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1.
Bone Res ; 12(1): 26, 2024 May 06.
Article in English | MEDLINE | ID: mdl-38705887

ABSTRACT

During cell differentiation, growth, and development, cells can respond to extracellular stimuli through communication channels. Pannexin (Panx) family and connexin (Cx) family are two important types of channel-forming proteins. Panx family contains three members (Panx1-3) and is expressed widely in bone, cartilage and muscle. Although there is no sequence homology between Panx family and Cx family, they exhibit similar configurations and functions. Similar to Cxs, the key roles of Panxs in the maintenance of physiological functions of the musculoskeletal system and disease progression were gradually revealed later. Here, we seek to elucidate the structure of Panxs and their roles in regulating processes such as osteogenesis, chondrogenesis, and muscle growth. We also focus on the comparison between Cx and Panx. As a new key target, Panxs expression imbalance and dysfunction in muscle and the therapeutic potentials of Panxs in joint diseases are also discussed.


Subject(s)
Connexins , Disease Progression , Musculoskeletal System , Humans , Connexins/metabolism , Connexins/genetics , Musculoskeletal System/metabolism , Musculoskeletal System/pathology , Musculoskeletal System/physiopathology , Animals , Osteogenesis/physiology
2.
J Am Acad Orthop Surg ; 32(12): 535-541, 2024 Jun 15.
Article in English | MEDLINE | ID: mdl-38652883

ABSTRACT

With National Aeronautics and Space Administration's plans for longer distance, longer duration spaceflights such as missions to Mars and the surge in popularity of space tourism, the need to better understand the effects of spaceflight on the musculoskeletal system has never been more present. However, there is a paucity of information on how spaceflight affects orthopaedic health. This review surveys existing literature and discusses the effect of spaceflight on each aspect of the musculoskeletal system. Spaceflight reduces bone mineral density at rapid rates because of multiple mechanisms. While this seems to be recoverable upon re-exposure to gravity, concern for fracture in spaceflight remains as microgravity impairs bone strength and fracture healing. Muscles, tendons, and entheses similarly undergo microgravity adaptation. These changes result in decreased muscle mass, increased tendon laxity, and decreased enthesis stiffness, thus decreasing the strength of the muscle-tendon-enthesis unit with variable recovery upon gravity re-exposure. Spaceflight also affects joint health; unloading of the joints facilitates changes that thin and atrophy cartilage similar to arthritic phenotypes. These changes are likely recoverable upon return to gravity with exercise. Multiple questions remain regarding effects of longer duration flights on health and implications of these findings on terrestrial medicine, which should be the target of future research.


Subject(s)
Musculoskeletal System , Space Flight , Weightlessness , Humans , Weightlessness/adverse effects , Musculoskeletal System/physiopathology , Bone Density
3.
World J Gastroenterol ; 30(15): 2109-2117, 2024 Apr 21.
Article in English | MEDLINE | ID: mdl-38681992

ABSTRACT

Musculoskeletal alterations in hepatocellular carcinoma (HCC) are less common than liver-related complications. However, they can significantly impact the quality of life and overall prognosis of patients with HCC. The main obstacle in the clinical assessment of HCC-induced musculoskeletal alterations is related to effective and timely diagnosis because these complications are often asymptomatic and unapparent during routine clinical evaluations. This narrative literature review aimed to provide a comprehensive overview of the contemporary literature related to the changes in the musculoskeletal system in patients with HCC, focusing on its clinical implications and underlying etiopathogenetic mechanisms. Osteolytic bone metastases are the most common skeletal alterations associated with HCC, which could be associated with an increased risk of low-trauma bone fracture. Moreover, previous studies reported that osteopenia, sarcopenia, and myosteatosis are associated with poor clinical outcomes in patients with HCC. Even though low bone mineral density and sarcopenia are consistently reported as reliable predictors of pretransplantation and post-transplantation mortality in HCC patients, these complications are frequently overlooked in the clinical management of patients with HCC. Taken together, contemporary literature suggests that a multidisciplinary approach is essential for early recognition and clinical management of HCC-associated musculoskeletal alterations to improve patient prognosis. Further research into the mechanisms and treatment options for musculoskeletal complications is warranted to enhance our understanding and clinical management of this aspect of HCC.


