Publications by authors named "Rahimian R"

Marfan syndrome (MFS) is a systemic connective tissue disorder stemming from mutations in the gene encoding Fibrillin-1 (Fbn1), a key extracellular matrix glycoprotein. This condition manifests with various clinical features, the most critical of which is the formation of aortic root aneurysms. Reduced nitric oxide (NO) production due to diminished endothelial nitric oxide synthase (eNOS) activity has been linked to MFS aortic aneurysm pathology.

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  • A novel radiotracer, [C]SL25.1188, targets monoamine oxidase-B (MAO-B) enzyme primarily in astrocytes, linking its levels to altered astrocyte functions observed in schizophrenia.
  • A PET scan study involving 38 participants (14 with first-episode psychosis, 7 at clinical high risk, and 17 healthy volunteers) measured MAO-B concentration and found significantly lower levels in the high-risk group compared to healthy individuals.
  • The study also revealed that cannabis use impacted MAO-B levels, with a greater reduction in MAO-B concentration found in individuals using cannabis, emphasizing the potential role of astrocyte dysfunction in early psychosis and high-risk states.
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Several reports, including our previous studies, indicate that hyperglycemia and diabetes mellitus exert differential effects on vascular function in males and females. This study examines sex differences in the vascular effects of type 2 diabetes (T2D) in an established monogenic model of obesity-induced T2D, Zucker Diabetic Fatty (ZDF) rats. Acetylcholine (ACh) responses were assessed in phenylephrine pre-contracted rings before and after apocynin, a NADPH oxidase (NOX) inhibitor.

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Background: Adult hippocampal neurogenesis has been extensively characterized in rodent models, but its existence in humans remains controversial. We sought to assess the phenomenon in postmortem human hippocampal samples by combining spatial transcriptomics and multiplexed fluorescent in situ hybridization.

Methods: We computationally examined the spatial expression of various canonical neurogenesis markers in postmortem dentate gyrus (DG) sections from young and middle-aged sudden-death males.

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Background: Disparities in ovarian cancer survival for African American women are multifactorial. We evaluated racial and ethnic differences in time to ovarian cancer surgery in members of an integrated health care system.

Patients And Methods: In this retrospective cohort study, we identified women diagnosed with invasive epithelial-type ovarian cancer between January 1, 2008, through December 31, 2014, at an integrated health care system in the United States.

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The extracellular matrix plays a key role in synapse formation and in the modulation of synaptic function in the central nervous system. Recent investigations have revealed that microglia, the resident immune cells of the brain, are involved in extracellular matrix remodeling under both physiological and pathological conditions. Moreover, the dysregulation of both innate immune responses and the extracellular matrix has been documented in stress-related psychopathologies as well as in relation to early-life stress.

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  • * In a case study, fetal distress—specifically bradycardia—was observed before any maternal symptoms, indicating that fetal complications can occur independently of the mother's health.
  • * The patient, a 34-year-old woman at full term, experienced seizures and cardiac arrest during an emergency cesarean delivery for fetal distress, leading to immediate interventions, stabilization, and recovery in the surgical intensive care unit.
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The olfactory bulb (OB), a major structure of the limbic system, has been understudied in human investigations of psychopathologies such as depression. To explore more directly the molecular features of the OB in depression, a global comparative proteome analysis was carried out with human post-mortem OB samples from 11 males having suffered from depression and 12 healthy controls. We identified 188 differentially abundant proteins (with adjusted p < 0.

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Perineuronal nets (PNNs) are a condensed subtype of extracellular matrix that form a net-like coverings around certain neurons in the brain. PNNs are primarily composed of chondroitin sulfate (CS) proteoglycans from the lectican family that consist of CS-glycosaminoglycan side chains attached to a core protein. CS disaccharides can exist in various isoforms with different sulfation patterns.

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Perineuronal nets (PNNs) are a condensed subtype of extracellular matrix that form a net-like coverings around certain neurons in the brain. PNNs are primarily composed of chondroitin sulfate (CS) proteoglycans from the lectican family that consist of CS-glycosaminoglycan (CS-GAG) side chains attached to a core protein. CS disaccharides can exist in various isoforms with different sulfation patterns.

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Background: Parkinson's disease is a neurological disorder caused by the loss of dopaminergic neurons in the midbrain. Various mechanisms are involved in the incidence of the disease including oxidative stress. Several herbs and natural products may interfere with the oxidative-stress pathway due to their antioxidant effects.

