Clinical trials

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Condition / disease
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Status: Not yet recruiting

Italian Validation of the dNA Scale and Its Correlation With Neurocognitive Variables

The goal of this experimental multicentric intervention study is to validate, in Italian, the dynamic Neurocognitive Adaptation (dNA) Scale, which has already been validated in English, among a healthy elderly population (aged 65 and older) residing in Italy and patients with dementia or Alzheimer's Disease. dNA is a questionnaire designed to assess both current and past levels of engagement in physical, cognitive, creative, and social activities. The study aims to recruit a total of 265 participants with mild cognitive impairment, subjective memory complaints, or dementia. These participants will be distributed among the 8 recruitment centers. Neuropsychological data, subjective measures, and MRI data will be collected and analyzed to address the following research questions: 1) Is there a positive correlation between scores on the dNA Scale and cognitive efficiency, as reflected in neuropsychological measures, such as episodic memory and executive functions? 2) Is there a correlation between dNA scores and improved functional connectivity within neural networks, such as the Default Network (DN)? Participants recruited at the participating clinical centers will undergo: * A clinical interview, during which demographic and medical history information will be collected. The dNA Scale will be administered, along with a questionnaire assessing adherence to dietary habits typical of a Mediterranean diet (14-Item Mediterranean Diet Adherence Screener; MEDAS). * A neuropsychological assessment, aimed at evaluating general cognitive function with a particular focus on episodic memory and executive functions. The following tests will be administered: Mini-Mental State Examination (MMSE) or, alternatively, Montreal Cognitive Assessment (MoCA); Rey Auditory Verbal Learning Test (RAVLT); Trial Making Test (TMT) Form B; Digit Span Forward and Backward (WAIS or WAIS-III); and the Stroop Test. * Self-report questionnaires designed to assess depressive symptoms using the Geriatric Depression Scale (GDS) and anxiety symptoms using the Geriatric Anxiety Scale (GAS) (or alternatively the State-Trait Anxiety Inventory, STAI). Finally, the Cognitive Reserve Index Questionnaire will be administered to estimate Cognitive Reserve (CRIq). * Where available, MRI data previously acquired for clinical or diagnostic purposes will be included in the study and analyzed by the principal investigator.

Participants needed: 265
Trial details
Age: 65+Biological sex: AllType: ObservationalSponsor: Neuromed IRCCSUpdated: Jun 11, 2026Locations: 8Duration: 1 Year
Eligibility criteria

Individuals aged ≥ 65 years residing in Italy; [+29]

Individuals aged < 65 years; [+3]

Status: Recruiting

Mediterranean Diet on Pregnancy and Foetus Development

The Mediterranean-style diet has been associated with longevity, long-life wellbeing, lower risk of cardiovascular disease, cancer, obesity, and metabolic syndrome. Research is pointing to the benefits that MeD could have in pregnant. Pregnancy is a very complex period and recently, the attention has been focused on the possibility that healthy dietary patterns positively influence pregnancy and the development of organs in the offspring. The mechanisms through which MeD influences pregnancy and fetal growth may partly depend on its antinflammatory properties and possibly on changes in epigenetic mechanisms. Systemic inflammation might contribute to the association between maternal obesity and less favorable neurodevelopmental outcomes. The investigators aim to define how maternal adhesion to MeD may affect pregnancy and new-born development, hence representing a notable burden from a public health and social perspective. Main objective of this project is to build up a birth cohort suitable to investigate the role of maternal dietary habits on maternal and new-born health, with special focus on MeD and its possible mechanism of action through epigenetic and inflammation changes. To establish a mother/new-born cohort, collect detailed information on maternal dietary habits and set-up a biobank of biological samples to evaluate the association between dietary habits and pregnancy outcomes. The investigators will recruit 2000 pairs (mother, new-born) in different obstetrics departments. To investigate the association between maternal dietary habits, foetal growth and offspring development and possible mediation by the inflammation profile of the mother. To understand whether maternal dietary habits are associated with epigenetic changes in the offspring and if this process is driven by the inflammation profile of the mother. Venous blood samples will be obtained at the baseline and at each gestational period for ultrasound at 11-13 gestational weeks, 20-22 weeks and 30-32 weeks. Women will be followed-up with standard clinical and 2D ultrasound examinations at gestational weeks 11-13, 20-22 and 30-32 to evaluate the fetal growth. Offspring development will be assessed at 6, 12, 18, 24 months of age. After delivery, the investigators will collect umbilical cord blood and saliva samples from new-born using standard procedures. To understand if new-born epigenetics is associated with infant physical and neurocognitive development in the following 2 years.