Subject(s)
Carcinoma, Hepatocellular , Liver Neoplasms , Sarcopenia , Humans , Carcinoma, Hepatocellular/therapy , Carcinoma, Hepatocellular/pathology , Carcinoma, Hepatocellular/mortality , Liver Neoplasms/therapy , Liver Neoplasms/pathology , Liver Neoplasms/mortality , Prognosis , Sarcopenia/etiology , Sarcopenia/diagnosis , Sarcopenia/therapy , Liver Transplantation , Quality of Life , Bone Neoplasms/therapy , Bone Neoplasms/complications , Bone Neoplasms/secondary , Bone Neoplasms/pathology , Bone Neoplasms/mortality , Risk Factors , Bone Density , Musculoskeletal Diseases/therapy , Musculoskeletal Diseases/diagnosis , Musculoskeletal Diseases/etiology , Musculoskeletal Diseases/physiopathology , Musculoskeletal System/physiopathology , Musculoskeletal System/pathology
4.
Int J Mol Sci ; 23(2)2022 Jan 10.
Article in English | MEDLINE | ID: mdl-35054906

ABSTRACT

COVID-19 is a trending topic worldwide due to its immense impact on society. Recent trends have shifted from acute effects towards the long-term morbidity of COVID-19. In this review, we hypothesize that SARS-CoV-2 contributes to age-related perturbations in endothelial and adipose tissue, which are known to characterize the early aging process. This would explain the long-lasting symptoms of SARS-CoV-2 as the result of an accelerated aging process. Connective tissues such as adipose tissue and musculoskeletal tissue are the primary sites of aging. Therefore, current literature was analyzed focusing on the musculoskeletal symptoms in COVID-19 patients. Hypovitaminosis D, increased fragility, and calcium deficiency point towards bone aging, while joint and muscle pain are typical for joint and muscle aging, respectively. These characteristics could be classified as early osteoarthritis-like phenotype. Exploration of the impact of SARS-CoV-2 and osteoarthritis on endothelial and adipose tissue, as well as neuronal function, showed similar perturbations. At a molecular level, this could be attributed to the angiotensin-converting enzyme 2 expression, renin-angiotensin system dysfunction, and inflammation. Finally, the influence of the nicotinic cholinergic system is being evaluated as a new treatment strategy. This is combined with the current knowledge of musculoskeletal aging to pave the road towards the treatment of long-term COVID-19.


Subject(s)
Aging , COVID-19/pathology , Osteoarthritis/pathology , Adipose Tissue/metabolism , Adipose Tissue/physiopathology , Angiotensin-Converting Enzyme 2/metabolism , COVID-19/complications , COVID-19/virology , Humans , Musculoskeletal System/metabolism , Musculoskeletal System/physiopathology , Osteoarthritis/complications , Pain/etiology , Renin-Angiotensin System , SARS-CoV-2/isolation & purification
5.
Rev. bras. ortop ; 57(1): 1-13, Jan.-Feb. 2022. tab
Article in English | LILACS | ID: biblio-1365754

ABSTRACT

Abstract Skeletal muscle tissue has the largest mass in the human body, accounting for 45% of the total weight. Muscle injuries can be caused by bruising, stretching or laceration. The current classification divides these injuries into mild, moderate and severe. The signs and symptoms of grade I lesions are edema and discomfort; grade II, loss of function, gaps and possible ecchymosis; and grade III, complete rupture, severe pain and extensive hematoma. The diagnosis can be confirmed by ultrasound, which is dynamic and cheap, but examiner dependent; and magnetic resonance imaging (MRI), which provides better anatomical definition. The initial phase of the treatment consists in protection, rest, optimal use of the affected limb, and cryotherapy. Nonsteroidal anti-inflammatory drugs (NSAIDs), ultrasound therapy, strengthening and stretching after the initial phase and range of motion without pain are used in the clinical treatment. On the other hand, surgery has precise indications: hematoma drainage and muscle-tendon reinsertion and reinforcement.


Resumo O tecido muscular esquelético possui a maior massa do corpo humano, correspondendo a 45% do peso total. As lesões musculares podem ser causadas por contusões, estiramentos ou lacerações. A atual classificação separa as lesões entre leves, moderadas e graves. Os sinais e sintomas das lesões grau I são edema e desconforto; grau II, perda de função, gap e equimose eventual; grau III, rotura completa, dor intensa e hematoma extenso. O diagnóstico pode ser confirmado por ultrassom (dinâmico e barato, porém examinador-dependente); e ressonância magnética (RM) (maior definição anatômica). A fase inicial do tratamento se resume à proteção, ao repouso, ao uso otimizado do membro afetado e crioterapia. Anti-inflamatórios não hormonais (AINHs), ultrassom terapêutico, fortalecimento e alongamento após a fase inicial e amplitudes de movimento sem dor são utilizados no tratamento clínico. Já o cirúrgico possui indicações precisas: drenagem do hematoma, reinserção e reforço musculotendíneos.


