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Updated: Mar 25, 2026

Determination of the Relative Potency of an Anti-TNF Monoclonal Antibody mAb by Neutralizing TNF Using an In Vitro Bioanalytical Method
Published on: September 16, 2017
Clinical perspectives of TRAIL: insights into central nervous system disorders
Veronica Tisato1, Arianna Gonelli2, Rebecca Voltan2
1Department of Morphology, Surgery and Experimental Medicine and LTTA Centre, University of Ferrara, Via Fossato di Mortara 66, 44121, Ferrara, Italy. veronica.tisato@unife.it.
Abstract:
The TNF-related apoptosis inducing ligand TRAIL is a member of the TNF superfamily that has been firstly studied and evaluated for its anti-cancer activity, and the insights into its biology have already led to the identification of several TRAIL-based anticancer strategies with strong clinical therapeutic potentials. Nonetheless, the TRAIL system is far more complex and it can lead to a wider range of biological effects other than the ability of inducing apoptosis in cancer cells. By virtue of the different receptors and the different signalling pathways involved, TRAIL plays indeed a role in the regulation of different processes of the innate and adaptive immune system and this feature makes it an intriguing molecule under consideration in the development/progression/treatment of several immunological disorders. In this context, central nervous system represents a peculiar anatomic site where, despite its "status" of immune-privileged site, both innate and adaptive inflammatory responses occur and are involved in several pathological conditions. A number of studies have evaluated the role of TRAIL and of TRAIL-related pathways as pro-inflammatory or protective stimuli, depending on the specific pathological condition, confirming a twofold nature of this molecule. In this light, the aim of this review is to summarize the main preclinical evidences of the potential/involvement of TRAIL molecule and TRAIL pathways for the treatment of central nervous system disorders and the key suggestions coming from their assessment in preclinical models as proof of concept for future clinical studies.
Insights
Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) shows complex roles beyond cancer therapy, impacting immune responses. This review explores TRAIL
Area of Science:
- Immunology
- Neuroscience
- Molecular Biology
Background:
- Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) is a TNF superfamily member initially studied for anti-cancer activity.
- TRAIL's biological functions extend beyond apoptosis induction, influencing innate and adaptive immune system regulation.
- The central nervous system (CNS), typically immune-privileged, experiences inflammatory responses implicated in pathology.
Purpose of the Study:
- To review preclinical evidence on TRAIL and its pathways in central nervous system (CNS) disorders.
- To assess the potential therapeutic involvement of TRAIL in treating CNS conditions.
- To provide insights for future clinical studies based on preclinical findings.
Main Methods:
- Literature review of preclinical studies.
- Analysis of research on TRAIL's role in CNS inflammation and pathology.
- Evaluation of TRAIL pathway involvement in various CNS disease models.
Main Results:
- TRAIL exhibits a dual role in CNS disorders, acting as both a pro-inflammatory and protective mediator.
- Preclinical models demonstrate TRAIL's involvement in the development and progression of CNS pathologies.
- Evidence suggests TRAIL pathways can be modulated for therapeutic benefit in CNS diseases.
Conclusions:
- TRAIL and its associated pathways represent a promising therapeutic target for CNS disorders.
- Further research into TRAIL's complex functions in the CNS is warranted.
- Preclinical data supports the translation of TRAIL-based strategies to clinical applications for neurological conditions.
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