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1.
Medicina (B Aires) ; 83(4): 588-602, 2023.
Article in Spanish | MEDLINE | ID: mdl-37582133

ABSTRACT

Niemann-Pick type C (NPC) is a disorder of the lysosomal metabolism due to biallelic pathogenic variants in NPC1 or NPC2. Intracellular deposit of lipids, mainly unesterified cholesterol, gives rise to oxidative damage in several tissues, mainly neurons, spleen and liver. This, in turn, is associated with a myriad of neurological / psychiatric and visceral symptoms, with wide variability in age of presentation, from prenatal / neonatal to adult-onset forms of the disease. The last few years have seen considerable progress in understanding this disease and its management. In this consensus, current approaches to the diagnosis, follow-up and treatment of NPC (including the use of miglustat, the only specific drug approved at the time) are discussed by an Argentinian panel of experts.


La enfermedad de Niemann-Pick tipo C (NPC) es un trastorno del metabolismo lisosomal que se debe a la presencia de variantes patogénicas bialélicas en los genes NPC1 o NPC2. El depósito intracelular de lípidos, especialmente colesterol no esterificado, provoca daño oxidativo en diversos tejidos, especialmente neuronas, bazo e hígado. Esto, a su vez, induce la aparición de un conjunto de síntomas neurológicos / psiquiátricos y viscerales, con una amplia variabilidad de edad de aparición, desde formas prenatales / neonatales hasta otras de aparición en la vida adulta. En los últimos años ha habido avances considerables en la comprensión sobre esta enfermedad y su manejo. En el presente consenso un grupo de expertos argentinos abordan los enfoques actuales de diagnóstico, seguimiento y tratamiento de NPC, incluyendo el uso de miglustat como única terapia específica aprobada en la actualidad.


Subject(s)
Niemann-Pick Disease, Type C , Pick Disease of the Brain , Adult , Infant, Newborn , Humans , Niemann-Pick Disease, Type C/diagnosis , Niemann-Pick Disease, Type C/drug therapy , Niemann-Pick Disease, Type C/genetics , Consensus , Cholesterol
2.
J Clin Neuromuscul Dis ; 25(1): 1-10, 2023 Sep 01.
Article in English | MEDLINE | ID: mdl-37611264

ABSTRACT

ABSTRACT: In the context of the global vaccination campaign against COVID-19, several cases of postvaccinal Guillain-Barré syndrome (GBS) were reported. Whether a causal relationship exists between these events has yet to be established. We investigated the clinical and electromyographic characteristics of patients who developed GBS after COVID-19 vaccination and compare these with findings in patients with GBS, without a history of recent vaccination. We included 91 cases between March 2020 and March 2022, treated at 10 referral hospitals of Buenos Aires, Argentina. Of these, 46 had received vaccination against COVID-19 within the previous month. Although Medical Research Council sum-scores were similar in both groups (median 52 vs. 50; P = 0.4), cranial nerve involvement was significantly more frequent in the postvaccination group (59% vs. 38%; P = 0.02), as was bilateral facial paralysis (57% vs. 24%; P = 0.002). No differences were found in clinical or neurophysiological phenotypes, although 17 subjects presented the variant of bilateral facial palsy with paresthesias (11 vs. 6; P = 0.1); nor were significant differences observed in length of hospital stay or mortality rates. Future vaccine safety monitoring and epidemiology studies are essential to demonstrate any potential causal relationship between these events.