Subject(s)
Athletic Injuries , Anti-Inflammatory Agents , Musculoskeletal System/surgery , Musculoskeletal System/physiopathology , Musculoskeletal System/injuries
6.
PLoS One ; 16(11): e0259440, 2021.
Article in English | MEDLINE | ID: mdl-34793483

ABSTRACT

This study aims to investigate the dysfunction and recovery of the lumbopelvic movement and motor control of people with chronic nonspecific low back pain after a structured rehabilitation which emphasizes on re-education and training of movement and motor control. The lumbopelvic movement and motor control pattern of 30 adults (15 with chronic low back pain, 15 healthy controls) were assessed using 3D motion and electromyographic analysis during the repeated forward bending test, in additional to the clinical outcome measures. Regional kinematics and muscle recruitment pattern of the symptomatic group was analysed before and after the 6-week rehabilitation, and compared to healthy controls. Significant improvement in back pain, functional capacity and self-efficacy of the symptomatic group was found after the rehabilitation. Patients with chronic nonspecific low back pain were capable to recover to a comparable level of the healthy controls in terms of their lumbopelvic movement and motor control pattern upon completion of a 6-week rehabilitation program, despite their dysfunction displayed at baseline. Phase specific motor control reorganization in which more profound and positive changes shown during the flexion phase. Our findings indicate that the recovery of the movement and motor control pattern in patients with chronic low back pain achieved to a comparable level of the healthy able-bodies. The improvement of both the physical outcome measures suggest that specific rehabilitation program which emphasizes on optimizing motor control during movements would help promoting the functional recovery of this specific low back pain subgroup.


Subject(s)
Exercise Therapy , Low Back Pain/rehabilitation , Muscle, Skeletal/physiology , Musculoskeletal System/physiopathology , Biomechanical Phenomena , Case-Control Studies , Chronic Disease , Electromyography , Female , Humans , Movement , Program Evaluation , Prospective Studies , Recovery of Function , Self Efficacy , Treatment Outcome
8.
Sci Rep ; 11(1): 13788, 2021 07 02.
Article in English | MEDLINE | ID: mdl-34215827

ABSTRACT

Motor imagery (MI) is usually facilitated when performed in a congruent body position to the imagined movement, as well as after actual execution (AE). A lower-limb amputation (LLA) results in important structural and functional changes in the sensorimotor system, which can alter MI. In this study, we investigated the effects of body position and AE on the temporal characteristics of MI in people with LLA. Ten participants with LLA (mean age = 59.6 ± 13.9 years, four females) and ten gender- and age-matched healthy control participants (mean age = 60.1 ± 15.4 years, four females) were included. They performed two locomotor-related tasks (a walking task and the Timed Up and Go task) while MI times were measured in different conditions (in congruent/incongruent positions and before/after AE). We showed that MI times were significantly shorter when participants imagined walking in a congruent-standing position compared to an incongruent-sitting position, and when performing MI after actual walking compared to before, in both groups. Shorter MI times in the congruent position and after AE suggest an improvement of MI's temporal accuracy (i.e. the ability to match AE time during MI) in healthy individuals but not in the LLA group.


Subject(s)
Imagery, Psychotherapy , Musculoskeletal System/physiopathology , Postural Balance/physiology , Walking/physiology , Adult , Aged , Amputation, Surgical/psychology , Female , Humans , Imagination/physiology , Male , Middle Aged , Movement/physiology , Posture/physiology , Sitting Position , Standing Position , Time and Motion Studies , Walking/psychology
9.
PLoS One ; 16(6): e0252657, 2021.
Article in English | MEDLINE | ID: mdl-34153069

ABSTRACT

Neuromuscular impairments are frequently observed in patients with chronic neck pain (CNP). This study uniquely investigates whether changes in neck muscle synergies detected during gait are sensitive enough to differentiate between people with and without CNP. Surface electromyography (EMG) was recorded from the sternocleidomastoid, splenius capitis, and upper trapezius muscles bilaterally from 20 asymptomatic individuals and 20 people with CNP as they performed rectilinear and curvilinear gait. Intermuscular coherence was computed to generate the functional inter-muscle connectivity network, the topology of which is quantified based on a set of graph measures. Besides the functional network, spectrotemporal analysis of each EMG was used to form the feature set. With the use of Neighbourhood Component Analysis (NCA), we identified the most significant features and muscles for the classification/differentiation task conducted using K-Nearest Neighbourhood (K-NN), Support Vector Machine (SVM), and Linear Discriminant Analysis (LDA) algorithms. The NCA algorithm selected features from muscle network topology as one of the most relevant feature sets, which further emphasize the presence of major differences in muscle network topology between people with and without CNP. Curvilinear gait achieved the best classification performance through NCA-SVM based on only 16 features (accuracy: 85.00%, specificity: 81.81%, and sensitivity: 88.88%). Intermuscular muscle networks can be considered as a new sensitive tool for the classification of people with CNP. These findings further our understanding of how fundamental muscle networks are altered in people with CNP.


