23 results match your criteria: "Eleonora Reicher National Institute of Geriatrics[Affiliation]"

Background: The aim of the present study was to analyse the association between neuroticism (one of the Big Five personality traits) and the most common secondary sensorimotor complications occurring in patients after spinal cord injury (SCI), i.e., muscle spasticity (hypertonia) and pain, and to investigate the associations between neuroticism and the effects of conventional rehabilitation (dynamic parapodium) and those using robotic-assisted gait training (RAGT) in this group of patients.

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Salidroside: A Promising Agent in Bone Metabolism Modulation.

Nutrients

July 2024

Department of Biophysics, Physiology and Pathophysiology, Faculty of Health Sciences, Medical University of Warsaw, Chałubińskiego 5, 02-004 Warsaw, Poland.

, a long-lived herbaceous plant from the Crassulaceae group, contains the active compound salidroside, recognized as an adaptogen with significant therapeutic potential for bone metabolism. Salidroside promotes osteoblast proliferation and differentiation by activating critical signaling pathways, including bone morphogenetic protein-2 and adenosine monophosphate-activated protein kinase, essential for bone formation and growth. It enhances osteogenic activity by increasing alkaline phosphatase activity and mineralization markers, while upregulating key regulatory proteins including runt-related transcription factor 2 and osterix.

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The primary problem in the treatment of epilepsy is poor seizure control. Several studies have shown that non-adherence to doctors' recommendations regarding drug dosage, time of drug administration as well as lifestyle modifications are the most frequent causes of the persistence or reoccurrence of seizures, other than cases of misdiagnosis and poor drug selection. The aim of this study was to assess the prevalence of non-compliance with medical recommendations, both in relation to medicine dosage, regularity of administration and lifestyle, and also to determine the factors affecting patients with diagnosed epilepsy.

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The Role of Rosavin in the Pathophysiology of Bone Metabolism.

Int J Mol Sci

February 2024

Department of Biophysics, Physiology and Pathophysiology, Faculty of Health Sciences, Medical University of Warsaw, Chałubińskiego 5, 02-004 Warsaw, Poland.

Rosavin, a phenylpropanoid in 's rhizome, and an adaptogen, is known for enhancing the body's response to environmental stress. It significantly affects cellular metabolism in health and many diseases, particularly influencing bone tissue metabolism. In vitro, rosavin inhibits osteoclastogenesis, disrupts F-actin ring formation, and reduces the expression of osteoclastogenesis-related genes such as cathepsin K, calcitonin receptor (CTR), tumor necrosis factor receptor-associated factor 6 (TRAF6), tartrate-resistant acid phosphatase (TRAP), and matrix metallopeptidase 9 (MMP-9).

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The Role of Progranulin (PGRN) in the Pathogenesis of Glioblastoma Multiforme.

Cells

January 2024

Department of Experimental and Clinical Pharmacology, Centre for Preclinical Research and Technology (CePT), Medical University of Warsaw, Banacha 1B, 02-097 Warsaw, Poland.

Glioblastoma multiforme (GBM) represents the most common and aggressive malignant form of brain tumour in adults and is characterized by an extremely poor prognosis with dismal survival rates. Currently, expanding concepts concerning the pathophysiology of GBM are inextricably linked with neuroinflammatory phenomena. On account of this fact, the identification of novel pathomechanisms targeting neuroinflammation seems to be crucial in terms of yielding successful individual therapeutic strategies.

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Background: Mood disorders, especially depression, and emotional difficulties such as anxiety are very common problems among patients with spinal cord injuries (SCIs). The lack of physical training may deteriorate their mental state, which, in turn, has a significant impact on their improvement in functioning. The aim of the present study was to examine the influence of innovative rehabilitation approaches involving robotic-assisted gait therapy (RAGT) on the depression and anxiety symptoms in patients with SCI.

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Neurological Wilson's Disease Signs-Hepatic Encephalopathy or Copper Toxicosis?

Diagnostics (Basel)

February 2023

Department of Rehabilitation Medicine, Faculty of Medicine, Warsaw Medical University, Spartańska 1, 02-637 Warsaw, Poland.

Wilson's disease (WD) is a rare autosomal recessive (AR) disorder resulting from mutations in the ATP7B gene, which is responsible for the encryption of transmembrane copper transporting ATPase. The symptomatic presentation of the disease is estimated to be about 1 in 30,000. The impairment of ATP7B function results in a copper overload in hepatocytes, which further leads to liver pathology.

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Omega-3 fatty acids in the treatment of spinal cord injury: untapped potential for therapeutic intervention?

Mol Biol Rep

November 2022

Department of Biophysics, Physiology and Pathophysiology, Faculty of Health Sciences, Medical University of Warsaw, Chałubińskiego 5, 02-004, Warsaw, Poland.

