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Vascular calcification and osteoporosis--from clinical observation towards molecular understanding.

Patients with osteoporosis frequently suffer from vascular calcification, which was shown to predict both cardiovascular morbidity/mortality and osteoporotic fractures. Various common risk factors and mechanisms have been suggested to cause both bone loss and vascular calcification, including aging, estrogen deficiency, vitamin D and K abnormalities, chronic inflammation and oxidative stress. Major breakthroughs in molecular and cellular biology of bone metabolism and the characterization of knockout animals with deletion of bone-related genes have led to the concept that common signaling pathways, transcription factors and extracellular matrix interactions may account for both skeletal and vascular abnormalities. For example, mice that lack the cytokine decoy receptor osteoprotegerin or the hormone Klotho display a combined osteoporosis-arterial calcification phenotype. In this review, we summarize the current data and evaluate potential mechanisms of the osteoporosis-arterial calcification syndrome. We propose a unifying hypothesis of vascular calcification that combines both active and passive mechanisms of vascular mineralization with aspects of bone resorption and age-related changes.

Animals↗

Hypercholesterolemia accelerates vascular calcification induced by excessive vitamin D via oxidative stress.

Hypercholesterolemia plays an important role in the initiation and progression of atherosclerosis and has a positive correlation with cardiovascular disease. Calcification is a common feature of atherosclerotic lesions and contributes to cardiovascular dysfunctions. The present study investigated the role of hypercholesterolemia in vascular calcification and its potential mechanism. Models of vascular calcification were established by administering vitamin D2 (VD) to rats alone or combined with a high-cholesterol diet (HCD) and by treating rat aorta smooth muscle cells (RASMCs) with beta-glycerophosphate (GP) alone or combined with oxidized low-density lipoprotein (oxLDL) in vitro. In rats, the combination of VD with HCD significantly enhanced vessel calcium deposition and the activity and mRNA expression of vessel alkaline phosphatase (ALP) compared to treatment with VD alone. This combination also enhanced serum levels of total cholesterol, oxLDL, and malondialdehyde as well as vascular production of superoxide anion, while it reduced the vascular activity of superoxide dismutase. Both simvastatin, a cholesterol-lowering agent, and antioxidant vitamin E antagonized the effects of the above combination. In RASMCs, oxLDL accumulation dependently accelerated calcium deposition in cell layers initiated by GP alone. Also, oxLDL stimulated ALP activity and mRNA expression in RASMCs in a concentration-dependent manner. Taken together, these results suggest that acceleration of vascular calcification by hypercholesterolemia might be attributed to oxidative stress and such calcification may be another target of statin or antioxidant action in antiatherosclerosis.

Animals↗

Extracorporeal shock wave therapy in calcific tendinitis of the shoulder.

OBJECTIVE: To investigate clinical (pain, mobility) and radiological (resolution of calcium deposits) efficacy of different energy levels of extracorporeal shock wave therapy (ESWT) in calcific tendinitis of the shoulder. DESIGN AND PATIENTS: There were 90 study subjects with radiographically verified calcific tendinitis of one shoulder, mean age 52+/-6 years (range 29-65 years; females:males=55:35), all of whom had had symptoms for at least 6 months and substantial restriction of shoulder mobility and pain that required taking anti-inflammatory drugs. Calcium deposits were of type I or type II (clearly circumscribed and dense) and ranged from 1 cm to 3 cm in diameter. Subjects were divided into three groups to receive ESWT at one of two energy levels (E1=0.15 mJ/mm2, E2=0.44 mJ/mm2) or sham treatment. Treatment was given at 6 weekly intervals until symptoms resolved, five treatments had been given or the subject dropped out of the programme. RESULTS: All subjects in groups E1 and E2 completed the programme. Those in group E1 had significantly less pain during treatment but more treatments than those in group E2, and at 6 month follow-up had residual calcification and recurrence of pain (87%). Subjects in group E2 had no residual calcification or recurrence of pain. Sham treatment had no effect. There were no side effects except a small number of haematomas (2 in E1, 6 in E2; maximum size 2 cm). CONCLUSION: ESWT in calcific tendinitis of the shoulder is very effective. It does not have significant side effects at an energy level of E=0.44 mJ/mm2, which can therefore be recommended.

