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TLR2 signaling in chondrocytes drives calcium pyrophosphate dihydrate and monosodium urate crystal-induced nitric oxide generation.

Microcrystals of calcium pyrophosphate dihydrate (CPPD) and monosodium urate (MSU) deposited in synovium and articular cartilage initiate joint inflammation and cartilage degradation in large part by binding and directly activating resident cells. TLRs trigger innate host defense responses to infectious pathogens, and the expression of certain TLRs by synovial fibroblasts has revealed the potential for innate immune responses to be triggered by mesenchymally derived resident cells in the joint. In this study we tested the hypothesis that chondrocytes also express TLRs and that one or more TLRs centrally mediate chondrocyte responsiveness to CPPD and MSU crystals in vitro. We detected TLR2 expression in normal articular chondrocytes and up-regulation of TLR2 in osteoarthritic cartilage chondrocytes in situ. We demonstrated that transient transfection of TLR2 signaling-negative regulator Toll-interacting protein or treatment with TLR2-blocking Ab suppressed CPPD and MSU crystal-induced chondrocyte release of NO, an inflammatory mediator that promotes cartilage degeneration. Conversely, gain-of-function of TLR2 in normal chondrocytes via transfection was associated with increased CPPD and MSU crystal-induced NO release. Canonical TLR signaling by parallel pathways involving MyD88, IL-1R-associated kinase 1, TNF receptor-associated factor 6, and IkappaB kinase and Rac1, PI3K, and Akt critically mediated NO release in chondrocytes stimulated by both CPPD and MSU crystals. We conclude that CPPD and MSU crystals critically use TLR2-mediated signaling in chondrocytes to trigger NO generation. Our results indicate the potential for innate immunity at the level of the articular chondrocyte to directly contribute to inflammatory and degenerative tissue reactions associated with both gout and pseudogout.

Adaptor Proteins, Signal Transducing↗

Calcium pyrophosphate crystal deposition disease and other crystal deposition diseases.

"Tumoral" calcium pyrophosphate dihydrate (CPPD) crystal deposition in the ligamentum flavum is rare and can lead to compression myeloradiculopathy in the cervical spine and to spinal canal stenosis in the lumbar spine. CPPD crystal deposition disease is rarely associated with Bartter's syndrome and hypomagnesemia. Intramuscular corticotropin has proved effective in the treatment of acute episodes of pyrophosphate arthritis in patients with multiple medical illnesses in whom nonsteroidal anti-inflammatory drugs are contraindicated. IgG binding to CPPD crystals enhances neutrophil activation (by increasing intracellular cytoplasmic calcium levels) and seems to play a greater role in pyrophosphate than in urate crystal-induced inflammation. Transforming growth factor-beta 1 stimulates intracellular pyrophosphate generation by articular chondrocytes. The effect is inhibited by probenecid, an anion transport blocker, through interfering with the active transport of intracellular pyrophosphate to cartilage matrix where crystals form. Calcific tendinitis associated with underlying cortical bone erosions is an uncommon manifestation of apatite crystal deposition disease. Closed-needle tidal irrigation proved beneficial in two patients with Milwaukee shoulder syndrome. Two patients with nodular subcutaneous cholesterol crystal deposition are described.

Arthritis↗

[Calcium pyrophosphate arthropathy (pseudogout) of the temporomandibular joint].

The temporomandibular joint is rarely affected by crystal deposition disease (gout and pseudogout). Only the temporomandibular joint was affected in a 69-year-old patient with calcium pyrophosphate dihydrate deposition disease (pseudogout). This case is described here. Clinically presenting as painless swelling, computed tomography and magnetic resonance imaging showed signs of a chronic destructive arthritis. The evidence for calcium pyrophosphate dihydrate crystals was provided by histological examination. Diagnostic criteria, differential diagnosis and possibilities for treatment are discussed on the basis of our own experience and the literature.

Aged↗

Arthropathy in calcium pyrophosphate dihydrate crystal deposition disease. Pathologic study of 12 cases.

The pathologic features of calcium pyrophosphate crystal deposition disease (CPDD), particularly the synovial abnormalities, have not been adequately described or depicted in textbooks or journals; this report details the findings in 12 cases. Attention is drawn to the practical reasons for distinguishing CPDD arthropathy from other arthropathies, particularly osteoarthritis; clinical and gross pathologic features that should suggest CPDD arthropathy in cases that are not suspected preoperatively; and characteristics of the tophaceous deposits in CPDD.

Aged↗

Familial chondrocalcinosis due to calcium pyrophosphate dihydrate crystal deposition in English families.