Omega-3 fatty acids constitute a group of fatty acids with anti-inflammatory and preventive effects against various diseases. Studies in animal models have demonstrated the preventive and therapeutic effects of omega-3 fatty acids after spinal cord injury (SCI) in reducing inflammatory reactions and promoting neuroregeneration. However, studies on the efficacy of omega-3 fatty acids in treatment and prevention after SCI seem to be questionable.

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Cognitive and Physical Intervention in Metals' Dysfunction and Neurodegeneration.

Brain Sci

March 2022

Department of Rehabilitation Medicine, Faculty of Medicine, Warsaw Medical University, Spartańska 1, 02-637 Warsaw, Poland.

Metals-especially iron, copper and manganese-are important elements of brain functions and development. Metal-dysregulation homeostasis is associated with brain-structure damage to the motor, cognitive and emotional systems, and leads to neurodegenerative processes. There is more and more evidence that specialized cognitive and motor exercises can enhance brain function and attenuate neurodegeneration in mechanisms, such as improving neuroplasticity by altering the synaptic structure and function in many brain regions.

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Context: Spinal cord injury (SCI) sustained during pregnancy may be dangerous to the mother and her child. The risk is associated both with necessary diagnostic work-up and with the therapeutic process (radiographic investigations, surgical procedures, anesthesia, spinal shock, SCI complications, delivery). However, infant care is an enormous challenge for a woman with motor disability.

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Copper, Iron, and Manganese Toxicity in Neuropsychiatric Conditions.

Int J Mol Sci

July 2021

Department of Early Arthritis, Eleonora Reicher National Institute of Geriatrics, Rheumatology and Rehabilitation, Spartańska 1, 02-637 Warsaw, Poland.

Copper, manganese, and iron are vital elements required for the appropriate development and the general preservation of good health. Additionally, these essential metals play key roles in ensuring proper brain development and function. They also play vital roles in the central nervous system as significant cofactors for several enzymes, including the antioxidant enzyme superoxide dismutase (SOD) and other enzymes that take part in the creation and breakdown of neurotransmitters in the brain.

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Copper Dyshomeostasis in Neurodegenerative Diseases-Therapeutic Implications.

Int J Mol Sci

December 2020

Department of Cellular Signalling, Mossakowski Medical Research Centre, Polish Academy of Sciences, 5 Pawińskiego Street, 02-106 Warsaw, Poland.

Copper is one of the most abundant basic transition metals in the human body. It takes part in oxygen metabolism, collagen synthesis, and skin pigmentation, maintaining the integrity of blood vessels, as well as in iron homeostasis, antioxidant defense, and neurotransmitter synthesis. It may also be involved in cell signaling and may participate in modulation of membrane receptor-ligand interactions, control of kinase and related phosphatase functions, as well as many cellular pathways.

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Corrigendum to "Comparative Analysis of the Occurrence and Role of CX3CL1 (Fractalkine) and Its Receptor CX3CR1 in Hemophilic Arthropathy and Osteoarthritis".

J Immunol Res

November 2020

Department of General and Experimental Pathology, Centre for Preclinical Research and Technology (CePT), Medical University of Warsaw, Pawińskiego 3C, 02-106 Warsaw, Poland.

[This corrects the article DOI: 10.1155/2020/2932696.].

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Objectives: To evaluate the prevalence and risk factors of new-onset glucose metabolism impairment using an oral glucose tolerance test (OGTT) in patients with normal fasting glycaemia on long-term glucocorticoid (GC) treatment.

Methods: An OGTT was performed in 150 patients without a previous history of pre-diabetes or diabetes who were diagnosed with inflammatory rheumatic diseases and treated with GCs >3 months. All participants underwent clinical and biochemical evaluation for risk factors of diabetes: age, sex, current and cumulative dose of steroids, treatment duration, waist circumference, BMI, Homeostatic Model Assessment for Insulin Resistance, fasting insulin concentration, family history of diabetes, CRP, 28-joint DAS with CRP, type of connective tissue disease and trunk fat percentage measured by DXA.

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Comparative Analysis of the Occurrence and Role of CX3CL1 (Fractalkine) and Its Receptor CX3CR1 in Hemophilic Arthropathy and Osteoarthritis.

J Immunol Res

June 2021

Department of General and Experimental Pathology, Centre for Preclinical Research and Technology (CePT), Medical University of Warsaw, Pawińskiego 3C, 02-106 Warsaw, Poland.

Objective: Hemophilic arthropathy is characterized by recurrent bleeding episodes in patients with hemophilia leading to irreversible joint degeneration. The involvement of CX3CL1 (fractalkine) and its receptor CX3CR1 was observed in the pathogenesis of numerous arthritis-associated diseases. Taking this into account, we have presented a study investigating the role of the CX3CL1/CX3XR1 axis in the course of hemophilic arthropathy, including the CX3CL1-dependent expression of CD56, CD68, and CD31 cells along with evaluation of articular cartilage and synovial membrane morphology.

