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28 result(s) for "Dilisio, Matthew F."
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TREM-1, HMGB1 and RAGE in the Shoulder Tendon: Dual Mechanisms for Inflammation Based on the Coincidence of Glenohumeral Arthritis
Rotator cuff injury (RCI) is a major musculoskeletal disorder in the adult population where inflammation and pain are major contributing factors. Coincidence of other clinical conditions like glenohumeral arthritis aggravates inflammation and delays the healing response. The mechanism and signaling factors underlying the sustenance of inflammation in the rotator cuff joint are largely unknown. The present article aims to elucidate the involvement of inflammatory molecule, TREM-1 (Triggering Receptors Expressed on Myeloid cells-1), and danger-associated molecular patterns (DAMPs), including high mobility group protein 1 (HMGB-1) and RAGE (receptor for advanced glycation end products), in the setting of RCI with respect to the severity of glenohumeral arthritis. Biceps tendons (15 specimens) from the shoulder and blood (11 samples) from patients with glenohumeral arthritis (Group-1, n = 4) and without glenohumeral arthritis (Group-2, n = 11) after RCI surgery were obtained for the study. Molecular and morphological alterations between the groups were compared using histology, immunofluorescence, RT-PCR and flow cytometry. MRI and histomorphology assessment revealed severe inflammation in Group-1 patients while in Group-2 ECM disorganization was prominent without any hallmarks of inflammation. A significant increase in TREM-1 expression in circulating neutrophils and monocytes was observed. Elevated levels of TREM-1, HMGB-1 and RAGE in Group-1 patients along with CD68+ and CD16+ cells confirmed DAMP-mediated inflammation. Expression of TREM-1 in the tendon of Group-2 patients even in the absence of immune cells presented a new population of TREM-expressing cells that were confirmed by real-time PCR analysis and immunofluorescence. Expression of HMGB-1 and RAGE in the biceps tendon from the shoulder of patients without glenohumeral arthritis implied TREM-1-mediated inflammation without involving immune cells, whereas in patients with glenohumeral arthritis, infiltration and the activation of the immune cells, primarily macrophages, release mediators to induce inflammation. This could be the reason for ECM disorganization without the classical signs of inflammation in patients without glenohumeral arthritis.
Damage-associated molecular patterns in the pathogenesis of osteoarthritis: potentially novel therapeutic targets
Osteoarthritis (OA) is a chronic disease that degrades the joints and is often associated with increasing age and obesity. The two most common sites of OA in adults are the knee and hip joints. Increased mechanical stress on the joint from obesity can cause the articular cartilage to degrade and release damage-associated molecular patterns (DAMPs). These DAMPs are involved in various molecular pathways that interact with nuclear factor-kappa B and result in the transcription of inflammatory cytokines and activation of matrix metalloproteinases that progressively destroy cartilage. This review focuses on the interactions and contribution to the pathogenesis and progression of OA through the DAMPs: high-mobility group box 1 (HMGB-1), the receptor for advanced glycation end-products (RAGE), the alarmin proteins S100A8 and S100A9, and heparan sulfate. HMGB-1 is released from damaged or necrotic cells and interacts with toll-like receptors (TLRs) and RAGE to induce inflammatory signals, as well as behave as an inflammatory cytokine to activate innate immune cells. RAGE interacts with HMGB-1, advanced glycation end-products, and innate immune cells to increase local inflammation. The alarmin proteins are released following cell damage and interact through TLRs to increase local inflammation and cartilage degradation. Heparan sulfate has been shown to facilitate the binding of HMGB-1 to RAGE and could play a role in the progression of OA. Targeting these DAMPs may be the potential therapeutic strategies for the treatment of OA.