Subject(s)
Chronic Pain/physiopathology , Electromyography/methods , Neck Muscles/physiopathology , Neck Pain/physiopathology , Support Vector Machine , Walking/physiology , Adult , Algorithms , Chronic Pain/classification , Chronic Pain/diagnosis , Female , Gait/physiology , Humans , Male , Models, Theoretical , Musculoskeletal System/physiopathology , Neck Pain/classification , Neck Pain/diagnosis , Paraspinal Muscles/physiopathology , Superficial Back Muscles/physiopathology , Young Adult
10.
Physiol Res ; 70(2): 119-151, 2021 04 30.
Article in English | MEDLINE | ID: mdl-33992043

ABSTRACT

The purpose of this systematic review is twofold: 1) to identify, evaluate, and synthesize the heretofore disparate scientific literatures regarding the effects of direct exposure to microgravity on the musculoskeletal system, taking into account for the first time both bone and muscle systems of both humans and animals; and 2) to investigate the efficacy and limitations of exercise countermeasures on the musculoskeletal system under microgravity in humans.The Framework for Scoping Studies (Arksey and O'Malley 2005) and the Cochrane Handbook for Systematic Reviews of Interventions (Higgins JPT 2011) were used to guide this review. The Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) checklist was utilized in obtaining the combined results (Moher, Liberati et al. 2009). Data sources, PubMed, Embase, Scopus, and Web of Science were searched for published articles through October 2019 using the Mesh terms of microgravity, musculoskeletal system, and exercise countermeasures. A total of 84 references were selected, including 40 animal studies and 44 studies with human participants. The heterogeneity in the study designs, methodologies, and outcomes deemed this review unsuitable for a meta-analysis. Thus, we present a narrative synthesis of the results for the key domains under five categories: 1) Skeletal muscle responses to microgravity in humans 2) Skeletal muscle responses to microgravity in animals 3) Adaptation of the skeletal system to microgravity in humans 4) Adaptation of the skeletal system to microgravity in animals 5) Effectiveness of exercise countermeasures on the human musculoskeletal system in microgravity. Existing studies have produced only limited data on the combined effects on bone and muscle of human spaceflight, despite the likelihood that the effects on these two systems are complicated due to the components of the musculoskeletal system being anatomically and functionally interconnected. Bone is directly affected by muscle atrophy as well as by changes in muscle strength, notably at muscle attachments. Given this interplay, the most effective exercise countermeasure is likely to be robust, individualized, resistive exercise, primarily targeting muscle mass and strength.


Subject(s)
Exercise Therapy , Musculoskeletal Diseases/prevention & control , Musculoskeletal System/physiopathology , Space Flight , Weightlessness Countermeasures , Weightlessness/adverse effects , Animals , Female , Humans , Male , Musculoskeletal Diseases/diagnosis , Musculoskeletal Diseases/etiology , Musculoskeletal Diseases/physiopathology , Musculoskeletal System/pathology , Protective Factors , Risk Assessment , Risk Factors , Time Factors , Treatment Outcome
11.
Pediatr Blood Cancer ; 68(8): e29053, 2021 08.
Article in English | MEDLINE | ID: mdl-33890409

ABSTRACT

BACKGROUND: Children receiving intensive chemotherapy for leukemia or undergoing hematopoietic stem cell transplant (HSCT) for solid tumors or leukemia are at risk for musculoskeletal (MSK) impairment from their underlying disease and from treatment. Data are limited on the incidence and nature of these disorders during intensive therapy. This study's objective was to provide a cross-sectional description of MSK impairments in this population. PROCEDURE: Children with acute myeloid leukemia (AML), relapsed acute lymphoblastic leukemia (rALL), or undergoing HSCT were systematically assessed for MSK impairments as part of Children's Oncology Group study ACCL0934. Assessments occurred at study entry, at 2 months, and at 12 months and included evaluation for signs or symptoms of MSK impairment and the type, site, and diagnosis. RESULTS: Six hundred three patients were included. MSK signs or symptoms were present in 48 (8.0%) children at study entry, 64 (13.5%) children at 2 months, and 40 (11.6%) children at 12 months. Arthralgia and/or gait abnormalities were the most common impairments; the knee was the most common site. Arthritis and tendonitis were both rare. Vincristine neuropathy, MSK impacts from central nervous system pathology, and bone or joint pain from underlying cancer were the most common diagnoses. Multivariate analysis demonstrated that having rALL (odds ratio [OR] 2.00, 95% CI 1.07-3.76, p = .03) or obesity (OR 2.10, 95% CI 1.12-3.95, p = .02) were risk factors for MSK impairment at study entry. CONCLUSIONS: MSK impairments are common in this intensively treated patient population, especially in those with rALL and those who are obese.