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Polyunsaturated fatty acids (-3 acids, PUFAs) are essential components of cell membranes in all mammals. A multifactorial beneficial influence of -3 fatty acids on the health of humans and other mammals has been observed for many years. Therefore, -3 fatty acids and their function in the prophylaxis and treatment of various pathologies have been subjected to numerous studies.

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Background: The use of adaptive equipment (AE) is the basic indication for patients with spinal cord injury (SCI). Inappropriate decisions concerning the use of AE imply treatment results, patient confidence, and patient and state costs. The present study is the first analysis of the causes of non-compliance conducted in Europe with the provision of AE in SCI patients using Wielandt and Strong's classification.

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Role of CX3CL1/CX3CR1 Signaling Axis Activity in Osteoporosis.

Mediators Inflamm

May 2020

Department of Rehabilitation, Eleonora Reicher National Institute of Geriatrics, Rheumatology and Rehabilitation, Spartańska 1, 02-637 Warsaw, Poland.

Osteoporosis is a civilization disease which is still challenging for contemporary medicine in terms of treatment and prophylaxis. It results from excessive activation of the osteoclastic cell line and immune cells like macrophages and lymphocytes. Cell-to-cell inflammatory information transfer occurs via factors including cytokines which form a complex network of cell humoral correlation, called cytokine network.

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Article Synopsis
  • Haemophilia A and B are rare genetic bleeding disorders that can cause severe joint issues, like haemophilic arthropathy (HA).
  • Progranulin (PGRN) is a growth factor involved in inflammation and is being studied for its role in various joint diseases, including OA.
  • This research found that PGRN levels were significantly higher in HA patients compared to those with OA, suggesting it could be a potential target for new treatment strategies for HA.
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Cytokines in the pathogenesis of hemophilic arthropathy.

Cytokine Growth Factor Rev

February 2018

Department of Neuroorthopaedics and Neurology, Eleonora Reicher National Institute of Geriatrics, Rheumatology and Rehabilitation, Spartańska 1, 02-637 Warsaw, Poland. Electronic address:

Hemophilic arthropathy (HA) is one of the most common and typical manifestation in the course of recurrent bleeding episodes in patients with hemophilia. Clinical and subclinical joint bleeding episodes gradually lead to irreversible changes manifesting themselves as pain, progressing ankylosis, marked limitation of the range of motion, muscle atrophy and osteoporosis commonly concomitant with joint deformity resulting from chronic proliferative synovitis and both cartilage and bone degeneration leading to the final functional impairment of the joint. In spite of numerous studies, the pathophysiology of HA has not been fully elucidated, especially as regards immunopathological mechanisms which are associated with the subclinical and early stage of the disease and to be more precise, with chronic joint inflammation.

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Allergic rhinitis, bronchial asthma and other allergies in patients with Alzheimer's disease: unnoticed issue.

Postepy Dermatol Alergol

October 2016

Clinical Department of Internal Disease, Dermatology and Allergology in Zabrze, Medical University of Silesia in Katowice, Poland.

Introduction: Allergic diseases are becoming more prevalent in elderly patients. Allergic diseases have been observed in patients with Alzheimer's disease (AD). The prevalence of atopic bronchial asthma, allergic rhinitis and atopic dermatitis was analyzed in such elderly Polish population.

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The Nanopharmacology and Nanotoxicology of Nanomaterials: New Opportunities and Challenges.

Adv Clin Exp Med

June 2016

School of Pharmacy and Pharmaceutical Sciences and Trinity Biomedical Sciences Institute, The University of Dublin, Trinity College, Dublin, Ireland; Kardio-Med Silesia, Zabrze, Poland.

The very dynamic growth of nanotechnology, nanomaterials (sized 1-100 nm) and their medical applications over the past 10 years has promised to add a new impetus to the diagnostics and therapeutics of a wide range of human pathologies, including cancer, cardiovascular diseases and diseases of the central nervous system. This growth in nanomedicine also fuels advances in bioengineering, regenerative medicine and the development of medical devices. However, as with all new pharmaceuticals and medical devices, new opportunities are inherently accompanied by new challenges due to the ability of nanomaterials to interact with the body on the cellular, subcellular and molecular levels.

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CX3CL1 (fractalkine) is the only member of the CX3C (delta) subfamily of chemokines which is unique and combines the properties of both chemoattractant and adhesion molecules. The two-form ligand can exist either in a soluble form, like all other chemokines, and as a membrane-anchored molecule. CX3CL1 discloses its biological properties through interaction with one dedicated CX3CR1 receptor which belongs to a family of G protein-coupled receptors (GPCR).

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