Reclutando

PANORAMADaño de la Unión Neuromuscular y Descubrimiento de Biomarcadores en Miastenia Gravis Refractaria AChR+

0 criterios cumplidosConsulta de un vistazo cómo tu perfil cumple con cada criterio de elegibilidad.
Objetivo del estudio

Este estudio observacional tiene como objetivo medir cómo los anticuerpos de su suero afectan la actividad de la unión neuromuscular en un organoide cultivado en el laboratorio, comparando pacientes con Miastenia Gravis refractaria al tratamiento con pacientes sensibles al tratamiento, pacientes sin tratamiento previo y participantes de control AChR-negativos.

Qué se está recopilando

Colección de datos

Recopilados en un punto de tiempo - Transversal
Sin Muestra de ADN
Quiénes están siendo reclutados

Enfermedades Autoinmunes+6

+ Enfermedades del sistema inmunitario

+ Neoplasias

A partir de 18 años
+20 Criterios de eligibilidad
Ver todos los criterios de elegibilidad
Cómo está diseñado el estudio

Cohorte

Seguimiento de la incidencia de una enfermedad para identificar factores de riesgo y comprender su progresión a lo largo del tiempo.
Observacional
Inicio del estudio: junio de 2026
Ver detalles del protocolo

Resumen

Patrocinador PrincipalFondazione IRCCS Ca' Granda, Ospedale Maggiore Policlinico
Contacto del EstudioDelia Gagliardi, MD, PhDMás contactos
Última actualización: 21 de julio de 2026
Extraido de una base de datos validada por el gobierno.Reclamar como socio

Fecha de inicio: 4 de junio de 2026

Fecha en la que se inscribió al primer participante.

Experimental platform Neuromuscular organoids are generated from three independent induced pluripotent stem cell lines from healthy individuals, following the self-organising trunk protocol of Faustino Martins et al. (Cell Stem Cell 2020), which yields spinal motor neurons and skeletal muscle fibres forming functional neuromuscular junctions within a single self-patterning tissue. Most mechanistic work on antibody-mediated end-plate damage has relied on rodent experimental autoimmune myasthenia gravis or on myotube monolayers. Rodent junctions differ from human junctions in receptor subunit composition and in expression of membrane-bound complement regulators, while myotube monolayers lack presynaptic input and mature postsynaptic specialisations, so neither reports on the junction as an assembled human structure. Serum is centrifuged at 3000 g for 5 minutes at room temperature and IgG fractions are purified by protein G affinity chromatography, reconstituted in elution buffer and quantified by spectrophotometry, so that exposure is normalised to IgG concentration rather than to serum volume. Anti-AChR reactivity is determined by radioimmunoassay or cell-based assay. Organoids are exposed to purified IgG at 300 nM final concentration, supplemented with 2 percent human serum as a complement source, once neuromuscular junctions are established, at a stage of differentiation at which presynaptic and postsynaptic specialisations are mature. Applying the antibody challenge to a formed junction rather than during synaptogenesis ensures that the changes measured reflect damage to an established structure, consistent with the study hypothesis, rather than impaired junctional development. Readouts are acquired 3 days (acute exposure) and 14 days (chronic exposure) after the start of incubation, with organoids exposed to IgG from AChR-negative serum serving as negative control. Three technical replicates per iPSC line are analysed for each condition and timepoint. Morphological and functional readouts Morphological analysis combines immunofluorescence for spinal and muscle markers, alpha-bungarotoxin/SV2/neurofilament co-staining with stereological quantification of junction number, size and maturation, confocal imaging with two-photon or light-sheet acquisition for high-resolution three-dimensional reconstruction, and electron microscopy for ultrastructural assessment of synaptic components. Complement engagement is assessed by immunofluorescence for C5b-9 membrane attack complex deposition at the junction and by ELISA quantification of soluble C2, C3a and C5b-9 in organoid supernatant. Functional analysis is based on high-density multielectrode array recording, with 15-minute extracellular acquisition of spontaneous activity followed by pharmacological stimulation. Contractility is quantified by video recording as contraction frequency and amplitude in three distinct regions of each organoid, at baseline and after acetylcholine stimulation, with selective inhibitors separating muscle-specific from neuronal contributions. Calcium dynamics are visualised with Fluo-4AM and analysed for frequency, amplitude and propagation in both motor neurons and myofibres. Pharmacological challenge with neurotransmitter agonists and antagonists establishes whether the functional deficit is predominantly presynaptic or postsynaptic, a distinction not resolvable from the clinical phenotype. Molecular characterisation and biomarker pipeline Organoids showing the most pronounced neuromuscular abnormality within each clinical group are selected for molecular profiling. Spatial gene expression is assessed by digital spatial profiling, which maps expression within intact organoid tissue and allows regional and cell-type-specific comparison across conditions, with particular attention to genes encoding proteins involved in junctional homeostasis and in the immune response. Data are analysed through an integrated pipeline combining dedicated analysis software with custom R scripts based on Seurat and Monocle; candidate targets are prioritised by weighted gene co-expression network analysis and pathway enrichment, and validated by in situ hybridisation, immunofluorescence and Western blot. Organoid supernatant provides a compartment in which molecules released during junctional injury can be sampled without confounding by systemic sources. MicroRNA is extracted from supernatant and quantified by real-time PCR for neuromuscular-enriched species (miR-206, miR-133b, miR-1, miR-499) and for inflammation-related species previously associated with myasthenia gravis, while the proteome is characterised by liquid chromatography-mass spectrometry. Species showing the greatest dysregulation are subsequently quantified in participant serum by Simple Plex assays on the Ella platform or by ELISA. Candidates entering clinical validation are therefore anchored to a defined mechanism in a human model of the disease process, rather than selected by unsupervised association with clinical phenotype. Immunological profiling In parallel, circulating cytokines, chemokines and complement factors are quantified by Simple Plex or ELISA, alongside anti-AChR antibody titre. Statistical approach for the organoid component The unit of analysis for organoid data is the iPSC line, which constitutes the independent biological unit; technical replicates are nested within lines. To avoid pseudoreplication, the primary analytical method is a linear mixed-effects model with iPSC line as random intercept and experimental group and timepoint as fixed effects, with planned comparisons Bonferroni-corrected. One-way analysis of variance or Kruskal-Wallis testing with post hoc comparison is reported as a supplementary approach for aggregated data. Bootstrap simulation indicates power above 0.82 for a Cohen f of 0.45 and an intraclass correlation of 0.30 with three iPSC lines and three technical replicates per condition. For the serum biomarker panel, Benjamini-Hochberg control of the false discovery rate below 0.05 is the primary correction method, more appropriate than Bonferroni in an exploratory setting with correlated markers, with Bonferroni reported as a sensitivity analysis. No interim analysis is planned. Distribution of laboratory activities Organoid generation, morphological and functional characterisation, spatial transcriptomic and proteomic profiling, and serum validation of candidate biomarkers are centralised at the coordinating centre. Complement activity assessment on organoid supernatant and immunological profiling are centralised at the partner centre. Centralisation of each assay at a single facility avoids inter-site technical variability.