Participants needed: 2,000
Trial details
Age: 18-50Biological sex: FemaleType: ObservationalSponsor: Neuromed IRCCSUpdated: Apr 9, 2026Locations: 1
Eligibility criteria

pregnant women attending the Units of Obstetrics and Gynecology at Neuromed Clin... [+2]

pregnancy with foetuses with known chromosomal or congenital malformation [+6]

Status: Recruiting

Precision Medicine and Neurodegenerative Diseases: Advanced Systems for the Diagnosis and Treatment of Parkinson's Disease and Alzheimer's Disease.

In recent decades, advances in medicine have significantly improved both quality of life and life expectancy. However, these positive effects are also associated with a considerable increase in the prevalence of age-related diseases. Among these, Alzheimer's disease (AD), Parkinson's disease (PD), and type 2 diabetes (T2D) currently represent a major threat to human health. PD and AD are the most common neurodegenerative diseases in industrialized populations. In particular, AD accounts for 54% of all cases of dementia, with a prevalence of 4.4% among individuals over 65 years of age. PD has a prevalence of about 1% in people older than 60 years, reaching up to 4% in those over 80 years of age. AD and PD are highly disabling disorders with a slow but progressive course, caused by the degeneration and/or death of nerve cells. This results in impairments in the control of movement and balance, as in the case of PD, or in cognitive functioning, as in AD. To date, neither effective treatments nor early diagnostic tools are available to address these conditions in the initial phase of neurodegeneration. Likewise, there are no tools capable of monitoring disease progression and improving patients' adaptation to therapy. Moreover, although the association between T2D and the risk of PD and/or AD has long been recognized, these conditions were historically considered unrelated. Recent evidence from clinical and epidemiological studies suggests the existence of shared pathophysiological mechanisms associated with insulin resistance and persistent inflammation in several metabolically relevant tissues, such as adipose tissue and the brain. However, the mechanisms that increase the risk of PD and/or AD in individuals with T2D remain poorly understood. These data highlight how relevant these diseases are for the National Health System and demonstrate that they represent one of the most important priorities to be addressed, requiring substantial investments in both scientific research and early diagnostic strategies. Therefore, the present project proposal, which aims to develop new minimally invasive tools for the early prediction and monitoring of neurodegenerative diseases such as AD and PD, will help fill an important gap in the clinical and therapeutic management of these patients.

Participants needed: 500
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Neuromed IRCCSUpdated: Mar 12, 2026Locations: 1Duration: 24 Months
Eligibility criteria

Inclusion criteria for PD patients. For the IRCCS INM Neuromed, patients will be...

Pre-existing psychiatric disorders; [+2]

Status: Not yet recruiting

Transcranial Static Magnetic Stimulation (tSMS) in Huntington's Disease (HD)

Huntington's disease (HD) is a neurodegenerative pathology characterized by choreic hyperkinesias which represent the typical motor symptom and are represented by involuntary, aimless, irregular, recurrent, unpredictable and non-rhythmic movements of the trunk, face and limbs. Non-invasive brain neuromodulation has been proposed as a possible treatment for involuntary movements in several clinical conditions including HD. The objective of the study is to evaluate the effect of home treatment with repeated sessions of transcranial static magnetic field stimulation (tSMS) in safely reducing choreic hyperkinesis in HD patients.

Participants needed: 30
Trial details
Biological sex: AllType: InterventionalSponsor: Neuromed IRCCSUpdated: May 16, 2025
Eligibility criteria

Diagnosis of HD genetically confirmed (number of CAG triplets ≥36) [+4]

Contraindications to exposure to magnetic fields [+3]

Status: Not yet recruiting

Transcranial Static Field Stimulation (tSMS) and Transcranial Direct Current Stimulation (tDCS) for the Treatment of Neurological Symptoms.