Adult↗

Recurrent acute low back pain secondary to lumbar epidural calcification.

INTRODUCTION: Epidural calcification is a rare cause of back pain, and spontaneous epidural calcification has not been reported previously. CASE REPORT: We describe a patient with acute low back pain and signs of lumbar nerve root compression due to epidural calcification, as demonstrated by CT-scan and MRI. Radiological signs of spondylodiscitis led to a search for an infectious cause, which was negative, and her symptoms responded rapidly to NSAID treatment alone. Her symptoms recurred 18 months later, and further imaging studies again revealed epidural calcification, but with a changed distribution. Her symptoms were relieved once more by NSAID treatment alone. DISCUSSION: We propose that epidural calcification secondary to aseptic spondylodiscitis is the main cause of acute back pain in this patient. A possible mechanism may be the pro-inflammatory effects of calcium pyrophosphate or hydroxyapatite crystal deposition within the epidural space.

Acute Disease↗

Radiographic and histologic patterns of calcification in chondromyxoid fibroma.

OBJECTIVE: To evaluate the frequency of radiologic and histologic manifestations of matrix calcification in chondromyxoid fibromas. PATIENTS: Forty-four cases of chondromyxoid fibroma were reviewed. The age range of the patients was 3-70 years (average 29 years). RESULTS: Calcification was found microscopically in 15 cases (34.1%). In five cases (12.5%) it was demonstrated on plain films or CT. The age range of the patients with microscopic evidence of calcified matrix was 14-70 years (mean 46 years), while that of the patients with non-calcified lesions was 3-59 years (average 21 years). All but two of the patients who showed microscopic calcification in the tumors were over 40 years of age. Four microscopic patterns of calcification were observed: coarse granular, circumscribed, trabecular, and "chicken-wire." CONCLUSIONS: Calcification in chondromyxoid fibroma was found more frequently than in previously reported studies. There was a tendency for this phenomenon to occur in the tumors of older patients, particularly those over 40 years old, and in chondromyxoid fibromas situated in flat bones, including ribs.

Adolescent↗

Spiral CT quantification of aorto-renal calcification and its use in the detection of atheromatous renal artery stenosis: A study in 42 patients.

PURPOSE: To investigate whether a correlation exists between aortic and renal arterial calcifications detected with spiral CT and significant angiographic renal artery stenosis (RAS). METHODS: Forty-two patients (mean age 67 years, range 37-84 years), of whom 24 were hypertensive, prospectively underwent abdominal helical CT and aortic and renal arteriography. The 3-mm thickness CT scans (pitch = 1) were reconstructed each millimeter. A manual outline of the renal artery including its ostial portion was produced. Calcific hyperdensities were defined as areas of density more than 130 HU. CT data were compared with the presence or absence of RAS on angiography (24 cases); hypertension and age were taken into account (Mann-Whitney U-test). RESULTS: CT detection and quantification appeared to be reliable and reproducible. We did not find any correlation between aortic and renal arterial calcifications and RAS, even for the patients above 65 years, with or without hypertension. There was no correlation either between calcifications and hypertension in patients without RAS. CONCLUSION: In this population, aortic and renal arterial calcifications have no predictive value for RAS.

Aged↗

Paraffin tissue block radiography of nonpalpable lesions with calcifications detected at mammography: 5-year consecutive series of surgically excised cases.

The objective of our study was to evaluate paraffin tissue block radiography following biopsy for breast calcifications at a center for population-based mammography screening. During a 5-year period, we radiographed tissue blocks from 259 breast specimens excised because of nonpalpable calcifications. A total of 124 cases were examined retrospectively and 135 cases were examined prospectively. In 34 of 94 (36 %) retrospectively examined cases with calcifications, the histopathological diagnosis was ductal cancer in situ with or without invasive cancer, compared with 3 of 30 (10 %) cases without calcifications. In 6 cases a primary benign histopathological diagnosis was changed to malignant due to the use of tissue block radiography. Tissue block radiography is a valuable adjunctive method to assure that areas containing calcifications are examined by histopathology.

Breast↗

The effect of ethylenediaminetetraacetic acid on calcific degeneration in bovine pericardium.