Familial predisposition to chondrocalcinosis (CC) due to calcium pyrophosphate dihydrate (CPPD) crystal deposition is described in five English kindreds. Two families were characterized by premature-onset polyarticular CC with little associated structural arthropathy. In one of these families, recurrent childhood fits were strongly associated with subsequent development of CC. Affected members of the other three families resembled sporadic disease in showing predominantly late-onset, oligoarticular CC with mild arthritis and destructive change in only one case. Knee synovial fluid levels of inorganic pyrophosphate (PPi) and nucleoside triphosphate pyrophosphate (NTPP) did not differ from those of 59 sporadic cases of CC due to CPPD, although PPi and NTPP levels in both groups were higher than in normal knee synovial fluid (P less than 0.0001). Urinary PPi levels were not different from normal controls. Screening for other metabolic abnormality was negative in all cases. This is the first report of familial CC in the UK, and the first to associate this condition with childhood fits. Absence of overt primary abnormality of PPi metabolism suggests that other factors relating to crystal nucleation/growth may be more relevant to predisposition in these cases.

Calcium Pyrophosphate↗

Idiopathic calcium pyrophosphate dihydrate (CPPD) crystal deposition disease in a young male patient: a case report.

Calcium pyrophosphate dihydrate (CPPD) crystal deposition disease is a disease of the elderly and extremely rare in young individuals. If young people develop CPPD crystal deposition disease, it may be associated with metabolic diseases such as hemochromatosis, hyperparathyroidism, hypophosphatasia, hypomagnesemia, Wilson's disease, hypothyroidism, gout, acromegaly, and X-linked hypophosphatemic rickets. Therefore, in young-onset polyarticular CPPD crystal deposition disease, investigation for predisposing metabolic conditions is warranted. We report a case of a young male patient with idiopathic CPPD crystal deposition disease, who did not have any evidences of metabolic diseases after thorough evaluations. As far as we know, this is the first report of a young male patient presented with idiopathic CPPD crystal deposition disease.

Adult↗

Familial calcium pyrophosphate dihydrate deposition disease. A Tunisian kindred.

INTRODUCTION: Familial calcium pyrophosphate dihydrate deposition disease (CPDD) is uncommon, with about 50 affected families identified to date in the world. Genetic studies in familial CPDD are focusing on the ANKH gene. We report a new Tunisian kindred with CPDD. PATIENTS AND METHODS: The development of CPDD in a patient who was only 35 years of age prompted a family study. A medical history, physical examination, and radiographs were performed in 103 family members older than 18 years. RESULTS: Fifteen family members had CPDD. There were 10 men and five women, with a mean age of 59.4 years. Onset was usually in the third or fourth decade. Four clinical patterns were found: Five patients had pseudogout, five had pseudoosteoarthritis, three had asymptomatic disease, and two had pseudorheumatoid arthritis. Inheritance was autosomal dominant with low penetrance. No associations with specific HLA antigens were found. The disease was mild. These characteristics fit the description of Gaucher type 1 familial CPDD. CONCLUSION: Inherited autosomal dominant CPDD with low penetrance was found in 15 members of a Tunisian kindred. The disease was mild. We are planning a genetic study including tests for ANKH gene mutations in this kindred.

Adult↗

Sclerochoroidal calcification associated with Gitelman syndrome and calcium pyrophosphate dihydrate deposition.

Sclerochoroidal calcification is an uncommon condition. Metabolic evaluation and clinical examination are important to exclude associated systemic conditions such as the Bartter and Gitelman syndromes. It has been suggested that the lesions seen in sclerochoroidal calcification are calcium pyrophosphate dihydrate crystals. This report describes the first documented case in the UK of sclerochoroidal calcification associated with Gitelman syndrome and calcium pyrophosphate dihydrate deposition.

Calcinosis↗

Tumoral calcium pyrophosphate dihydrate deposition disease of the ligamentum flavum.