The presence of damage to the central and/or peripheral nervous system resulting from various pathologies, such as Multiple Sclerosis (MS), Amyotrophic Lateral Sclerosis (ALS), Parkinson's disease (PD), Alzheimer's disease (AD), dementia, traumatic brain injury (TBI), stroke, or other neurological syndromes, is commonly a cause of both physical and mental disability. This leads to symptoms in the patient, including: pain, migraines, headaches, neuropathic pain, trigeminal neuralgia, depression, anxiety, apathy, fatigue, cognitive decline, aphasia, functional motor disorders (FMD), neuromuscular tone alterations, and hyposthenia, in addition to involvement of various cognitive functions, such as decision-making, problem-solving, learning, memory, executive functions, social cognition, and emotional cognition. The presence of these neurological symptoms is often evident in a first clinical examination and is one of the main reasons for further healthcare consultations. These difficulties have a profound impact on the quality of life, affecting work, social, and family functioning. In recent years, several non-invasive brain stimulation (NIBS) techniques have emerged, aimed at eliciting brain neural networks, such as transcranial static magnetic field stimulation (tSMS) and transcranial direct current stimulation (tDCS). tSMS is an NIBS technique that involves the application of a neodymium magnet on the scalp. Since the first study proposing this method, several others have confirmed that tSMS can reduce corticospinal excitability. tDCS involves the application of weak electrical currents capable of generating an electric field that can modulate neural activity in an excitatory or inhibitory manner. NIBS techniques can be used experimentally to modulate cortical activity. The primary aim of this proposal is to address the impact of neurological symptoms through the combination of tSMS with tDCS and rehabilitation techniques. Specifically, it aims to understand whether the combination of these neuromodulatory therapeutic NIBS methods can enhance symptom improvement in patients with neurological conditions. To assess the impact of this intervention, a series of tests and questionnaires, described in detail below, will be used to evaluate the severity of the reported symptoms and secondary outcomes. Moreover, the contribution of specific brain areas to the symptom will be evaluated through the direct modulation of brain activity. This modulation will be achieved using an additional NIBS technique, such as Transcranial Magnetic Stimulation (TMS). TMS, in particular, is a non-invasive method for stimulating neurons in the brain's superficial areas, which has been frequently used in neurology as a diagnostic and research tool since its introduction. TMS uses magnetic fields to induce electrical currents capable of facilitating or inhibiting cortical activity.

Participants needed: 40
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Neuromed IRCCSUpdated: Mar 28, 2025Locations: 1
Eligibility criteria

Males or females aged between 18 and 80 years; [+4]

Partial or total inability to understand or make decisions, inability to provide... [+5]

Status: Recruiting

Discovery and Validation of Protein Structural Complexes in Circulating Biofluids As Novel Biomarkers for Early Diagnosis, Prognosis and Therapeutic Management of Patients Affected by Neurodegenerative Disorders

Neurodegenerative disorders (NDDs), such as Parkinson¿s disease (PD), Alzheimer¿s disease (AD), Frontotemporal dementia (FTD) and Amyotrophic Lateral Sclerosis (ALS) are characterized by aggregation and intracellular accumulation of misfolded proteins, which are believed to play a key role in synaptic dysfunction and neuronal death. Protein structural complexes in biofluids have been proposed to mirror pathological conditions suggesting their use as biomarkers for NDDs characterized by protein aggregation. In this framework, we plan to: i) collect a large cohort of NDD and prodromal patients and healthy subjects using standardized clinical and genetics procedures; ii) apply a novel method based on genomics, proteomics and bioinformatic analysis to map protein complexes in biofluids; iii) identify novel circulating biomarkers and correlate them to genetic profiling and disease endophenotypes, and; iv) validate the biological properties in human brain tissue and dopaminergic cultures.

Participants needed: 110
Trial details
Age: 20+Biological sex: AllType: ObservationalSponsor: Neuromed IRCCSUpdated: Mar 18, 2025Locations: 1
Eligibility criteria

Inclusion criteria for PD patients. [+2]

PD PATIENTS [+13]

Status: Recruiting

Effects of Transcranial Static Magnetic Field Stimulation (tSMS) in Progressive Multiple Sclerosis