Osteonecrosis Following Short-term, Low-dose Oral Corticosteroids: A Population-based Study of 24 Million Patients
Although the association between chronic, high-dose corticosteroid use and osteonecrosis is well known, the incidence of osteonecrosis following short-term, low-dose steroid taper packs has never been reported across a large population. The goal of this study was to report the incidence and risk of osteonecrosis after methylprednisolone taper pack (MTP) prescriptions in a multicenter electronic medical records database. A commercially available software platform was used to evaluate the records of 24,533,880 patients to determine the incidence of osteonecrosis in patients who had received single or multiple MTP over a 12-year period. This was compared with the incidence of osteonecrosis in patients who had never been prescribed an MTP. Patients with a history of osteonecrosis or prior corticosteroid use were excluded from the study. A total of 98,390 patients were identified who had received a single MTP. One hundred thirty (0.132%; 95% confidence interval [CI], 0.176%–0.283%) of these patients were subsequently diagnosed with osteonecrosis. The incidence of osteonecrosis in patients who had been prescribed 2 or more MTPs was 0.230% (95% CI, 0.176%–0.283%). Compared with the 0.083% incidence of osteonecrosis in the control group that had never been prescribed an MTP, the relative risk of osteonecrosis after the prescription of a single MTP or multiple MTPs was 1.591 and 2.763, respectively, with a statistically significant difference between cohorts (Although the association between chronic, high-dose corticosteroid use and osteonecrosis is well known, the incidence of osteonecrosis following short-term, low-dose steroid taper packs has never been reported across a large population. The goal of this study was to report the incidence and risk of osteonecrosis after methylprednisolone taper pack (MTP) prescriptions in a multicenter electronic medical records database. A commercially available software platform was used to evaluate the records of 24,533,880 patients to determine the incidence of osteonecrosis in patients who had received single or multiple MTP over a 12-year period. This was compared with the incidence of osteonecrosis in patients who had never been prescribed an MTP. Patients with a history of osteonecrosis or prior corticosteroid use were excluded from the study. A total of 98,390 patients were identified who had received a single MTP. One hundred thirty (0.132%; 95% confidence interval [CI], 0.176%–0.283%) of these patients were subsequently diagnosed with osteonecrosis. The incidence of osteonecrosis in patients who had been prescribed 2 or more MTPs was 0.230% (95% CI, 0.176%–0.283%). Compared with the 0.083% incidence of osteonecrosis in the control group that had never been prescribed an MTP, the relative risk of osteonecrosis after the prescription of a single MTP or multiple MTPs was 1.591 and 2.763, respectively, with a statistically significant difference between cohorts ( P <.001). Short-term, low-dose oral corticosteroid administration may be associated with a low but statistically significant increased incidence of osteonecrosis when compared with patients who have never been prescribed a steroid product.
Therapeutic potential of exosomes in rotator cuff tendon healing
Rotator cuff tears are common musculoskeletal injuries that can cause significant pain and disability. While the clinical results of rotator cuff repair can be good, failure of tendon healing remains a significant problem. Molecular mechanisms underlying structural failure following surgical repair remain unclear. Histologically, enhanced inflammation, disorganization of the collagen fibers, calcification, apoptosis and tissue necrosis affect the normal healing process. Mesenchymal stem cells (MSCs) have the ability to provide improved healing following rotator cuff repair via the release of mediators from secreted 30–100 nm extracellular vesicles called exosomes. They carry regulatory proteins, mRNA and miRNA and have the ability to increase collagen synthesis and angiogenesis through increased expression of mRNA and release of proangiogenic factors and regulatory proteins that play a major role in proper tissue remodeling and preventing extracellular matrix degradation. Various studies have shown the effect of exosomes on improving outcome of cutaneous wound healing, scar tissue formation, degenerative bone disease and Duchenne Muscular Dystrophy. In this article, we critically reviewed the potential role of exosomes in tendon regeneration and propose the novel use of exosomes alone or seeded onto biomaterial matrices to stimulate secretion of favorable cellular factors in accelerating the healing response following rotator cuff repair.
Increased expression of damage-associated molecular patterns (DAMPs) in osteoarthritis of human knee joint compared to hip joint
Osteoarthritis (OA) is a degenerative disease characterized by the destruction of cartilage. The greatest risk factors for the development of OA include age and obesity. Recent studies suggest the role of inflammation in the pathogenesis of OA. The two most common locations for OA to occur are in the knee and hip joints. The knee joint experiences more mechanical stress, cartilage degeneration, and inflammation than the hip joint. This could contribute to the increased incidence of OA in the knee joint. Damage-associated molecular patterns (DAMPs), including high-mobility group box-1, receptor for advanced glycation end products, and alarmins (S100A8 and S100A9), are released in the joint in response to stress-mediated chondrocyte and cartilage damage. This facilitates increased cartilage degradation and inflammation in the joint. Studies have documented the role of DAMPs in the pathogenesis of OA; however, the comparison of DAMPs and its influence on OA has not been discussed. In this study, we compared the DAMPs between OA knee and hip joints and found a significant difference in the levels of DAMPs expressed in the knee joint compared to the hip joint. The increased levels of DAMPs suggest a difference in the underlying pathogenesis of OA in the knee and the hip and highlights DAMPs as potential therapeutic targets for OA in the future.