Calcification is the most frequent cause of the clinical failure of bovine pericardium bioprosthetic valves, preventing their widespread application for surgical treatment. The aim of this study was to minimize calcific degeneration in bovine pericardium by using a chelating agent, ethylenediaminetetraacetic acid (EDTA). Freshly excised bovine pericardium was dissected free from adhering fat tissue and cut into 1-cm(2) pieces that were rinsed in phosphate-buffered saline solution (PBS) and transferred into 4 degrees C PBS containing 1% glutaraldehyde (GA) for initial fixation, then allocated into two groups. Group I received the same treatment in a fresh solution for 5 more days. Group II underwent an additional fixation step in PBS solution (pH 7.4, 37 degrees C) containing 11% EDTA for a period of 48 h (30 ml/g tissue) and was then transferred into freshly prepared PBS + 1% GA solution at 37 degrees C for another 3 days. To investigate the calcification rate, pericardial patches were inserted into the dorsal pouches of 25 male Wistar rats for 21 days. Calcium levels were measured with an atomic absorption spectrophotometer and examined histo-pathologically. The calcium content of EDTA-treated pericardium (Group II), 21 +/- 3.8 microg/mg, was significantly lower than that of Group I, 43.3 +/- 9.2 microg/mg. Assessment of the degree of calcification in the histological sections generally agreed well with the results of the chemical analyses. Calcium deposition in Group I samples were found to be solid mineral depositions, whereas in the Group II pericardial samples, only smaller traces of calcium were found. Calcific degeneration in bovine pericardium can be reduced by using chelates such as EDTA.

Animals↗

Effects of adrenomedullin on vascular calcification in rats.

OBJECTIVE: The aim of the present study was to investigate the effect of adrenomedullin (ADM) on vascular calcification. METHODS: The vascular calcification model was established in rats (VND group) by using vitamin D3 (300,000 IU/kg) and nicotine (25 mg/kg, two doses). The effect of liposome-encapsulated ADM was observed. Vascular calcium content, alkaline phosphatase (ALP) activity, ADM in aortic tissue and plasma, binding ability of 125I-ADM for ADM receptor on vascular plasma membrane and content of cAMP in vessels were measured. RESULTS: Compared with control rats, the aortic calcium content and vascular ALP activity in rats of the VDN group was obviously increased; in addition ADM concentrations in plasma and vessels of rats in VDN group were increased. But the maximum binding sites of 125I-ADM for ADM receptor (Bmax) on vascular plasma membrane in rats of VDN group were significantly decreased compared with control rats. The affinity of 125I-ADM for the ADM receptor was reduced, as shown by the Kd value and vascular cAMP content being reduced in rats of the VDN group compared to the control group. The in vitro response of isolated vessels to ADM incubation was weakened. Administration of empty liposome had no effect on vascular calcification. But administration of ADM significantly decreased vascular calcium content and ALP activity. The Bmax of 125I-ADM for ADM receptors on vascular plasma membrane increased by 17.7% (p < 0.01), and the value of Kd decreased by 36.2% (P < 0.01) in rats treated with ADM as compared with rats of the VDN group. In addition, the vascular cAMP content and the response to ADM in isolated aorta were markedly increased. CONCLUSION: Vascular calcification induced an alteration of the vascular ADM-ADM receptor-cAMP pathway. Treatment with exogenous ADM inhibited vascular calcification by improving the vascular ADM-ADM receptor-cAMP pathway.

Adrenomedullin↗

Coronary calcification: insights from sudden coronary death victims.

We studied 108 cases of sudden coronary death at autopsy. Any calcification was present in 55% of men and women under 40 years; all hearts showed some calcification by age 50 in men, and by age 60 in women. The only risk factor independently associated with increased calcification was diabetes mellitus, in women only. The degree of calcification was greatest for acute and healed plaque ruptures, and the least for plaque erosion. Calcification in coronary atherosclerosis appears to be delayed in women, is greatest in women diabetics, and is associated with one type of plaque instability, namely plaque rupture.

Adult↗

Cell differentiation in vascular calcification.