Subject(s)
Hematopoietic Stem Cell Transplantation , Leukemia, Myeloid, Acute , Musculoskeletal System/physiopathology , Precursor Cell Lymphoblastic Leukemia-Lymphoma , Child , Cross-Sectional Studies , Hematopoietic Stem Cell Transplantation/adverse effects , Humans , Leukemia, Myeloid, Acute/drug therapy , Leukemia, Myeloid, Acute/therapy , Precursor Cell Lymphoblastic Leukemia-Lymphoma/drug therapy , Precursor Cell Lymphoblastic Leukemia-Lymphoma/therapy
12.
Pediatr Rheumatol Online J ; 19(1): 58, 2021 Apr 29.
Article in English | MEDLINE | ID: mdl-33926491

ABSTRACT

BACKGROUND: While musculoskeletal ultrasound (MSUS) use in pediatric rheumatology is becoming more common, the majority of pediatric MSUS literature continues to focus on ultrasound findings in healthy children and juvenile idiopathic arthritis with little discussion of other musculoskeletal problems that may mimic arthritis such as joint hypermobility. Chronic joint pain related to hypermobility is a common referral to pediatric rheumatology clinics. Our aim is to describe the musculoskeletal ultrasound (MSUS) characteristics of the knee in a population with joint hypermobility and pain in comparison to control participants. METHODS: Participants were recruited into three groups for a case-control study. Case group participants had knee hypermobility and pain symptoms (H + P). Participants in one control group had knee hypermobility without pain symptoms (H-P), and participants in the other control group had no knee hypermobility or pain symptoms (NP). B-mode and Doppler MSUS images were obtained and scored for each knee. Descriptive statistics are used for demographic variables and MSUS findings. Regression analysis is used to evaluate risk of synovial effusion and higher synovial effusion/hypertrophy quantitative score. RESULTS: MSUS assessment was performed on 91 knees of 50 participants. H + P knees were more likely to have positive findings noted on MSUS (94% vs. 70% of H-P and 74% of NP knees, p = 0.043). Patellar tendon hyperemia was more common in H + P knees (52%, vs. 19% among H-P and 23% among NP, p = 0.025). Participants who reported taking scheduled non-steroidal anti-inflammatory drugs (NSAIDs) had an increased risk of synovial effusion (RR = 1.83, 95% CI = 1.07-2.30, p = 0.026) and a trend towards increased risk of a higher synovial effusion/hypertrophy quantitative score (RR = 1.77, 95% CI = 0.92-3.38, p = 0.086). CONCLUSIONS: While positive MSUS findings were frequent in all participants, patellar tendon hyperemia was more frequent in participants with knee hypermobility and pain symptoms. Additionally, reported use of NSAIDs was associated with an increased risk of synovial effusion and higher synovial effusion/hypertrophy quantitative score. Further study should assess correlation between tendon abnormalities and degree of pain symptoms as well as the effect of NSAIDs on MSUS findings.


Subject(s)
Arthralgia/diagnosis , Joint Instability , Knee Joint , Musculoskeletal System , Ultrasonography, Doppler/methods , Adolescent , Anti-Inflammatory Agents, Non-Steroidal/therapeutic use , Arthralgia/etiology , Case-Control Studies , Diagnosis, Differential , Female , Humans , Hyperemia/diagnostic imaging , Joint Instability/diagnosis , Joint Instability/physiopathology , Knee Joint/diagnostic imaging , Knee Joint/physiopathology , Male , Musculoskeletal System/diagnostic imaging , Musculoskeletal System/physiopathology , Risk Assessment/methods , Risk Factors , Tendons/blood supply , Tendons/pathology
13.
Proc Nutr Soc ; 80(1): 73-91, 2021 02.
Article in English | MEDLINE | ID: mdl-32981540

