Publications by authors named "A Eliassi"

Introduction: A 40-Hz white light emitting diode (WLED) has emerged as an alternative nonpharmacological and noninvasive approach to Alzheimer disease (AD). Here, we investigated the therapeutic effects of 40-Hz WLED on psychiatric symptoms (PS) and the contribution of mitochondrial factors in the early stages of sporadic AD (sAD) in rats.

Methods: In male Wistar rats, the AD model was induced via intracerebroventricular (ICV) injection of streptozotocin (STZ).

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Article Synopsis
  • Alzheimer's disease (AD) is a common form of dementia, with causes linked to mitochondrial issues, oxidative stress, and ion channel problems.
  • A rat study using 40 Hz flickering light therapy showed that this treatment improved cognitive function and countered biochemical changes caused by AD, like increased reactive oxygen species and amyloid beta buildup.
  • The therapy also restored important mitochondrial functions, suggesting that flickering light might be a potential treatment for AD and similar neurodegenerative conditions.
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Endoplasmic reticulum (ER) stress is involved in the development of glucose homeostasis impairment. When ER stress occurs, the unfolded protein response (UPR) is activated to cope with it. One of the UPR components is WFS1 (Wolfram syndrome 1), which plays important roles in ER homeostasis and pancreatic islets glucose-stimulated insulin secretion (GSIS).

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Photobiomodulation therapy has become the focus of medical research in many areas such as Alzheimer's disease (AD), because of its modulatory effect on cellular processes through light energy absorption via photoreceptors/chromophores located in the mitochondria. However, there are still many questions around the underlying mechanisms. This study was carried out to unravel whether the function-structure of ATP-sensitive mitoBK channels, as crucial components for maintenance of mitochondrial homeostasis, can be altered subsequent to light therapy in AD.

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Exposure to perinatal (prenatal and/or postnatal) stress is considered as a risk factor for metabolic disorders in later life. Accordingly, this study aimed to investigate the perinatal stress effects on the pancreatic endoplasmic reticulum (ER) stress induction, insulin secretion impairment and WFS1 (wolframin ER transmembrane Glycoprotein, which is involved in ER homeostasis and insulin secretion) expression changes, in rat offspring. According to the dams' period of exposure to variable stress, their male offspring were divided into, control (CTRL); pre-pregnancy, pregnancy, lactation stress (PPPLS); pre-pregnancy stress (PPS); pregnancy stress (PS); lactation stress (LS); pre-pregnancy, pregnancy stress (PPPS); pregnancy, lactation stress (PLS); pre-pregnancy, lactation stress (PPLS) groups.

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