OBJECTIVE: Calcium pyrophosphate dihydrate (CPPD) deposition disease (CPPDD), also known as pseudogout, is rarely known to affect the spine. The purpose of this article is to report our experience with six cases involving massive focal deposition of CPPD crystals in the ligamentum flavum. METHODS: Between January 1998 and June 2002, we treated six patients with CPPDD involving the ligamentum flavum of the cervical and thoracic spine. Their ages ranged from 45 to 70 years. There were five female patients and one male patient. The cervical spine was involved in two cases and the thoracic spine in four. All except one patient presented with an insidious onset of myelopathy. The remaining patient presented with paraplegia after trauma. None of the patients exhibited any systemic features of CPPDD or other metabolic conditions that can lead to CPPD deposition. Plain x-rays often yielded inconclusive results. Computed tomography and magnetic resonance imaging were useful in confirming the diagnoses. Decompressive laminectomy, with removal of the ossified ligamenta flava, was performed for all patients. Polarized-light microscopic examinations of the excised ligamenta flava revealed the characteristic rod-shaped, birefringent crystals. RESULTS: Five of the six patients experienced significant improvements in their myelopathic symptoms after surgery. The remaining patient experienced improvements in sensations but no appreciable improvement in motor power. During the follow-up periods, which ranged from 7 months to 3 years, none of the patients presented with a recurrence of CPPD crystal deposition at the previously treated level. However, one patient who exhibited improvement after surgery presented 2 years later with a recurrence of myelopathic features attributable to ossification of the ligamentum flavum at a new level. CONCLUSION: Tumoral CPPDD of the ligamentum flavum is rare. It commonly occurs among middle-age or elderly female patients and presents with progressive myelopathy. Computed tomography and magnetic resonance imaging are complementary in the diagnosis of this condition. Surgery, if performed early, leads to good improvement. However, long-term follow-up monitoring of these patients is necessary, because surgery provides only symptomatic relief and does not treat the underlying disease. With the increasing availability of magnetic resonance imaging, ossification of the ligamentum flavum is being more frequently recognized. In every case of ossified ligamentum flavum, the excised specimen should be examined with polarized-light microscopy. We think that this simple, inexpensive method will lead to the recognition of more cases of spinal CPPDD.

Aged↗

[Effect of arteparon on the formation of calcium phosphate and calcium pyrophosphate crystals--comparative experimental study].

The influence of Arteparon on crystal formation in vitro has been examined in calcium orthophosphate and in calcium pyrophosphate mixtures. Similar factors may be operative in the cartilage calcification processes, and thus in chondrocalcinosis. Authors have ascertained that Arteparon - like chondroitin sulphate - inhibits crystal separation. The optimal concentration for this inhibition lies in the range of the proteoglycan content of normal cartilage. Where there are physiological phosphate-pyrophosphate ratios and a low magnesium concentration, it is certain that Arteparon has an inhibiting effect. Apart from the spatial structure of the substance, the importance of negative charge density for the inhibition of separation of calcium phosphate and pyrophosphate crystals is thought to contribute to this effect of Arteparon.

Calcium Phosphates↗

Clearance of calcium pyrophosphate dihydrate crystals in vivo. I. Studies using 169Yb labeled triclinic crystals.

Synthetic triclinic calcium pyrophosphate dihydrate crystals were uniformly trace-labeled with Ytterbium-169 (169Yb), a pure gamma-emitting isotope with a halflife of 31 days. The solubility of the labeled crystals was similar to that of cold synthetic crystals. The clearance rate of labeled sterile crystals, sieved to obtain the desired size, was determined after injection of microgram quantities into 4 arthritic huuman and 3 normal adult rabbit joints and corrected by the observed rate of clearance of free 169Yb. The derived rate constants were then used to calculate the time required for half of the injected dose of CPPD to be cleared from the joint. Crystal clearance was found in all instances. Crystal removal from normal rabbit joints was much more rapid than from the much larger human arthritic joints and was inversely proportional to the size of the crystals injected.

Animals↗

Calcium pyrophosphate dihydrate deposition disease and familial hypomagnesemia.

A 40-year-old woman presented with calcium pyrophosphate synovitis and chondrocalcinosis. She was subsequently found to have hypomagnesemia, as did her 22-year-old son. Metabolic studies demonstrated normal gastrointestinal absorption of magnesium, and impaired renal conservation of magnesium without other evidence of renal tubular dysfunction. It seems likely that a genetically determined abnormality of magnesium metabolism was responsible for the occurrence of chondrocalcinosis in this patient.

Adult↗

Geographic distribution of calcium pyrophosphate (CPPD) deposition disease in pre-Columbian North America: independent validation of CPPD criteria.

Calcium pyrophosphate deposition disease (CPPD), a form of crystalline arthritis, has a unique distribution in the Early to Middle Archaic Periods (3000 to 8000 years before the present) of North America, contrasting with the generalized geographic distribution of osteoarthritis. Incursion of CPPD into specific regions suggests possible migration patterns. The disparate geographic distribution of CPPD and osteoarthritis provide independent verification of the validity of diagnostic criteria utilized for the identification of CPPD.