ABSTRACT

The prevalence of malnutrition in patients with cancer is one of the highest of all patient groups. Weight loss (WL) is a frequent manifestation of malnutrition in cancer and several large-scale studies have reported that involuntary WL affects 50-80% of patients with cancer, with the degree of WL dependent on tumour site, type and stage of disease. The study of body composition in oncology using computed tomography has unearthed the importance of both low muscle mass (sarcopenia) and low muscle attenuation as important prognostic indications of unfavourable outcomes including poorer tolerance to chemotherapy; significant deterioration in performance status and quality of life (QoL), poorer post-operative outcomes and shortened survival. While often hidden by excess fat and high BMI, muscle abnormalities are highly prevalent in patients with cancer (ranging from 10 to 90%). Early screening to identify individuals with sarcopenia and decreased muscle quality would allow for earlier multimodal interventions to attenuate adverse body compositional changes. Multimodal therapies (combining nutritional counselling, exercise and anti-inflammatory drugs) are currently the focus of randomised trials to examine if this approach can provide a sufficient stimulus to prevent or slow the cascade of tissue wasting and if this then impacts on outcomes in a positive manner. This review will focus on the aetiology of musculoskeletal degradation in cancer; the impact of sarcopenia on chemotherapy tolerance, post-operative complications, QoL and survival; and outline current strategies for attenuation of muscle loss in clinical practice.


Subject(s)
Malnutrition/therapy , Musculoskeletal System/physiopathology , Neoplasms/physiopathology , Nutrition Therapy/methods , Nutritional Status/physiology , Body Composition , Cachexia/etiology , Cachexia/therapy , Combined Modality Therapy , Humans , Malnutrition/etiology , Neoplasms/complications , Nutrition Assessment , Prevalence , Prognosis , Quality of Life , Sarcopenia/etiology , Sarcopenia/therapy , Weight Loss
14.
J Cell Physiol ; 236(6): 4231-4243, 2021 06.
Article in English | MEDLINE | ID: mdl-33241566

ABSTRACT

MicroRNA-128 (miR-128) is associated with cell proliferation, differentiation, migration, apoptosis, and survival. Genetic analysis studies have demonstrated that miR-128 participates in bone metabolism, which involves bone marrow-derived mesenchymal stem cells, osteoblasts, osteoclasts, and adipocytes. miR-128 also participates in regeneration of skeletal muscles by targeting myoblast-associated proteins. The deregulation of miR-128 could lead to a series of musculoskeletal diseases. In this review, we discuss recent findings of miR-128 in relation to bone metabolism and muscle regeneration to determine its potential therapeutic effects in musculoskeletal diseases, and to propose directions for future research in this significant field.


Subject(s)
Bone Remodeling , MicroRNAs/metabolism , Muscle Development , Musculoskeletal Diseases/metabolism , Musculoskeletal System/metabolism , Osteogenesis , Arthritis/genetics , Arthritis/metabolism , Arthritis/physiopathology , Bone Remodeling/genetics , Exosomes/genetics , Exosomes/metabolism , Gene Expression Regulation , Humans , Male , MicroRNAs/genetics , Muscle Development/genetics , Musculoskeletal Diseases/genetics , Musculoskeletal Diseases/physiopathology , Musculoskeletal System/physiopathology , Osteogenesis/genetics , Osteoporosis/genetics , Osteoporosis/metabolism , Osteoporosis/physiopathology
15.
Ann N Y Acad Sci ; 1491(1): 3-24, 2021 05.
Article in English | MEDLINE | ID: mdl-33231326

ABSTRACT

Aging is a chronic, complicated process that leads to degenerative physical and biological changes in living organisms. Aging is associated with permanent, gradual physiological cellular decay that affects all aspects of cellular mechanobiological features, including cellular cytoskeleton structures, mechanosensitive signaling pathways, and forces in the cell, as well as the cell's ability to sense and adapt to extracellular biomechanical signals in the tissue environment through mechanotransduction. These mechanobiological changes in cells are directly or indirectly responsible for dysfunctions and diseases in various organ systems, including the cardiovascular, musculoskeletal, skin, and immune systems. This review critically examines the role of aging in the progressive decline of the mechanobiology occurring in cells, and establishes mechanistic frameworks to understand the mechanobiological effects of aging on disease progression and to develop new strategies for halting and reversing the aging process. Our review also highlights the recent development of novel bioengineering approaches for studying the key mechanobiological mechanisms in aging.


Subject(s)
Aging/physiology , Cytoskeleton/physiology , Mechanotransduction, Cellular/physiology , Musculoskeletal System/physiopathology , Biomechanical Phenomena/physiology , Disease Progression , Elasticity/physiology , Humans , Muscle Weakness/physiopathology
16.
Methods Mol Biol ; 2230: 17-37, 2021.
Article in English | MEDLINE | ID: mdl-33197006

ABSTRACT

The study of postnatal skeletal repair is of immense clinical interest. Optimal repair of skeletal tissue is necessary in all varieties of elective and reparative orthopedic surgical treatments. However, the repair of fractures is unique in this context in that fractures are one of the most common traumas that humans experience and are the end-point manifestation of osteoporosis, the most common chronic disease of aging. In the first part of this introduction the basic biology of fracture healing is presented. The second part discusses the primary methodological approaches that are used to examine repair of skeletal hard tissue and specific considerations for choosing among and implementing these approaches.