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Inflammatory bowel disease (IBD), a common term for Crohn's disease and ulcerative colitis, is a chronic, relapse-remitting condition of the gastrointestinal tract that is increasing worldwide. Psychiatric comorbidities, including depression and anxiety, are more prevalent in IBD patients than in healthy individuals. Evidence suggests that varying levels of neuroinflammation might underlie these states in IBD patients.

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We recently described a novel ribosome-based regulatory mechanism/checkpoint that controls innate immune gene translation and microglial activation in non-sterile inflammation orchestrated by RNA binding protein SRSF3. Here we describe a role of SRSF3 in the regulation of microglia/macrophage activation phenotypes after experimental stroke. Using a model-system for analysis of the dynamic translational state of microglial ribosomes we show that 24 h after stroke highly upregulated immune mRNAs are not translated resulting in a marked dissociation of mRNA and protein networks in activated microglia/macrophages.

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  • The neurovascular unit plays a critical role in regulating cerebral blood flow and maintaining blood-brain barrier integrity, which is vital for central nervous system function.
  • Impairments in this unit are linked to neuroinflammation and various CNS diseases, highlighting the need for detailed studies on its function and dysfunction.
  • A new standardized protocol allows for the isolation of microvessels from brain tissue, enabling comprehensive analysis through RNA sequencing and proteomic techniques to better understand their role in health and disease.
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Background: Over the past decade, the United States (US) has seen a spike in migration across the US-Mexico border with an increase in hospital admissions of migrants and asylum-seekers under the custody of immigration law enforcement (ILE). This study aimed to determine how the presence of ILE officials affects patient care and provider experience in a teaching hospital setting.

Methods: This cross-sectional online survey solicited quantitative and qualitative feedback from medical students, residents, and attending physicians (n = 1364) at a teaching hospital system with two campuses in Arizona.

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Major depressive disorder (MDD) is a common, heterogenous, and potentially serious psychiatric illness. Diverse brain cell types have been implicated in MDD etiology. Significant sexual differences exist in MDD clinical presentation and outcome, and recent evidence suggests different molecular bases for male and female MDD.

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The beneficial cardiovascular effects of exercise are well documented, however the mechanisms by which exercise improves vascular function in diabetes are not fully understood. This study investigates whether there are (1) improvements in blood pressure and endothelium-dependent vasorelaxation (EDV) and (2) alterations in the relative contribution of endothelium-derived relaxing factors (EDRF) in modulating mesenteric arterial reactivity in male UC Davis type-2 diabetes mellitus (UCD-T2DM) rats, following an 8-week moderate-intensity exercise (MIE) intervention. EDV to acetylcholine (ACh) was measured before and after exposure to pharmacological inhibitors.

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Early-life stress (ELS) leads to increased vulnerability to psychiatric disorders including depression later in life. Neuroinflammatory processes have been implicated in ELS-induced negative health outcomes, but how ELS impacts microglia, the main tissue-resident macrophages of the central nervous system, is unknown. Here, we determined the effects of ELS-induced by limited bedding and nesting material during the first week of life (postnatal days [P]2-9) on microglial (i) morphology; (ii) hippocampal gene expression; and (iii) synaptosome phagocytic capacity in male pups (P9) and adult (P200) mice.

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To understand how various brain cell types communicate with each other to orchestrate functional processes, it is crucial to comprehend the signals used to relay such information. Therefore, an important challenge to studying complex brain diseases is to interrogate relevant interactions between cell types. The microglia-oligodendroglia interaction is an important example that has fundamental roles in physiological state and brain pathologies.

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We recently reported sex differences in mesenteric arterial function of the UC Davis type-2 diabetes mellitus (UCD-T2DM) rats as early as the prediabetic state. We reported that mesenteric arteries (MA) from prediabetic male rats exhibited a greater impairment compared to that in prediabetic females. However, when females became diabetic, they exhibited a greater vascular dysfunction than males.

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Increasing evidence supports the notion that neuroinflammation plays a critical role in the etiology of major depressive disorder (MDD), at least in a subset of patients. By virtue of their capacity to transform into reactive states in response to inflammatory insults, microglia, the brain's resident immune cells, play a pivotal role in the induction of neuroinflammation. Experimental studies have demonstrated the ability of microglia to recognize pathogens or damaged cells, leading to the activation of a cytotoxic response that exacerbates damage to brain cells.

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Study Objective: Anesthesiologists are at high risk for needlestick injury. Such injuries pose a serious health threat from exposure to bloodborne pathogens. This retrospective analysis aimed to examine needlestick injury rate among anesthesia providers between 2010 and 2020 at the University of California Los Angeles, Department of Anesthesiology and Perioperative Medicine to determine specialty-specific factors associated with these injuries.

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