MicroRNAs Associated with Shoulder Tendon Matrisome Disorganization in Glenohumeral Arthritis
The extracellular matrix (ECM) provides core support which is essential for the cell and tissue architectural development. The role of ECM in many pathological conditions has been well established and ECM-related abnormalities leading to serious consequences have been identified. Though much has been explored in regards to the role of ECM in soft tissue associated pathologies, very little is known about its role in inflammatory disorders in tendon. In this study, we performed microRNA (miRNA) expression analysis in the long head of the human shoulder biceps tendon to identify key genes whose expression was altered during inflammation in patients with glenohumeral arthritis. We identified differential regulation of matrix metalloproteinases (MMPs) that could be critical in collagen type replacement during tendinopathy. The miRNA profiling showed consistent results between the groups and revealed significant changes in the expression of seven different miRNAs in the inflamed tendons. Interestingly, all of these seven miRNAs were previously reported to have either a direct or indirect role in regulating the ECM organization in other pathological disorders. In addition, these miRNAs were also found to alter the expression levels of MMPs, which are the key matrix degrading enzymes associated with ECM-related abnormalities and pathologies. To our knowledge, this is the first report which identifies specific miRNAs associated with inflammation and the matrix reorganization in the tendons. Furthermore, the findings also support the potential role of these miRNAs in altering the collagen type ratio in the tendons during inflammation which is accompanied with differential expression of MMPs.
Vitamin D and Its Effects on Articular Cartilage and Osteoarthritis
Background: Osteoarthritis (OA) currently affects 10% of the American population. There has been a recent push to determine exactly what causes OA and how it can be treated most effectively. Serum vitamin D levels have been associated with OA and may have an effect on articular cartilage remodeling. Purpose: To critically review the published research on the effect of vitamin D on articular cartilage and the development of OA as well as on the mechanism behind cartilage regeneration and degeneration. Study Design: Review. Methods: A systematic search of PubMed and the Web of Science was performed for relevant studies published in the English language through April 30, 2016, using the terms vitamin D, articular cartilage, and osteoarthritis. Results: On a molecular level, 1α,25(OH)2D3, the activated form of vitamin D, plays a role in articular cartilage degeneration. Vitamin D binds to vitamin D receptors, triggering a signaling cascade that leads to chondrocyte hypertrophy. In clinical trials, vitamin D deficiency poses a risk factor for OA, and those with decreased cartilage thickness are more likely to be vitamin D–insufficient. Conclusion: The role of vitamin D supplementation in the treatment or prevention of OA remains uncertain. More research is needed to reconcile these conflicting findings.
Counteractive Effects of IL-33 and IL-37 on Inflammation in Osteoarthritis
Osteoarthritis (OA) is a chronic inflammatory disease where pro-inflammatory cytokines, damage-associated molecular patterns (DAMPs), and macrophages play a crucial role. However, the interactive role of these mediators, the exact cause precipitating OA and definitive treatment for OA are not known yet. Moreover, the interactive role of interleukin (IL)-33 and IL-37 with other factors in the pathogenesis of OA has not been discussed elaborately. In this study, we analyzed the expression of IL-33 and IL-37 in human OA knee and hip joint cartilage tissues. The effect of increased DAMPs, IL-33, and IL-37 on IL-6, tumor necrosis factor (TNF)-α, toll-like receptors (TLRs), and matrix metalloproteinases (MMPs) expression was delineated using human normal and osteoarthritic chondrocytes. The effect of anti-inflammatory cytokine IL-37 on various mediators of inflammation in the presence of IL-33, rHMGB-1, and LPS was investigated to delineate the effects of IL-37. Further, the effects of blocking IL-33 downstream signaling and the effects of IL-33 and IL-37 on macrophage polarization were assessed along with examining the macrophage phenotypes in human OA cartilage tissues. The results of this study revealed increased expression of IL-33 in OA cartilage and that IL-33 increases IL-6, TNF-α, TLRs, and MMPs expression and favors phenotypic conversion towards the M1 phenotype, while IL-37 and blocking IL-33 receptor ST2 have opposite effects. Overall, the results suggest that blocking IL-33 and increasing IL-37 act synergistically to attenuate inflammation and might serve as potential therapeutics in OA.
