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1.
Mol Neurobiol ; 2024 Jul 13.
Article in English | MEDLINE | ID: mdl-39002056

ABSTRACT

Autism spectrum disorder (ASD) is a psychiatric condition characterized by reduced social interaction, anxiety, and stereotypic behaviors related to neuroinflammation and microglia activation. We demonstrated that maternal exposure to Western diet (cafeteria diet or CAF) induced microglia activation, systemic proinflammatory profile, and ASD-like behavior in the offspring. Here, we aimed to identify the effect of alternate day fasting (ADF) as a non-pharmacologic strategy to modulate neuroinflammation and ASD-like behavior in the offspring prenatally exposed to CAF diet. We found that ADF increased plasma beta-hydroxybutyrate (BHB) levels in the offspring exposed to control and CAF diets but not in the cortex (Cx) and hippocampus (Hpp). We observed that ADF increased the CD45 + cells in Cx of both groups; In control individuals, ADF promoted accumulation of CD206 + microglia cells in choroid plexus (CP) and increased in CD45 + macrophages cells and lymphocytes in the Cx. Gestational exposure to CAF diet promoted defective sociability in the offspring; ADF improved social interaction and increased microglia CD206 + in the Hpp and microglia complexity in the dentate gyrus. Additionally, ADF led to attenuation of the ER stress markers (Bip/ATF6/p-JNK) in the Cx and Hpp. Finally, biological modeling showed that fasting promotes higher microglia complexity in Cx, which is related to improvement in social interaction, whereas in dentate gyrus sociability is correlated with less microglia complexity. These data suggest a contribution of intermittent fasting as a physiological stimulus capable of modulating microglia phenotype and complexity in the brain, and social interaction in male mice.

2.
J Neurochem ; 164(6): 708-724, 2023 03.
Article in English | MEDLINE | ID: mdl-36630272

ABSTRACT

Psychiatric disorders affect 970 million people worldwide, representing a significant source of disability. Although the underlying neurobiological traits for these disorders are not fully understood, a complex interplay between psychological, environmental, and biological factors contributes to their outcomes. Recent advances in lipidomic analysis and artificial intelligence algorithms have improved the identification of selective lipid species modulating the susceptibility to mental disorders. Sphingolipids (SLs) and ceramides-related SLs are among the most abundant lipids species in the brain that support major key pathways during neurodevelopment and brain plasticity. High levels of ceramides in plasma and brain contribute to psychiatric illness susceptibility in humans and animal models. However, the neuropathological mechanism regarding the involvement of ceramides in these disorders remain inconclusive. The brain is highly susceptible to nutritional insults, which could lead to functional impairment and influence the development and progression of psychiatric disorders. While the brain relies on glucose metabolism to support its physiological needs, a selective nutrient formula appears to have greater effects on brain health than others. For instance, consumption of high-energy diets is associated with brain anatomical, physiological, and metabolic changes, including ceramides metabolism. Herein, we will address the contribution of ceramides metabolism as a modulator of major psychiatric disorders such as depression, anxiety, bipolar disorder, schizophrenia, and attention deficit-hyperactivity disorder. We will also describe molecular and cellular targets of ceramides metabolism assisting the maintenance and progression of psychiatric disorders and their modulation by dietary formulas as non-pharmacologic treatments.


Subject(s)
Bipolar Disorder , Mental Disorders , Animals , Humans , Artificial Intelligence , Mental Disorders/metabolism , Sphingolipids/metabolism , Ceramides/metabolism , Bipolar Disorder/metabolism
3.
Neuroscience ; 492: 32-46, 2022 06 01.
Article in English | MEDLINE | ID: mdl-35439579

ABSTRACT

Interleukin-6 (IL-6) is a major cytokine that promotes anti- and pro-inflammatory outcomes by activating the membrane IL-6 receptor (IL-6R) or the soluble IL-6 receptor (sIL-6R). IL-6R and sIL-6R signaling engage the JAK1/2/3 targets and the downstream transcription of STAT1 and STAT3 family. In the brain, physiological IL-6 signaling preserves neurogenesis, neuronal differentiation, and neuroprotection against tissue injury, but IL-6 has been proposed as a biomarker for poor prognosis in several mental pathologies such as depressive disorders, schizophrenia, bipolar disorder, and autism. Physiological or pathological outcomes of IL-6 are related to its pleiotropic effects in the brain by microglia, astrocytes, neurons, and endothelial cells, and also by peripheral infiltrating macrophages or T lymphocytes. Notably, definition of anti- or pro-inflammatory profiles by IL-6 signaling in the brain are sensitive to the levels, cellular source, and targets of the IL-6 itself, as well as IL-6 receptor signaling, and its activation/inhibition ratio. We propose that a mutual IL-6 crosstalk between microglia, astrocytes, neurons, and endothelial cells defines the anti- and pro-inflammatory outcomes in the brain, modulating brain function. This review will describe the cellular, molecular and context-dependent signaling pathways that define anti- or pro-inflammatory profiles setting by IL-6 during physiological or pathological outcomes in the brain.