Patrocinador PrincipalFondazione IRCCS Ca' Granda, Ospedale Maggiore Policlinico
Contacto del EstudioDelia Gagliardi, MD, PhDMás contactos
Última actualización: 21 de julio de 2026
Extraido de una base de datos validada por el gobierno.Reclamar como socio

Protocolo

Esta sección proporciona detalles del plan del estudio, incluyendo cómo está diseñado y qué se está evaluando.
Detalles del Diseño

Se reclutarán 40 pacientes

Número total de participantes que el ensayo clínico espera reclutar.

Cohorte

Estos estudios siguen a un grupo de personas con características comunes (como una condición o año de nacimiento) durante un periodo específico para analizar resultados de salud o exposiciones.


Elegibilidad

Los investigadores buscan pacientes que cumplan ciertos criterios, conocidos como criterios de elegibilidad: estado general de salud o tratamientos previos.
Condiciones
Criterios

Cualquier sexo

Sexo biológico de los participantes elegibles para inscribirse.

A partir de 18 años

Rango de edades de los participantes que pueden unirse al estudio.

Voluntarios sanos permitidos

Indica si personas sanas, sin la condición que se estudia, pueden participar.

Condiciones

Patología

Enfermedades AutoinmunesEnfermedades del sistema inmunitarioNeoplasiasNeoplasias por SitioEnfermedades del sistema nerviosoNeoplasmas del Sistema NerviosoEnfermedades NeuromuscularesSíndromes paraneoplásicosMiastenia Gravis

Criterios

15 criterios de inclusión requeridos para participar
Diagnóstico establecido de miastenia gravis de acuerdo con los criterios internacionales (debilidad muscular fluctuante plus al menos uno de los siguientes: prueba de anticolinesterasa positiva; > 10% de disminución en la estimulación nerviosa repetitiva [SR-ENG]; o aumento de la variabilidad en la electromiografía de fibra única [SFEMG])

Positividad de anticuerpos anti-AChR confirmada mediante pruebas serológicas

MG generalizada estratificada por duración de la enfermedad y respuesta a la terapia inmunosupresora convencional en: MG sin tratamiento previo (nMG); MG sensible al tratamiento con enfermedad estable y al menos 12 meses de seguimiento (sMG); o MG refractaria al tratamiento con al menos 12 meses de seguimiento (rMG)

Negativo para anticuerpos anti-AChR y anti-MuSK

Mostrar Más Criterios

5 criterios de exclusión impiden participar
Miastenia gravis puramente ocular

Embarazo o lactancia materna

MG generalizada seronegativa (negativa para AChR), o MG con anticuerpos anti-MuSK u otros anticuerpos no AChR

Incapacidad para proporcionar el consentimiento informado

Mostrar Más Criterios

Plan de Estudio

Conoce todos los tratamientos administrados en este estudio, su descripción detallada y en qué consisten.
Grupos de Tratamiento
Objetivos del Estudio

4 grupos de intervención están designados en este estudio

0% de probabilidad de ser asignado al grupo placebo

Grupos de Tratamiento

Objetivos del Estudio

Objetivos Primarios

Objetivos Secundarios

Centros del Estudio

Estos son los hospitales, clínicas o centros de investigación donde se lleva a cabo el estudio. Puedes encontrar la ubicación más cercana a ti y su estado de reclutamiento.

Este estudio tiene una ubicación

Reclutando

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico

Milan, ItalyAbrir Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico en Google Maps
Reclutando
1 Centros de Estudio