Arthritis↗

A case of the calcium pyrophosphate dihydrate (CPPD) deposition disease without condylar destruction of the temporomandibular joint.

The case of calcium pyrophosphate dihydrate (CPPD) deposition disease, which occurred at a rare site in the temporomandibular joint (TMJ), is presented. A 48-year-old woman noted swelling in the preauricular area of her left cheek, which restricted her mouth opening. Radiological examination revealed a radiopaque lesion in the posterior and medial area of the left space of the TMJ. During the operation, the superior joint space was entirely filled with a solid and whitish-gray mass of chalky appearance. The lesion was partly attached to the retrodiscal tissue without any destructive change around the condyle and mandibular fossa. Histological examination revealed the foci of amorphous crystalline material to contain rhomboidal, rod and needle shaped crystals, which had cartilaginous tissue in the dense fibrous background admixed with chronic inflammatory cells and foreign body-type giant cells. The crystals were positive for von Kossa's stain and spectral peaks for phosphorus and calcium were evident by electron probe microanalysis, thus suggesting the presence of CPPD.

Calcium Pyrophosphate↗

Diseases associated with calcium pyrophosphate deposition disease.

Although many metabolic and endocrine diseases have been reported to predispose to calcium pyrophosphate dihydrate crystal deposition, the validity of many of these associations remains unclear. A critical review of the literature relating to these associations, with illustrative cases and data derived from the authors' own experience, is presented. It is concluded that there is good evidence to associate hypophosphatasia, hypomagnesemia, and hyperparathyroidism with chondrocalcinosis and acute attacks of "pseudogout." Meta-analysis also suggests a small but significant association between hypothyroidism and chondrocalcinosis. Hemochromatosis stands alone in clearly associating not only with chondrocalcinosis but also with structural change and chronic arthropathy. The biochemical mechanisms that may produce these various associations are discussed. Recommendations are made concerning appropriate screening for metabolic and endocrine disease in patients with chondrocalcinosis.

Acromegaly↗

Calcium pyrophosphate dihydrate crystal deposition patterns in the triangular fibrocartilage complex.

To define the patterns of calcium pyrophosphate dihydrate (CPPD) crystal deposition in the triangular fibrocartilage complex (TFCC), we examined the wrists of five adult, fresh-frozen cadavers using light and scanning electron microscopy and the wrist radiographs of 10 patients with a clinical diagnosis of CPPD disease. The radiographs consistently showed mineral deposits near or on the proximal and distal surfaces of the radial half of the TFCC. Light and electron microscopy showed that CPPD crystals formed distinct clusters sharply demarcated from uninvolved fibrocartilage. The density of crystal packing within clusters varied with the sharpness of demarcation of the clusters from the surrounding tissue. TFCC defects were consistently found in the vicinity of CPPD crystals, and degeneration of the articular cartilage on the ulnar half of the proximal surface of the lunate was associated with CPPD crystal deposition in the radial half of the TFCC. These observations suggest that degenerative tears of the TFCC and degeneration of the articular cartilage of the lunate are associated with CPPD crystal deposits in the TFCC.

Adult↗

Autosomal dominant familial calcium pyrophosphate dihydrate deposition disease is caused by mutation in the transmembrane protein ANKH.

Familial autosomal dominant calcium pyrophosphate dihydrate (CPPD) chondrocalcinosis has previously been mapped to chromosome 5p15. We have identified a mutation in the ANKH gene that segregates with the disease in a family with this condition. ANKH encodes a putative transmembrane inorganic pyrophosphate (PPi) transport channel. We postulate that loss of function of ANKH causes elevated extracellular PPi levels, predisposing to CPPD crystal deposition.

Amino Acid Sequence↗

Interaction of polymorphonuclear leukocytes with calcium pyrophosphate dihydrate crystals deposited in chondrocalcinosis cartilage.

Electron microscopy was used to investigate the characteristics of calcium pyrophosphate dihydrate (CPPD) crystals in chondrocalcinosis (pseudogout syndrome). Crystals in midzone cartilage were frequently seen adjacent to chondrocytes. Great variation in crystal size and shape was observed. Most of the pyrophosphate crystals that had been phagocytosed by polymorphonuclear leukocytes of synovial fluid from patients with acute pseudogout were small (less than or equal to 1 micron), indicating that small crystals can cause intense inflammation. Large numbers of polymorphonuclear leukocytes became attached to the eroded articular surface and phagocytosed microcrystals. Interaction of polymorphonuclear leukocytes with CPPD crystals in the superficial region of articular cartilage may stimulate the release of inflammatory mediators.

Aged↗