Subject(s)
Endothelial Cells , Interleukin-6 , Interleukin-6/pharmacology , Mental Health , Receptors, Interleukin-6 , Signal Transduction
4.
Curr Top Med Chem ; 22(2): 109-131, 2022.
Article in English | MEDLINE | ID: mdl-34809549

ABSTRACT

BACKGROUND: Allium sativum L., or garlic, is one of the most studied plants worldwide within the field of traditional medicine. Current interests lie in the potential use of garlic as a preventive measure and adjuvant treatment for viral infections, e.g., SARS-CoV-2. Even though it cannot be presented as a single treatment, its beneficial effects are beyond doubt. The World Health Organization has deemed it an essential part of any balanced diet with immunomodulatory properties. OBJECTIVE: The aim of the study was to review the literature on the effects of garlic compounds and preparations on immunomodulation and viral infection management, with emphasis on SARS-CoV- -2. METHODS: Exhaustive literature search has been carried out on electronic databases. CONCLUSION: Garlic is a fundamental part of a well-balanced diet which helps maintain general good health. The reported information regarding garlic's ability to beneficially modulate inflammation and the immune system is encouraging. Nonetheless, more efforts must be made to understand the actual medicinal properties and mechanisms of action of the compounds found in this plant to inhibit or diminish viral infections, particularly SARS-CoV-2. Based on our findings, we propose a series of innovative strategies to achieve such a challenge in the near future.


Subject(s)
COVID-19 Drug Treatment , Garlic , Metabolic Diseases , Humans , Immunomodulation , Plant Extracts/pharmacology , SARS-CoV-2
5.
Front Pediatr ; 9: 744104, 2021.
Article in English | MEDLINE | ID: mdl-34746058

ABSTRACT

The first 1,000 days in the life of a human being are a vulnerable stage where early stimuli may program adverse health outcomes in future life. Proper maternal nutrition before and during pregnancy modulates the development of the fetus, a physiological process known as fetal programming. Defective programming promotes non-communicable chronic diseases in the newborn which might be prevented by postnatal interventions such as breastfeeding. Breast milk provides distinct bioactive molecules that contribute to immune maturation, organ development, and healthy microbial gut colonization, and also secures a proper immunological response that protects against infection and inflammation in the newborn. The gut microbiome provides the most critical immune microbial stimulation in the newborn in early life, allowing a well-trained immune system and efficient metabolic settings in healthy subjects. Conversely, negative fetal programming by exposing mothers to diets rich in fat and sugar has profound effects on breast milk composition and alters the immune profiles in the newborn. At this new stage, newborns become vulnerable to immune compromise, favoring susceptibility to defective microbial gut colonization and immune response. This review will focus on the importance of breastfeeding and its immunological biocomponents that allow physiological immune programming in the newborn. We will highlight the importance of immunological settings by breastfeeding, allowing proper microbial gut colonization in the newborn as a window of opportunity to secure effective immunological response.

6.
Int J Nanomedicine ; 14: 7173-7190, 2019.
Article in English | MEDLINE | ID: mdl-31564872

ABSTRACT

BACKGROUND: Nanotechnology proposes the use of gold nanoparticles (AuNPs) for drug delivery, diagnosis, and treatment of cancer. Leukemia is a type of hematopoietic cancer that results from the malignant transformation of white blood cells. Chitosan-coated AuNPs (CH-AuNPs) are cell death inductors in HeLa and MCF-7 cancer cells without affecting peripheral blood mononuclear cells (PBMC). Considering the selectivity and versatile cytotoxicity of CH-AuNPs, we evaluated whether their selectivity is due to the cell lineage or the characteristics of the cancer cells, by assessing its cytotoxicity in leukemic cells. Moreover, we further examined the cell death mechanism and assessed the implication of nuclear damage, autophagosome formation, and the cell death mechanism induced in leukemic cells. MATERIALS AND METHODS: We synthesized CH-AuNPs by chemical methods and analyzed their cell death capacity in a T-acute lymphocytic leukemia cell line (CEM), in a chronic myeloid leukemia cell line (K562), and in healthy cells from the same lineage (PBMC and bone marrow, BM, cells). Then, we assessed ROS generation and mitochondrial and nuclear damage. Finally, we evaluated whether cell death occurred by autophagy, apoptosis, or necroptosis, and the role of ROS in this mechanism. RESULTS: We found that CH-AuNPs did not affect PBMC and BM cells, whereas they are cytotoxic in a dose-dependent manner in leukemic cells. ROS production leads to mitochondrial and nuclear damage, and cell death. We found that CH-AuNPs induce apoptosis in CEM and necroptosis in K562, both undergoing autophagy as a pro-survival mechanism. CONCLUSION: CH-AuNPs are selective cell death inductors in hematologic cancer cells, without affecting their healthy counterparts. Cell death induced by CH-AuNPs is independent of the cancer cell type; however, its mechanism is different depending on the type of leukemic cells.


Subject(s)
Apoptosis , Chitosan/chemistry , Gold/chemistry , Leukemia/pathology , Metal Nanoparticles/chemistry , Reactive Oxygen Species/metabolism , Animals , Autophagosomes/metabolism , Autophagy , Caspase 3/metabolism , Cell Line, Tumor , Cell Membrane Permeability , Cell Nucleus/metabolism , Cell Survival , Enzyme Activation , Humans , Leukemia/enzymology , Leukocytes, Mononuclear/metabolism , Male , Mice , Mitochondria/metabolism , Necrosis , Phosphatidylserines/metabolism
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