Ectopic tissue formation is commonly found in calcified atherosclerotic plaques. This suggests that cell differentiation plays an important role in vascular calcification, even though the origin of the cells involved is unclear. Calcifying vascular cells (CVCs), derived from bovine aortic media, have been used as an in vitro model for vascular calcification. CVCs have many characteristics in common with bone cells, but there are also differences suggesting mechanisms that may be applicable to the problem of osteoporosis in the setting of vascular calcification. Matrix GLA protein (MGP) deficient mice develop severe vascular calcification and die prematurely from heart failure and/or aortic rupture. The molecular mechanism of MGP is unknown. It has been hypothesized that MGP acts as a calcification inhibitor by binding calcium, preventing mineral deposition in extracellular fluids near the saturation point for calcium and phosphate. Alternatively, MGP expression may be an attempt to regulate cell differentiation in the vascular wall, possibly by acting as an inhibitor to a factor able to induce cartilage and bone such as bone morphogenetic proteins (BMPs).

Animals↗

Formation and transformation of calcium phosphates: relevance to vascular calcification.

Only one phase, carbonate apatite, is present in the mineral phase of normal calcification while different calcium phosphate phases are found in the mineral phases of pathological calcifications. In vascular calcification, the mineral phase has been described as hydroxyapatite; carbonate apatite, amorphous calcium phosphate. It has also been speculated that octacalcium phosphate may be a precursor for the apatite. This paper provides a brief review of: (1) the different calcium phosphates in normal and pathological calcifications; (2) the conditions for the formation and transformation of biologically relevant calcium phosphates in synthetic systems and a concise discussion on the relevance of results from synthetic systems to the calcium phosphate phase(s) involved in vascular calcification.

Apatites↗

Ectopic calcification: new concepts in cellular regulation.

Ectopic calcification is a common response to soft tissue injury and systemic mineral imbalance, and can lead to devastating clinical consequences when present in heart valves or blood vessels. It is hypothesized that mesenchymal and inflammatory cells normally maintain the balance between procalcific and anti-calcific regulatory proteins in soft tissues such that ectopic deposition of apatite is avoided. Alterations in this balance induced by injury or disease is postulated to induce ectopic apatite deposition. We have developed in vitro and in vivo models of ectopic calcification and found that: 1) elevated extracellular phosphate levels induce smooth muscle culture mineralization morphologically similar to that observed in calcified human valves and atherosclerotic plaques, 2) sodium-dependent phosphate cotransporter function is required for smooth muscle cell culture mineralization, 3) smooth muscle cell culture mineralization is associated with a dramatic loss of smooth muscle-specific gene expression and gain of osteoblast-like properties, including expression of osteoblast differentiation factor, Cbfa-1, and 4) osteopontin, a secreted phosphoprotein abundant in macrophages found in human calcified atherosclerotic and valvular lesions, is a potent inhibitor of ectopic calcification in vitro and in vivo. These studies suggest that both constitutively expressed (surveillance) and inducible (damage control) mineralization inhibitory molecules are produced by mesenchymal and inflammatory cells to control ectopic calcification.

Apatites↗

Radiation-induced brain calcification: paradoxical high signal intensity in T1-weighted MR images.

BACKGROUND: Irradiation to the central nervous system (CNS) in childhood is known to induce cerebral calcification after a latent period. Calcification has been generally found to show nil or a reduction in signal intensity in magnetic resonance (MR) images. However, we have studied three patients with radiation-induced brain calcification, who manifested increased signal intensity on T1-weighted MR images. METHOD: Three girls had each been diagnosed as having a suprasellar germ cell tumour and were treated with conventional fractionated radiotherapy in their childhood. In one case, chemotherapy was given prior to the CNS irradiation. FINDINGS: All three patients survived their disease, and a follow-up CT scan revealed calcification in the brain, which has shown an increased signal intensity in the T1-weighted images of MR. INTERPRETATION: Cerebral calcification may be presented as a high signal intensity in the T1-weighted MR images. This may be explained by a surface-relaxation effect by the calcium salt particle, precipitated in the brain due to radiation-induced mineralising microangiopathy.

Adolescent↗

Efficacy of extracorporal shock-wave treatment for calcific tendinitis of the shoulder: experimental and clinical results.

