- Research Article
- 10.1016/j.spsy.2025.01.010
Therapeutic mediation and the alleviation of psychiatric symptoms, a retrospective survey
- Feb 01, 2025
- Soins. Psychiatrie
- Catherine Monfort + 5 more +5
Publications from 2021 to 2026
Showing 9 of 9 papers
Therapeutic mediation and the alleviation of psychiatric symptoms, a retrospective survey
PRO37 HEALTHCARE RESOURCE USE IN CHARCOT-MARIE-TOOTH DISEASE IN THE EU AND US: INTERIM RESULTS FROM AN INTERNATIONAL DIGITAL REAL-WORLD STUDY
P3‐041: A POTENTIAL TRI‐THERAPY FOR ALZHEIMER'S DISEASE
Cognitive symptoms in Alzheimer's disease (AD) are currently managed by moderately acting drugs which efficacy decreases fast over time. We previously showed that a combination of acamprosate and baclofen (PXT864) synergistically prevented cognitive impairments in AD mice. In this study, we investigated whether PXT864 could i) protect cognitive functions by synergizing with sub-therapeutic doses of donepezil (DNPz) to limit the occurrence of adverse events, or ii) rescue the efficacy of DNPz that is lost over time under therapeutic doses. We used the Aβ25-35 intracerebroventricular (ICV) injection mouse to model AD. First, PXT864 was tested in combination with sub-therapeutic doses of DNPz, both administered to mice before Aβ25-35 injection. Second, we modelized the loss of activity of DNPz treatment over time when initiated after Aβ25-35 ICV injection. Third, once DNPz effect was lost, we added PXT864 to DNPz and assessed the value of such tri-therapy. Efficacy was assessed by Y-maze and step-through passive avoidance cognitive tests. We found that combination of sub-therapeutic dose of PXT864 and DNPz yielded synergistic protection against Aβ-induced cognitive deficits. We then confirmed the declining efficacy of DNPz at a late stage of the disease in mice. Interestingly, adding PXT864 at that stage fully restored lost cognition in these animals that became all irresponsive to DNPz. These data highlight the importance of combinational strategies and suggest that PXT864 could be used either as a first line treatment or a second line treatment with a safe sub-therapeutic or even a full therapeutic dose of DNPz in Alzheimer's patients.
Read morePND148 - DEVELOPMENT OF A DIGITAL APP AND INNOVATIVE RECRUITMENT FOR AN INTERNATIONAL REAL-WORLD OBSERVATIONAL STUDY IN CHARCOT MARIE TOOTH DISEASE
Skin Biopsy Findings in Patients With CMT1A: Baseline Data From the CLN-PXT3003-01 Study Provide New Insights Into the Pathophysiology of the Disorder.
Charcot-Marie-Tooth disease type 1A (CMT1A), the most common form of Charcot-Marie-Tooth diseases, is a demyelinating neuropathy caused by a deletion encompassing the gene coding for PMP22, a myelin protein of the peripheral nervous system. Although myelinated fibers are mostly involved in CMT1A, some patients experience neuropathic pain. We thus investigated whether unmyelinated fibers are lost in CMT1A. Skin biopsies were taken from the distal portion of the leg of 80 patients with CMT1A as part of the PXT30003-01 study and processed for quantification of intraepidermal nerve fiber density (IENFD). Mean IENFD was significantly lower in CMT1A patients than in healthy controls. Although the data were highly dispersed, IENFD tended to decrease with age and was higher overall in female patients and controls than male patients and controls. This study shows that small nerve fibers are affected in CMT1A and that this correlates with pin sensitivity. The density of epidermal Langerhans cells (LCs) was also significantly reduced in CMT1A patients, suggesting the involvement of LCs in neuropathic pain processes. These findings raise several questions concerning the interactions of Schwann cells and LCs with unmyelinated fibers in CMT1A. Moreover, they suggest that factors other than PMP22 gene dosage are involved in small fiber pathology in CMT1A.
Read moreA Multi-Marker Genetic Association Test Based on the Rasch Model Applied to Alzheimer's Disease.
Results from Genome-Wide Association Studies (GWAS) have shown that the genetic basis of complex traits often include many genetic variants with small to moderate effects whose identification remains a challenging problem. In this context multi-marker analysis at the gene and pathway level can complement traditional point-wise approaches that treat the genetic markers individually. In this paper we propose a novel statistical approach for multi-marker analysis based on the Rasch model. The method summarizes the categorical genotypes of SNPs by a generalized logistic function into a genetic score that can be used for association analysis. Through different sets of simulations, the false-positive rate and power of the proposed approach are compared to a set of existing methods, and shows good performances. The application of the Rasch model on Alzheimer’s Disease (AD) ADNI GWAS dataset also allows a coherent interpretation of the results. Our analysis supports the idea that APOE is a major susceptibility gene for AD. In the top genes selected by proposed method, several could be functionally linked to AD. In particular, a pathway analysis of these genes also highlights the metabolism of cholesterol, that is known to play a key role in AD pathogenesis. Interestingly, many of these top genes can be integrated in a hypothetic signalling network.
Read moreInterest of erp biomarker in clinical development of Alzheimer's disease therapeutics
Analysis of drug combinations: current methodological landscape.
Combination therapies exploit the chances for better efficacy, decreased toxicity, and reduced development of drug resistance and owing to these advantages, have become a standard for the treatment of several diseases and continue to represent a promising approach in indications of unmet medical need. In this context, studying the effects of a combination of drugs in order to provide evidence of a significant superiority compared to the single agents is of particular interest. Research in this field has resulted in a large number of papers and revealed several issues. Here, we propose an overview of the current methodological landscape concerning the study of combination effects. First, we aim to provide the minimal set of mathematical and pharmacological concepts necessary to understand the most commonly used approaches, divided into effect-based approaches and dose–effect-based approaches, and introduced in light of their respective practical advantages and limitations. Then, we discuss six main common methodological issues that scientists have to face at each step of the development of new combination therapies. In particular, in the absence of a reference methodology suitable for all biomedical situations, the analysis of drug combinations should benefit from a collective, appropriate, and rigorous application of the concepts and methods reviewed here.
Read moreCombining two repurposed drugs as a promising approach for Alzheimer's disease therapy.
Alzheimer disease (AD) represents a major medical problem where mono-therapeutic interventions demonstrated only a limited efficacy so far. We explored the possibility of developing a combinational therapy that might prevent the degradation of neuronal and endothelial structures in this disease. We argued that the distorted balance between excitatory (glutamate) and inhibitory (GABA/glycine) systems constitutes a therapeutic target for such intervention. We found that a combination of two approved drugs – acamprosate and baclofen – synergistically protected neurons and endothelial structures in vitro against amyloid-beta (Aβ) oligomers. The neuroprotective effects of these drugs were mediated by modulation of targets in GABA/glycinergic and glutamatergic pathways. In vivo, the combination alleviated cognitive deficits in the acute Aβ25–35 peptide injection model and in the mouse mutant APP transgenic model. Several patterns altered in AD were also synergistically normalised. Our results open up the possibility for a promising therapeutic approach for AD by combining repurposed drugs.
Read more