In multiple sclerosis (MS) brains, inflammation induces specific abnormalities of synaptic transmission, collectively called inflammatory synaptopathy. Such synaptopathy consists in unbalanced glutamatergic and GABAergic transmission and in remarkable changes in synaptic plasticity, causing excitotoxic neurodegeneration and impairing the clinical compensation of the ongoing brain damage, thereby exacerbating the clinical manifestation of the disease. In progressive MS (PMS), synaptopathy is characterized by pathological potentatiation of glutamate-mediated synaptic up-scaling (Centonze et al., 2008; Rossi et al., 2013) and loss of long-term synaptic potentiation \[LTP (Weiss et al., 2014)\], both caused by proinflammatory molecules (released by microglia, astroglia, and infiltrating T and B lymphocytes) (Malenka et al., 2004; Di Filippo et al., 2017; Stampanoni Bassi et al., 2019). The combination of increased up-scaling and decreased LTP has a significant impact on the clinical manifestations of PMS, often presenting with signs and symptoms indicating length-dependent degeneration of neurons of the corticospinal tract. Altered LTP expression impairs brain ability to compensate ongoing neuronal loss (Stampanoni Bassi et al., 2020), and pathological TNF-mediated up-scaling may directly promote excitotoxic damage and neurodegeneration (Rossi et al., 2014). In addition, up-scaling and LTP are mutually exclusive at a given synapse through a mechanism of synaptic occlusion (i.e., pre-existing up-scaling saturates and prevents subsequent LTP expression), further promoting neurodegeneration by preventing the pro-survival effect of LTP, the induction of which activates intracellular anti-apoptotic pathways (Bartlett \& Wang, 2013). It follows that a neuromodulation approach that can chronically (over several months) dampen up-scaling expression in the primary motor cortex (M1) of PMS patients could be beneficial by preventing excitotoxic neurodegenerative damage triggered by up-scaling itself (Centonze et al. 2008, Rossi et al. 2014), and also by promoting LTP induction and LTP-dependent functional compensation of deficits, thereby reducing the speed of the neurodegeneration process through increased LTP-dependent neuronal survival and preservation of dendritic spines (Ksiazek-Winiarek et al., 2015). Our study aims to test whether transcranial static magnetic field stimulation (tSMS) could represent such a therapeutic approach, as recently proposed in patients with amyotrophic lateral sclerosis (ALS) (Di Lazzaro et al, 2021). Forty (40) ambulatory patients with PMS, presenting with the ascending myelopathy phenotype of the disease, will be recruited at the MS Center of the Unit of Neurology of the IRCCS Neuromed in Pozzilli (IS). In this randomized, sham-controlled, double-blind, within-subjects, cross-over study (allocation ratio 1:1), we will test the ability of repeated sessions of tSMS applied bilaterally over the M1 to safely reduce disability progression in patients with PMS. Patients will be randomly assigned to either real or sham tSMS. Each patient will participate in two experimental phases (real or sham stimulation). Each patient will self-administer tSMS over right and left M1, two session per day, 60 minutes each. The order will be randomly established and counterbalanced across participants. Both investigators and participants will be blinded to stimulation parameters. In the "real stimulation" phase, tSMS will be applied for 120 minutes each day, at home, for 12 consecutive months. In the "sham stimulation" phase, sham tSMS will be delivered with non-magnetic metal cylinders, with the same size, weight and appearance of the magnets. Clinical evaluations, including the Multiple Sclerosis Functional Composite measure (MSFC) will be performed before, during and after each experimental phase ("real" and "sham"). In addition, blood levels of neurofilaments, excitability and plasticity of M1, and MRI measures of cortical thickness will be measured before, during and after each stimulation phase.

Participants needed: 40
Trial details
Age: 18-65Biological sex: AllType: InterventionalSponsor: Neuromed IRCCSUpdated: Oct 16, 2024Locations: 1
Eligibility criteria

Ability to give written informed consent to the study [+5]

Relapsing-remitting MS or progressive MS presenting with signs of symptoms other... [+6]

Status: Recruiting

Biomarkers of Synaptic Damage in Multiple Sclerosis

A prospective and retrospective cohort study of about five years will be performed on blood and cerebrospinal fluid samples taken for diagnostic reasons from recruited patients within the Neuromed Neurology Unit. Subjects with other chronic neurodegenerative diseases such as Amyotrophic lateral sclerosis (ALS), Alzheimer's disease (AD) and Parkinson's disease (PD), and healthy subjects subjected to blood sampling and / or lumbar puncture for clinical reasons will be recruited As control groups.

Participants needed: 300
Trial details
Age: 18-65Biological sex: AllType: ObservationalSponsor: Neuromed IRCCSUpdated: Oct 28, 2022Locations: 1
Eligibility criteria

Male and female patients (age between 18 and 65 years) [+3]

Inability to provide informed written consent [+4]

Status: Recruiting

Functional Study of Inhibitory Neurotransmission in the Human Epileptic Brain.

Epilepsy is a neurological condition that afflicts 1% of the world population. 30% of patients become drug-resistant to classic antiepileptic treatment and only a small percentage, 5%, can undergo a neurosurgical resection of epileptic focus and recover almost completely from symptoms. To date, an imbalance between inhibitory and excitatory neurotransmission has been well accepted as the main root cause of epilepsy. A better understanding of the molecular mechanisms of this can lead to developing new therapeutic strategies. The investigators of the project want to describe the functional alteration of GABA- A receptor, the main actor of inhibitory neurotransmission in the central nervous system and characterize its subunit composition in the epileptic foci of patients with temporal lobe epilepsy. The authors, also, want to modulate, by means of selective neuroactive molecules, the function of this receptor to increase the inhibitory tone in the epileptic brain.

Participants needed: 60
Trial details
Biological sex: AllType: ObservationalSponsor: Neuromed IRCCSUpdated: Aug 2, 2022Locations: 1
Eligibility criteria

Patients suffering from Temporal lobe epilepsy caused by stroke, ischemia, caver...