The effects of various extracorporal shock wave energy levels and impulse rates were investigated using an in vitro model. In addition, we performed a controlled, randomized study to examine the clinical outcome after treatment for calcific tendinitis of the shoulder. Two groups of 40 patients each received 2000 impulses twice with an energy flux density of 0.23 mJ/mm(2) and then 0.42 mJ/mm(2). The results were evaluated by the Constant and Murley score. Disintegration of the implanted deposits requires an energy of at least 0.42 mJ/mm(2) and 2000 impulses. The clinical trial showed resorption of calcific deposits in 37.5% (0.23 mJ/mm(2)) and 55.0% (0.42 mJ/mm(2)). After 1 year the Constant and Murley score increased from 46 to 68 at 0.23 mJ/mm(2) and from 48 to 73 points at 0.42 mJ/mm(2). Based on our experimental and clinical results it is evident that disintegration of calcific deposits is dose-dependent. Because of the time that elapses until changes became evident on the radiographs, an instant and sole mechanical effect on the calcific deposits is unlikely. Therefore, a combined mechanical and cellular mechanism for absorption of the calcific deposits must be presumed.

Adult↗

Porcelain heart: a case of massive myocardial calcification.

Reports of massive myocardial calcification are limited mainly to case reports and this type intracardiac calcifications have been usually identified postmortem. We present a very interesting case of massive calcification of the left ventricular myocardium, interventricular and interatrial septae causing restrictive physiology and coronary artery obstruction in a 46-year-old Turkish woman. The diagnosis of myocardial calcification was suspected from chest X-ray and confirmed with computerized tomography and cardiac catheterization. The findings of the chest computed tomography were very similar to those previously reported cases of endomyocardial fibrosis (EMF) with massive calcification of the left ventricle.

Calcinosis↗

Early disappearance of calcification in posterior paraspinal muscles in a patient with rhabdomyolysis associated with neuroleptic malignant syndrome.

We report computed tomography (CT) findings that demonstrated early disappearance of ectopic calcification in the bilateral posterior paraspinal muscles in a patient with rhabdomyolysis. A 37-year-old man with acute renal failure due to rhabdomyolysis caused by neuroleptic malignant syndrome underwent studies with CT and bone scintigraphy. First, bone scintigraphy showed high radiotracer uptake in bilateral posterior paraspinal muscles; then CT demonstrated ectopic calcification in those muscles. After 2.5 months, CT showed that the calcification had completely disappeared. Bone scintigraphy anticipated calcification, and CT demonstrated a unique course of early disappearance of the calcification.

Acute Kidney Injury↗

Calcific aortic insufficiency--a review of 26 patients.

Twenty-six patients, 8.3 per cent of all patients with aortic valve disease, and 10.7 per cent of all patients with any degree of aortic insufficiency detected in our catheterization laboratory, had pure calcific aortic insufficiency (no associated stenosis). Nineteen (73 per cent) males and seven (27 per cent) females ranged in age from 25 to 75 years of age (mean 51). Twenty-three per cent were younger than 40. Sixteen (62 per cent) had rheumatic heart disease, one had luetic aortic valve disease, one had congenital bicuspid valve, and eight (31 per cent) had aortic insufficiency of undetermined etiology. Twenty-three patients (89 per cent) had an aortic systolic ejection murmur, and seven (28 per cent) had an aortic ejection click. Aortic valve calcification was detected by plain chest films in only four patients (16 per cent), and by routine image intensification fluoroscopy (before catheterization) in fifteen patients (68 per cent). The reamining 32 per cent had the calcification of the aortic valve detected during catheterization. Aortic valve calcification was severe in nine patients (35 per cent), moderate in eleven patients (42 per cent), and minimal in six patients (22 per cent). Aortic insufficiency was severe in twenty patients (77 per cent), moderate in five patients (19 per cent), and minimal in one patient (4 per cent). Nineteen patients (77 per cent) had reduced left ventricular contractility. Sixteen patients (67 per cent) had low cardiac index. Eighteen patients had obstructive coronary artery disease. Aortic stenosis was misdiagnosed as the predominant lesion in fourteen patients (54 per cent)--prior to catheterization. This series demonstrates that all patients with calcified aortic valve disease and with ejection murmurs do not necessarily have aortic stenosis. Pure calcific aortic insufficiency is a distinct entity, more common than previously suspected.

Adult↗