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Bettenson, D.

Publications and source records attributed to Bettenson, D..

2 recordsLinked to original sources

Shipment Stress in Early Life Aggravates Disease Pathogenesis in Mice with Experimental Autoimmune Encephalomyelitis: Support for a Two-Hit Hypothesis of Multiple Sclerosis Etiology

Visual impairments are one of the earliest diagnosed symptoms of multiple sclerosis (MS). The onset and progression of vision loss in MS may be influenced by cumulative psychophysiological stress. Here, we used a two-hit model of stress in female mice to determine if early life stress (ELS) influences the clinical severity of experimental autoimmune encephalomyelitis (EAE) later in life. We hypothesized that ELS caused by animal transportation during early postnatal development represents a co-factor which can exacerbate the disease severity of EAE. Adult EAE mice with ELS displayed more severe clinical signs and delayed recovery compared to non-stressed EAE mice. ELS also diminished visual acuity measured by optokinetic responses, locomotion and exploratory behaviours in EAE mice. Notably, ELS caused earlier onset of visual impairments in EAE. Exacerbated functional impairments in stressed EAE mice were highly correlated with circulating corticosterone levels. The findings show that the progression of induced EAE (second hit) in adulthood can be significantly impacted by adverse early life experiences (first hit). The observations emphasize the importance of comprehensive behavioural testing, including non-motor functions, to enhance the translational value of preclinical animal models of MS. Moreover, shipment stress of laboratory animals should be considered a necessary variable in preclinical MS research. The consideration of cumulative lifetime stresses provides a new perspective of MS pathogenesis within a personalized medicine framework.

neuroscience↗

Thermoregulatory Dynamics Reveal Sex-Specific Inflammatory Responses to Experimental Autoimmune Encephalomyelitis in Mice: Implications for Multiple Sclerosis-Induced Fatigue in Females

The course of multiple sclerosis (MS) is characterized by striking sex differences in symptoms such as fatigue and impaired thermal regulation, which are associated with aggravated systemic pro-inflammatory processes. The purpose of this study was to replicate these symptoms in experimental autoimmune encephalomyelitis (EAE) in C57BL/6 mice in the quest to advance the preclinical study of non-motor symptoms of MS. Male and female C57BL/6 mice exposed to a mild form of EAE were evaluated for the progression of clinical, behavioural, thermal, and inflammatory processes. We show higher susceptibility in females to EAE than males based on greater clinical score and cumulative disease index (CDI), fatigue-like and anxiety-like behaviours. Accordingly, infrared (IR) thermography indicated higher cutaneous temperature in females from post-induction days 12 to 23. Females also responded to EAE with greater splenic and adrenal gland weights than males as well as sex-specific changes in pro- and anti-inflammatory cytokines. These findings provide the first evidence of a sex-specific thermal response to immune-mediated demyelination, thus proposing a non-invasive assessment approach of the psychophysiological dynamics in EAE mice. The results are discussed in relation to the thermoregulatory correlates of fatigue and how endogenously elevated body temperature without direct heat exposure may be linked to psychomotor inhibition in patients with MS.

neuroscience↗