2024
Prenatal Therapy for Congenital Diaphragmatic Hernia and Myelomeningocele: Advances in Particle-Based Delivery
Rivero R, Stitelman D. Prenatal Therapy for Congenital Diaphragmatic Hernia and Myelomeningocele: Advances in Particle-Based Delivery. Current Stem Cell Reports 2024, 10: 51-57. DOI: 10.1007/s40778-024-00237-8.Peer-Reviewed Original ResearchCongenital diaphragmatic herniaDiaphragmatic herniaAnimal modelsIntra-amniotic injectionLong-term functional outcomeParticle-based deliveryFetal therapyPrenatal therapySpinal defectsTarget specific tissuesCo-morbiditiesCongenital diseaseFunctional outcomesTreatment deliveryStructural diseaseClinical translationMyelomeningoceleTherapyHerniaSpecific tissuesTissueDiseaseDeliveryPrenatallyParticle deliveryThe Technical and Ethical Framework of Fetal Therapy: Past and Current Advances
Lynn A, Glazer P, Saltzman W, Stitelman D. The Technical and Ethical Framework of Fetal Therapy: Past and Current Advances. Current Stem Cell Reports 2024, 10: 30-36. DOI: 10.1007/s40778-024-00235-w.Peer-Reviewed Original ResearchFetal drug deliverySuccess of nanomedicineDrug deliveryPharmacological drug treatmentsMinimally invasive strategyFetal therapyFetal applicationsClinical studiesCongenital diseaseInvasive strategyDrug treatmentClinical translationClinical practiceTherapyMedical interventionsDeliveryFetalNanomedicineBirthDiseaseFindingsAClinicians
2020
Contributions of maternal and fetal antiviral immunity in congenital disease
Yockey LJ, Lucas C, Iwasaki A. Contributions of maternal and fetal antiviral immunity in congenital disease. Science 2020, 368: 608-612. PMID: 32381717, DOI: 10.1126/science.aaz1960.Peer-Reviewed Original ResearchConceptsViral infectionCongenital diseaseDirect viral toxicityMaternal immune responseMaternal immune activationFetal developmental defectsFuture treatment strategiesImmune defense mechanismsPregnancy outcomesFetal demiseImmune activationUncontrolled inflammationMaternal healthChronic infectionTreatment strategiesImmune responseAntiviral immunityRange of syndromesFetal developmentTissue damagePathological effectsInfectionViral toxicityDevastating consequencesPregnancy
2019
Rethinking what constitutes a diagnosis in the genomics era: a critical illness perspective.
Lakhani SA, Pierce R. Rethinking what constitutes a diagnosis in the genomics era: a critical illness perspective. Current Opinion In Pediatrics 2019, 31: 317-321. PMID: 31090571, DOI: 10.1097/mop.0000000000000754.Peer-Reviewed Original ResearchConceptsPediatric intensivistsIll childrenCritical care pediatriciansFirst clinical diagnosisTypes of patientsWhole-exome sequencingSevere congenital diseaseUnderlying genetic causePatient's conditionIllness perspectiveUndiagnosed diseasePatientsDescriptive diagnosisClinical diagnosisCongenital diseaseGenetic testingGenetic abnormalitiesDiagnosisExome sequencingGenetic causeNext-generation sequencingClinical geneticistsIntensivistsGenetic diagnosisDiseaseA Case Study of Two Rodent-Borne Viruses: Not Always the Same Old Suspects
Childs J, Klein S, Glass G. A Case Study of Two Rodent-Borne Viruses: Not Always the Same Old Suspects. Frontiers In Ecology And Evolution 2019, 7: 35. DOI: 10.3389/fevo.2019.00035.Peer-Reviewed Original ResearchLCMV infectionRodent-Borne VirusesSolid organ recipientsPrevalence of infectionHuman diseasesWild rodent reservoirsSevere congenital diseaseSporadic sheddingAcute human diseaseOrgan recipientsChronic infectionWild rodent hostsRodent hostsSeoul virusFatal diseaseSEOVCongenital diseaseGolden hamstersInfectionPet rodentsLaboratory workersDiseaseMiceGenus HantavirusHundreds of cases
2016
Platelet and plasma transfusions for infants and children