Subject(s)
COVID-19 , Guillain-Barre Syndrome , Humans , COVID-19 Vaccines/adverse effects , COVID-19/prevention & control , Guillain-Barre Syndrome/epidemiology , Guillain-Barre Syndrome/etiology , Retrospective Studies , Paresthesia
3.
Medicina (B.Aires) ; 83(4): 588-602, ago. 2023. graf
Article in Spanish | LILACS-Express | LILACS | ID: biblio-1514517

ABSTRACT

Resumen La enfermedad de Niemann-Pick tipo C (NPC) es un trastorno del metabolismo lisosomal que se debe a la presencia de variantes patogénicas bialélicas en los genes NPC1 o NPC2. El depósito intracelular de lípidos, especialmente colesterol no esterificado, provoca daño oxidativo en diversos tejidos, especialmente neuronas, bazo e hígado. Esto, a su vez, induce la aparición de un conjunto de síntomas neurológicos/psiquiátricos y viscerales, con una amplia variabilidad de edad de apa rición, desde formas prenatales/neonatales hasta otras de aparición en la vida adulta. En los últimos años ha habido avances considerables en la comprensión sobre esta enfermedad y su manejo. En el presente consenso un grupo de expertos argentinos abordan los enfoques actuales de diagnóstico, seguimiento y tratamiento de NPC, incluyendo el uso de miglustat como única terapia específica aprobada en la actualidad.


Abstract Niemann-Pick type C (NPC) is a disorder of the lyso somal metabolism due to biallelic pathogenic variants in NPC1 or NPC2. Intracellular deposit of lipids, mainly unesterified cholesterol, gives rise to oxidative damage in several tissues, mainly neurons, spleen and liver. This, in turn, is associated with a myriad of neurologi cal/psychiatric and visceral symptoms, with wide vari ability in age of presentation, from prenatal/neonatal to adult-onset forms of the disease. The last few years have seen considerable progress in understanding this disease and its management. In this consensus, current approaches to the diagnosis, follow-up and treatment of NPC (including the use of miglustat, the only specific drug approved at the time) are discussed by an Argentin ian panel of experts.

4.
J Neurol ; 266(1): 112-118, 2019 Jan.
Article in English | MEDLINE | ID: mdl-30386877

ABSTRACT

BACKGROUND: The objective was to evaluate the precision of kappa and lambda free light chains (KFLC and LFLC) in CSF for the diagnosis of multiple sclerosis (MS) and prognosis of clinically isolated syndrome (CIS). METHODS: CSF and serum samples from CIS, MS and other neurological non-MS disease were collected between 2015 and 2017. FLC concentrations were measured using immunoassay Freelite™. Results were correlated with the patients' diagnoses and ROC curve analysis was used to determine accuracy. In CIS patients, analysis of FLC were compared in CIS converters vs. non-converter during follow-up. RESULTS: In the MS group (n = 41), the optimal cut-off for KFLC determined was 7 mg/L, with a diagnostic sensitivity and specificity of 95% and 97%, respectively. The optimal cut-off for LFLC was 0.7 mg/L, with a diagnostic sensitivity and specificity of 71% and 81%, respectively. 36 CIS patients were included; mean follow-up time was 28 ± 9 months, and 22 (61.1%) patients converted to MS. The median concentration of CSF K and LFLCs at CIS diagnosis was slightly higher in CIS-converters compared to non-converters, but this did not reach statistical significance (KFLC: median 7 ± 5.3 mg/L vs. 5 ± 2.3 mg/L, p = 0.11; LFLC 0.7 ± 0.33 mg/L vs. 0.5 ± 0.23 mg/L p = 0.16). A strong correlation was observed between the concentration of K and L FLCs at diagnosis and the change in PBVC during follow-up (r = 0.72 and r = 0.65, respectively). CONCLUSION: KFLCs have a high sensitivity and specificity for the diagnosis of MS. FLC concentrations at CIS diagnosis were not significantly higher in CIS-converters.


Subject(s)
Demyelinating Diseases/cerebrospinal fluid , Immunoglobulin kappa-Chains/cerebrospinal fluid , Immunoglobulin lambda-Chains/cerebrospinal fluid , Adult , Biomarkers/blood , Biomarkers/cerebrospinal fluid , Demyelinating Diseases/blood , Female , Follow-Up Studies , Humans , Immunoglobulin kappa-Chains/blood , Immunoglobulin lambda-Chains/blood , Male , Prognosis , Prospective Studies , Sensitivity and Specificity
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