Subject(s)
Fracture Healing , Fractures, Bone/therapy , Musculoskeletal System/physiopathology , Osteoporosis/therapy , Aging/pathology , Fractures, Bone/physiopathology , Humans , Osteoporosis/physiopathology
17.
PLoS One ; 15(10): e0240588, 2020.
Article in English | MEDLINE | ID: mdl-33064756

ABSTRACT

INTRODUCTION: Diabetes-related lower extremity amputation has a major psycho-social and economic cost on the patient as well as a direct impact on financial expenditure within health facilities. AIM: This study aimed to determine the incidence and patient-related factors related to diabetes-related amputations amongst patients that were referred to the quaternary hospital between 1 January 2014 and 31 December 2015. METHODS: A retrospective cohort study. Data were retrieved from the medical record for each diabetes patient that was managed at IALCH during the study period. The following variables were collected: sociodemographic parameters (age, gender, and ethnicity) and diabetes-related parameters (type of diabetes) and additional complications. RESULTS: Ninety-nine patients (0, 73%) of all diabetes patients managed were new diabetes-related lower-extremity amputations. There were statistically significant increased odds of female patients (OR: 1, 7) and patients with non-insulin dependent diabetes (OR: 1, 64) to have new diabetes-related amputations. Patients older than 60 years (OR: 1, 31); African patients (OR: 1, 35) patients with cardiovascular complications (OR: 1, 04) and patients with retinopathy (OR: 1, 48) were more likely to have diabetes-related amputations but not statistically significant. CONCLUSIONS: A combination of primary preventive strategies, early detection and appropriate management of patients with diabetes and specific guidelines on the frequency, clinical and laboratory tests required for early diagnosis and referrals with early signs of diabetes-related complicationsat primary care level will assist in reducing the long term adverse outcomes including amputations.


Subject(s)
Diabetes Complications/epidemiology , Diabetes Mellitus, Type 2/epidemiology , Diabetic Foot/surgery , Musculoskeletal System/surgery , Adult , Aged , Amputation, Surgical , Diabetes Complications/physiopathology , Diabetes Complications/surgery , Diabetes Mellitus, Type 2/complications , Diabetes Mellitus, Type 2/physiopathology , Diabetes Mellitus, Type 2/surgery , Diabetic Foot/pathology , Female , Hospitals , Humans , Lower Extremity/physiopathology , Lower Extremity/surgery , Male , Middle Aged , Musculoskeletal System/physiopathology , Risk Factors , South Africa
18.
Chiropr Man Therap ; 28(1): 52, 2020 09 15.
Article in English | MEDLINE | ID: mdl-32928244

ABSTRACT

BACKGROUND: Taping is a common treatment modality used by many rehabilitation providers. Several types of tapes and taping methods are used in the treatment of musculoskeletal dysfunction and pain. PURPOSE: To summarize and map the evidence related to taping methods used for various joints and conditions of the musculoskeletal system, and to provide clinicians and researchers with a user-friendly reference with organized evidence tables. DATA SOURCES: The PEDro, CINAHL, Cochrane Database of Systematic Reviews, Cochrane Central Register for Controlled Trials, PubMed, and PROSPERO databases were searched from inception through October 31, 2019. STUDY SELECTION: Eligible studies were selected by two independent reviewers and included either systematic reviews (SRs) or randomized controlled trials (RCTs) and included a musculoskeletal complaint using a clinical outcome measure. DATA EXTRACTION: Data was extracted by two investigators independently. Risk of bias and quality were assessed using A MeaSurement Tool to Assess systematic Reviews (AMSTAR) for SRs or the Physiotherapy Evidence Database (PEDro) scale for RCTs. The protocol was registered with PROSPERO (CRD42019122857). DATA SYNTHESIS: Twenty-five musculoskeletal conditions were summarized from forty-one SRs and 127 RCTs. There were 6 SRs and 49 RCTs for spinal conditions. Kinesio tape was the most common type of tape considered. Four evidence tables representing the synthesized SRs and RCTs were produced and organized by body region per condition. LIMITATIONS: Inclusion of only English language studies. Also, the heterogeneous nature of the included studies prevented a meta-analysis. CONCLUSIONS: There is mixed quality evidence of effectiveness for the different types of taping methods for different body regions and conditions. All of the SRs and RCTs found during our search of the taping literature have been organized into a series of appendices. A synthesis of the results have been placed in evidence tables that may serve as a useful guide to clinicians and researchers.