Association of Inflammatory Responses and ECM Disorganization with HMGB1 Upregulation and NLRP3 Inflammasome Activation in the Injured Rotator Cuff Tendon
Inflammation and extracellular matrix (ECM) disorganization following the rotator cuff tendon injuries (RCTI) delay the repair and healing process and the molecular mechanisms underlying RCTI pathology are largely unknown. Here, we examined the role of HMGB1 and NLRP3 inflammasome pathway in the inflammation and ECM disorganization in RCTI. This hypothesis was tested in a tenotomy-RCTI rat model by transecting the RC tendon from the humerus. H&E and pentachrome staining revealed significant changes in the morphology, architecture and ECM organization in RC tendon tissues following RCTI when compared with contralateral control. Severity of the injury was high in the first two weeks with improvement in 3–4 weeks following RCTI, and this correlated with the healing response. The expression of proteins associated with increased HMGB-1 and upregulation of NLRP3 inflammasome pathway, TLR4, TLR2, TREM-1, RAGE, ASC, Caspase-1, and IL-1β, in the first two weeks following RCTI followed by decline in 3–4 weeks. These results suggest the association of inflammatory responses and ECM disorganization with HMGB1 upregulation and NLRP3 inflammasome activation in the RC tendons and could provide novel target(s) for development of better therapeutic strategies in the management of RCTI.
Conversion to Reverse Shoulder Arthroplasty: Humeral Stem Retention Versus Revision
As the volume of shoulder arthroplasty procedures performed in the United States continues to increase, the predicted number of revision shoulder arthroplasties grows even higher. Conversion of failed shoulder arthroplasty to reverse total shoulder arthroplasty has become common. Many commercially available shoulder arthroplasty systems now offer a platform humeral stem that is used for both anatomic shoulder arthroplasty and reverse total shoulder arthroplasty. This study investigated whether retaining the humeral stem offers advantages over revising the humeral stem in conversion of failed shoulder arthroplasty to reverse total shoulder arthroplasty. The study included 26 patients (mean age, 68.46 years) with failed shoulder arthroplasty who underwent conversion to reverse total shoulder arthroplasty with a minimum 2-year follow-up (mean, 34.38 months). Patients who had retention of the humeral stem were compared with those who had stem revision. Humeral stem retention was associated with a significantly shorter operative time (178.92 vs 237 minutes, As the volume of shoulder arthroplasty procedures performed in the United States continues to increase, the predicted number of revision shoulder arthroplasties grows even higher. Conversion of failed shoulder arthroplasty to reverse total shoulder arthroplasty has become common. Many commercially available shoulder arthroplasty systems now offer a platform humeral stem that is used for both anatomic shoulder arthroplasty and reverse total shoulder arthroplasty. This study investigated whether retaining the humeral stem offers advantages over revising the humeral stem in conversion of failed shoulder arthroplasty to reverse total shoulder arthroplasty. The study included 26 patients (mean age, 68.46 years) with failed shoulder arthroplasty who underwent conversion to reverse total shoulder arthroplasty with a minimum 2-year follow-up (mean, 34.38 months). Patients who had retention of the humeral stem were compared with those who had stem revision. Humeral stem retention was associated with a significantly shorter operative time (178.92 vs 237 minutes, P =.02). Decreases in blood loss, complications, and length of hospitalization were observed, but the differences were not statistically significant. Minimal differences were observed for patient-reported outcomes. Of patients undergoing humeral stem removal, 21.4% had an intraoperative humeral shaft or tuberosity fracture compared with none in the stem retention group. Humeral stem retention was associated with decreased operative time compared with humeral stem revision in the conversion of failed shoulder arthroplasty to reverse total shoulder arthroplasty. The use of a platform shoulder arthroplasty system may benefit patients with failed shoulder arthroplasty undergoing conversion to reverse total shoulder arthroplasty by avoiding humeral stem revision. [ Orthopedics. 2015; 38(9):e773–e779.]