Hendrickson J, Josephson C. Platelet and plasma transfusions for infants and children. 2016, 542-548. DOI: 10.1002/9781119013020.ch47.Peer-Reviewed Original ResearchTransfusion supportBlood donor exposuresTransplacental antibody transferEtiology of thrombocytopeniaTreatment of thrombocytopeniaTotal blood volumeMembrane oxygenationExchange transfusionGestational ageABO compatibilityAntibody transferDonor exposureImmature liverBlood volumeThrombocytopeniaMaternal factorsCongenital diseaseCoagulopathyInfantsTransfusionChildrenDiseaseSmall adultsPlateletsSpecial consideration
2015
Optimizing age of cytomegalovirus screening and vaccination to avert congenital disease in the US
Alfaro-Murillo JA, Townsend JP, Galvani AP. Optimizing age of cytomegalovirus screening and vaccination to avert congenital disease in the US. Vaccine 2015, 34: 225-229. PMID: 26631416, DOI: 10.1016/j.vaccine.2015.11.039.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultAgedAged, 80 and overChildChild, PreschoolCytomegalovirus InfectionsCytomegalovirus VaccinesDisease Transmission, InfectiousFemaleHumansImmunization ScheduleInfantInfant, NewbornInfectious Disease Transmission, VerticalMaleMass ScreeningMiddle AgedUnited StatesYoung AdultConceptsVaccine waningVaccine efficacyOptimal ageCMV vaccine candidatesLongitudinal clinical evaluationChild-bearing yearsYears of ageTransmission dynamicsCMV prevalenceCMV vaccinationCytomegalovirus ScreeningSeronegative femalesCongenital infectionCytomegalovirus infectionVaccine protectionSuch vaccinationClinical evaluationClinical trialsHearing lossVaccine candidatesVaccinationDemographic dataCongenital diseaseCognitive deficitsIndirect protection
2011
Polycystic Liver Diseases: Congenital Disorders of Cholangiocyte Signaling
Strazzabosco M, Somlo S. Polycystic Liver Diseases: Congenital Disorders of Cholangiocyte Signaling. Gastroenterology 2011, 140: 1855-1859.e1. PMID: 21515270, PMCID: PMC3109236, DOI: 10.1053/j.gastro.2011.04.030.Peer-Reviewed Original ResearchConceptsPolycystic liver diseaseLiver cyst formationClinical featuresLiver diseaseMultiple cystsDisease progressionBiliary epitheliumLiver parenchymaProgressive enlargementCongenital diseaseCyst formationCholangiocyte physiologyCongenital disorderPotential targetGenetic defectsDiseaseProgressionDisordersInheritance patternSignalingIntracellular organellesDifferent entitiesTherapyKidneyPathway
1985
Cranial Asymmetry and Lambdoid Synostosis in a Sibship
Lohse D, Duncan C, Ment L. Cranial Asymmetry and Lambdoid Synostosis in a Sibship. Neurosurgery 1985, 16: 836-838. PMID: 4010909, DOI: 10.1227/00006123-198506000-00020.Peer-Reviewed Original ResearchConceptsSevere cyanotic congenital heart diseaseCyanotic congenital heart diseaseHypoxic cerebral injuryCongenital heart diseaseCranial asymmetryAutosomal dominant hereditary conditionPosterior sagittal sutureCerebral injurySystemic diseaseHeart diseaseCerebral growthRare caseHereditary conditionCongenital diseaseTrue synostosisLambdoid synostosisOlder childrenDiseaseSynostosisSagittal sutureOlder siblingsRight portionSiblingsCraniosynostosisChildrenCranial Asymmetry and Lambdoid Synostosis in a Sibship.
Lohse D, Duncan C, Ment L. Cranial Asymmetry and Lambdoid Synostosis in a Sibship. Neurosurgery 1985, 16: 836. DOI: 10.1097/00006123-198506000-00020.Peer-Reviewed Original ResearchSevere cyanotic congenital heart diseaseCyanotic congenital heart diseaseHypoxic cerebral injuryCongenital heart diseaseCranial asymmetryAutosomal dominant hereditary conditionPosterior sagittal sutureCerebral injurySystemic diseaseHeart diseaseCerebral growthRare caseOld girlHereditary conditionCongenital diseaseTrue synostosisLambdoid synostosisOlder childrenDiseaseSynostosisSagittal sutureOlder siblingsRight portionSiblingsCraniosynostosis
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