Subject(s)
Athletic Tape , Musculoskeletal Diseases/therapy , Physical Therapy Modalities , Humans , Musculoskeletal Diseases/physiopathology , Musculoskeletal System/physiopathology , Physical Therapy Modalities/instrumentation , Randomized Controlled Trials as Topic , Treatment Outcome
19.
J Occup Environ Med ; 62(9): 728-737, 2020 09.
Article in English | MEDLINE | ID: mdl-32890212

ABSTRACT

OBJECTIVE: This research investigated the moderating role of supervisor support for employees with musculoskeletal complaints and their intentions to seek medical advice; take sick leave; transfer jobs; and resign. METHODS: Cross-sectional questionnaire data were collected from 1024 Australian employees. RESULTS: Regressions with bootstrapping revealed no support for the buffering role of supervisor support. In contrast to expectations, high supervisor support heightened, rather than lowered, musculoskeletal complaints on intentions to transfer jobs. For sick leave and resignation intentions, high supervisor support buffered the negative effects of musculoskeletal complaints for full-timers but exacerbated such intentions for part-timers. Furthermore, full-timers with high musculoskeletal complaints appeared more vulnerable to the exacerbating effects of low supervisor support compared with part-timers. CONCLUSIONS: Supervisor support for employees with musculoskeletal complaints both weakens and strengthens behavioral stress reactions, depending on employment status.


Subject(s)
Employment , Musculoskeletal Pain/epidemiology , Musculoskeletal System , Sick Leave , Australia , Cross-Sectional Studies , Humans , Musculoskeletal System/injuries , Musculoskeletal System/physiopathology , Social Support , Surveys and Questionnaires , Workplace
20.
BMC Endocr Disord ; 20(1): 124, 2020 Aug 14.
Article in English | MEDLINE | ID: mdl-32795274

ABSTRACT

BACKGROUND: Modern imaging plays a central role in the care of obese patients, and there is an integral focus on its use and accessibility in individuals who have alterations of various in various organs. The objective in this study was to perform an echographic analysis of musculoskeletal system disorders, endothelial dysfunction and the left ventricle (LV) in obese rats. METHODS: Sprague Dawley rats (250 ± 5 g) were obtained and divided into two groups: the control (C) group was fed with a standard diet, and the obese (Ob) group was fed hyper caloric diet with a high fructose-fat content for 4 months. Body weight, cholesterol, triglycerides, glucose, inflammatory cytokines and adhesion molecules (ICAM-1, VCAM-1) were measured. Additionally, two-dimensional echocardiography, abdominal ultrasound and musculoskeletal system studies were performed in the lower extremities. RESULTS: The body weight in the Ob group was increased compared to that in the control group, (p < 0.001); in addition, increased glucose, cholesterol and triglyceride concentrations (p < 0.05) as well as increased levels of the adhesion molecules ICAM-1 and, VCAM-1 (p < 0.01) were found in the Ob group vs the C group. On ultrasound, 75% of the Ob group presented fatty liver and distal joint abnormalities. CONCLUSION: Obese rats exhibit endothelial dysfunction and musculoskeletal changes, also, fatty liver and articular cysts in the posterior region of the distal lower- extremity joints.


Subject(s)
Endothelium, Vascular/diagnostic imaging , Heart/diagnostic imaging , Liver/diagnostic imaging , Musculoskeletal System/diagnostic imaging , Obesity/diagnosis , Anatomy, Cross-Sectional , Animals , Endothelium, Vascular/pathology , Endothelium, Vascular/physiopathology , Heart/physiopathology , Intercellular Adhesion Molecule-1/metabolism , Liver/physiopathology , Male , Musculoskeletal Diseases/diagnosis , Musculoskeletal Diseases/etiology , Musculoskeletal Diseases/pathology , Musculoskeletal Diseases/physiopathology , Musculoskeletal System/pathology , Musculoskeletal System/physiopathology , Myocardium/pathology , Obesity/complications , Obesity/physiopathology , Rats , Rats, Sprague-Dawley , Ultrasonography , Vascular Diseases/diagnosis , Vascular Diseases/etiology , Vascular Diseases/pathology , Vascular Diseases/physiopathology , Ventricular Dysfunction, Left/diagnosis , Ventricular Dysfunction, Left/etiology , Ventricular Dysfunction, Left/pathology , Ventricular Dysfunction, Left/physiopathology
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