2019
Transforming growth factor-β promotes basement membrane fibrosis, alters perivascular cerebrospinal fluid distribution, and worsens neurological recovery in the aged brain after stroke
Howe MD, Furr JW, Munshi Y, Roy-O’Reilly M, Maniskas ME, Koellhoffer EC, d’Aigle J, Sansing LH, McCullough LD, Urayama A. Transforming growth factor-β promotes basement membrane fibrosis, alters perivascular cerebrospinal fluid distribution, and worsens neurological recovery in the aged brain after stroke. GeroScience 2019, 41: 543-559. PMID: 31721012, PMCID: PMC6885082, DOI: 10.1007/s11357-019-00118-7.Peer-Reviewed Original ResearchConceptsPoor functional recoveryFunctional recoveryExperimental strokeAstrocyte activationStroke patientsAged brainCultured astrocytesSerum TGF-β levelsTGF-β receptor inhibitionPotential new treatment strategyGlial scar developmentElderly stroke patientsTGF-β levelsPoor functional outcomeOxygen-glucose deprivationCerebrospinal fluid distributionNew treatment strategiesPrimary cultured astrocytesExogenous TGF-β stimulationBasement membraneTGF-β stimulationNeurological recoveryElderly patientsSerum levelsFunctional outcomeSurgical Performance Determines Functional Outcome Benefit in the Minimally Invasive Surgery Plus Recombinant Tissue Plasminogen Activator for Intracerebral Hemorrhage Evacuation (MISTIE) Procedure
Awad I, Polster S, Carrión-Penagos J, Thompson R, Cao Y, Stadnik A, Money P, Fam M, Koskimäki J, Girard R, Lane K, McBee N, Ziai W, Hao Y, Dodd R, Carlson A, Camarata P, Caron J, Harrigan M, Gregson B, Mendelow A, Zuccarello M, Hanley D, Abdul-Rahim A, Abou-Hamden A, Abraham M, Ahmed A, Alba C, Aldrich E, Ali H, Altschul D, Amin-Hanjani S, Anderson C, Anderson D, Ansari S, Antezana D, Ardelt A, Arikan F, Avadhani R, Baguena M, Baker A, Barrer S, Barzo P, Becker K, Bergman T, Betz J, Bistran-Hall A, Boström A, Braun J, Brindley P, Broaddus W, Brown R, Buki A, Bulters D, Cao B, Carhuapoma J, Chalela J, Chang T, Chicoine M, Chorro I, Chowdhry S, Cobb C, Corral L, Csiba L, Davies J, Dawson J, Díaz A, Dierdeyn C, Diringer M, Dlugash R, Ecker R, Economas T, Enriquez P, Ezer E, Fan Y, Feng H, Franz D, Freeman W, Fusco M, Galicich W, Gandhi D, Gelea M, Goldstein J, Gonzalez A, Grabarits C, Greenberg S, Gregson B, Gress D, Gu E, Gupta G, Hall C, Harnof S, Hernandez F, Hoesch R, Hoh B, Houser J, Hu R, Huang J, Huang Y, Hussain M, Insinga S, Jadhav A, Jaffe J, Jahromi B, Jallo J, James M, James R, Janis S, Jankowitz B, Jeon E, Jichici D, Jonczak K, Jonker B, Karlen N, Kase C, Keric N, Kerz T, Kitagawa R, Knopman J, Koenig C, Krishnamurthy S, Kumar A, Kureshi I, Laidlaw J, Lakhanpal A, Latorre J, LeDoux D, Lees K, Leifer D, Leiphart J, Lenington S, Li Y, Lopez G, Lovick D, Lumenta C, Luo J, Maas M, MacDonald J, MacKenzie L, Madan V, Majkowski R, Major O, Malhorta R, Malkoff M, Mangat H, Maswadeh A, Matouk C, Mayo S, McArthur K, McCaul S, Medow J, Mezey G, Mighty J, Miller D, Mitchell P, Mohan K, Mould W, Muir K, Muñoz L, Nakaji P, Nee A, Nekoovaght-Tak S, Nyquist P, O'Kane R, Okasha M, O'Kelly C, Ostapkovich N, Pandey A, Parry-Jones A, Patel H, Perla K, Pollack A, Pouratian N, Quinn T, Rajajee V, Reddy K, Rehman M, Reimer R, Rincon F, Rosenblum M, Rybinnik I, Sanchez B, Sansing L, Sarabia R, Schneck M, Schuerer L, Schul D, Schweitzer J, Seder D, Seyfried D, Sheth K, Spiotta A, Stechison M, Sugar E, Szabo K, Tamayo G, Tanczos K, Taussky P, Teitelbaum J, Terry J, Testai F, Thomas K, Thompson C, Thompson G, Torner J, Tran H, Tucker K, Ullman N, Ungar L, Unterberg A, Varelas P, Vargas N, Vatter H, Venkatasubramanian C, Vermillion K, Vespa P, Vollmer D, Wang W, Wang Y, Wang Y, Wen J, Whitworth L, Willis B, Wilson A, Wolfe S, Wrencher M, Wright S, Xu Y, Yanase L, Yenokyan G, Yi X, Yu Z, Zomorodi A. Surgical Performance Determines Functional Outcome Benefit in the Minimally Invasive Surgery Plus Recombinant Tissue Plasminogen Activator for Intracerebral Hemorrhage Evacuation (MISTIE) Procedure. Neurosurgery 2019, 84: nyz077-. PMID: 30891610, PMCID: PMC6537634, DOI: 10.1093/neuros/nyz077.Peer-Reviewed Original ResearchConceptsRecombinant tissue plasminogen activatorTissue plasminogen activatorICH volumeImproved mortalityIntracerebral hemorrhageFunctional outcomePlasminogen activatorFunctional outcome benefitsInitial hematoma volumeHistory of hypertensionBenefits of surgeryType of strokeDisease severity factorsSurgical performanceVolume reductionAlteplase dosesMRS 0Mortality benefitPrimary outcomeHematoma evacuationCatheter aspirationHematoma volumeICH evacuationOutcome benefitsSurgical arm
2005
Encephalopathy and peripheral neuropathy following diethylene glycol ingestion
Hasbani MJ, Sansing LH, Perrone J, Asbury AK, Bird SJ. Encephalopathy and peripheral neuropathy following diethylene glycol ingestion. Neurology 2005, 64: 1273-1275. PMID: 15824363, DOI: 10.1212/01.wnl.0000156804.07265.1a.Peer-Reviewed Original ResearchMeSH KeywordsAdultBrain Diseases, MetabolicCranial Nerve DiseasesCranial NervesElectromyographyEthylene GlycolsHumansKidneyKidney Failure, ChronicMagnetic Resonance ImagingMaleNerve Fibers, MyelinatedNeural ConductionPeripheral NervesPeripheral Nervous System DiseasesQuadriplegiaRecovery of FunctionReflex, AbnormalWallerian DegenerationConceptsAxonal sensorimotor polyneuropathyConduction velocity slowingMotor response amplitudesDiethylene glycol ingestionClinical recoveryDistal latencySensorimotor polyneuropathyGlycol ingestionConduction velocityVelocity slowingIngestionResponse amplitudeQuadriparesisPolyneuropathyQuadriplegiaIntoxication