
Ardeshirpour L, Carpenter T, Robinson C. Hypercalcaemic and Hypocalcaemic Syndromes in Children. 2022, 707-726. DOI: 10.1093/med/9780198870197.003.0087.Peer-Reviewed Original ResearchAge-specific approachesAge-dependent changesCalciotropic hormonesHormonal milieuMineral disordersCorrect diagnosisClinical problemCalcium homeostasisMineral homeostasisRelevant therapiesSerum mineralsMineral accretionRelevant physiologyHeritable disorderSyndromeChildhoodDiagnosisDisordersChildrenHomeostasisMineral requirementsEarly stagesHypercalcaemiaHypocalcaemiaTherapy
2016
Novel anatomic adaptation of cortical bone to meet increased mineral demands of reproduction
Macica CM, King HE, Wang M, McEachon CL, Skinner CW, Tommasini SM. Novel anatomic adaptation of cortical bone to meet increased mineral demands of reproduction. Bone 2016, 85: 59-69. PMID: 26825813, PMCID: PMC7429445, DOI: 10.1016/j.bone.2015.12.056.Peer-Reviewed Original ResearchConceptsHyp miceMineral homeostasisElevated serum PTHMaternal bone massMineralized trabecular boneIntestinal calcium absorptionCortical boneWild-type miceSerum PTHCalcitriol productionFemale patientsMaternal skeletonPostnatal nutritionCalcium absorptionBone resorptionFracture riskMaternal adaptationBone massBone fragilityMurine modelIntracortical porosityUnaffected miceMouse modelMMP-13Fetal development
2013
Osteocytes remove and replace perilacunar mineral during reproductive cycles
Wysolmerski JJ. Osteocytes remove and replace perilacunar mineral during reproductive cycles. Bone 2013, 54: 230-236. PMID: 23352996, PMCID: PMC3624069, DOI: 10.1016/j.bone.2013.01.025.BooksConceptsBone lossLevels of PTHrPNegative calcium balanceLevels of estrogenPrincipal bone-resorbing cellsSkeletal calcium storesBone-resorbing cellsPTHrP levelsBone turnoverBone resorptionBone massMineral metabolismCalcium balanceRole of osteocytesCalcium storesMineral homeostasisOsteocytic osteolysisReproductive cycleOsteocytesSystemic demandsPericanalicular matrixCalciumLactationBone
2011
Hypercalcaemic and hypocalcaemic syndromes in children
Ardeshirpour L, Carpenter T. Hypercalcaemic and hypocalcaemic syndromes in children. 2011, 687-700. DOI: 10.1093/med/9780199235292.003.0444.Peer-Reviewed Original ResearchCalcium-regulating systemsSeverity of diseaseCalcium homeostasisMineral homeostasisAge groupsCompensatory mechanismsRelevant physiologySkeletal growthEarly childhoodHeritable disorderChildhoodHomoeostatic systemProgressive stagesDisordersChildhood yearsHomeostasisMineral requirementsNumerous factorsHypercalcaemiaHypocalcaemiaSyndromePhysiologyDiseaseInsult
2010
Six Weeks of a Low Protein Diet Impairs Calcium Homeostasis
Sullivan R, Rosewater I, Caseria D, O'Brien K, Kerstetter J, Insogna K. Six Weeks of a Low Protein Diet Impairs Calcium Homeostasis. The FASEB Journal 2010, 24: lb356-lb356. DOI: 10.1096/fasebj.24.1_supplement.lb356.Peer-Reviewed Original ResearchLow-protein dietProtein dietCalcium absorptionDual-stable calcium isotopesImpairs calcium homeostasisIntestinal calcium absorptionNegative bone balanceWeek 6.5Diet intervention trialLong-term ingestionUrinary calciumMetabolic kitchenBone lossVitamin DIntervention trialsStable calcium isotopesCalcium metabolismBone resorptionBone balanceIntestinal absorptionWeek 1Skeletal turnoverCalcium homeostasisMineral homeostasisYoung womenA High Protein Diet Induces Intestinal Iron Transporter Expression and Improves Iron Absorption in Rats
Cucchi C, Gaffney‐Stomberg E, Sun B, Kerstetter J, Insogna K. A High Protein Diet Induces Intestinal Iron Transporter Expression and Improves Iron Absorption in Rats. The FASEB Journal 2010, 24: 229.1-229.1. DOI: 10.1096/fasebj.24.1_supplement.229.1.Peer-Reviewed Original ResearchDietary proteinIron absorptionTransporter expressionHigh casein dietExpression of DMT1Iron transporter expressionFe absorptionVs. 5Kruskal-Wallis testMicroarray screenCasein dietMineral homeostasisLevel of expressionProtein dietRatsLittle dataDMT1 expressionQ-PCRDietBalance studiesExpressionHomeostasisGroupDMT1CYBRD1
1989
Mineral regulation of vitamin D metabolism
Carpenter T. Mineral regulation of vitamin D metabolism. Bone And Mineral 1989, 5: 259-269. PMID: 2655775, DOI: 10.1016/0169-6009(89)90004-4.Peer-Reviewed Original ResearchConceptsVitamin D metabolismD metabolismVitamin D deficiencyForms of ricketsD deficiencyVitamin DRenal activityVivo effectsHomeostatic roleIntestinal transportRachitic deformitiesActive metaboliteMineral homeostasisClinical researchMagnesium deficiencyCalcium transportConcentration of calciumMetabolismPediatrician's interestPresent dataStimulationCalciumPhosphorus regulationDeficiencyLesser extent
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