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peripheral arterial disease/phosphatase

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Dual specificity phosphatase 5 regulates perfusion recovery in experimental peripheral artery disease.

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Peripheral artery disease (PAD) is caused by atherosclerotic occlusions of vessels outside the heart, particularly those of the lower extremities. Angiogenesis is one critical physiological response to vessel occlusion in PAD, but our understanding of the molecular mechanisms involved in
BACKGROUND Alkaline phosphatase (ALP) is elevated in peripheral arterial disease (PAD). We therefore examined the relationship of PAD with ALP and other liver enzymes in the United States National Health and Nutrition Examination Survey 1999-2004. METHODS The analysis included 5995 men and

Let's think in alkaline phosphatase at heart function.

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In their recent paper, Cheung et al [B.M. Cheung, K.L. Ong, L.Y. Wong, Elevated serum alkaline phosphatase and peripheral arterial disease in the United States National Health and Nutrition Examination Survey 1999-2004. Int J Cardiol 2008 (Electronic publication ahead of print)] described a

Hypovitaminosis D, impaired bone turnover and low bone mass are common in patients with peripheral arterial disease.

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Hypovitaminosis D is common in patients with peripheral arterial disease (PAD). Subsequent secondary hyperparathyroidism and osteomalacia contribute to bone pain and myalgias, and so aggravate clinical symptoms of claudication. We evaluated 95 out of 297 patients with angiographically confirmed PAD

Increased Bone Resorption: A Possible Pathophysiological Link Between Hypovitaminosis D and Peripheral Arterial Disease.

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Vitamin D deficiency has been associated with the prevalence and severity of peripheral arterial disease (PAD); nevertheless, data on bone turnover in patients with PAD is lacking. The present study investigates a possible relationship between the markers of bone turnover and the presence and
The risk of peripheral arterial disease (PAD) is higher in patients with chronic kidney disease (CKD) compared with those without. However, reasons for this increased risk are not fully understood. We studied risk factors for incident PAD among 3169 participants in the Chronic Renal Insufficiency
OBJECTIVE To investigate via the vitamin D status whether patients with peripheral arterial disease (PAD) tend to develop vitamin D deficiency that in turn influences their clinical symptoms. METHODS Cross-sectional. METHODS University hospital. METHODS Three hundred twenty-seven patients were
BACKGROUND Peripheral arterial disease (PAD) is a severe atherosclerotic condition frequently accompanied by inflammation and oxidative stress. We hypothesized that vitamin C antioxidant levels might be low in PAD and are related to inflammation and disease severity. RESULTS We investigated vitamin

OBJECTIVE
The recessive disease arterial calcification due to deficiency of CD73 (ACDC) presents with extensive nonatherosclerotic medial layer calcification in lower extremity arteries. Lack of CD73 induces a concomitant increase in TNAP (tissue nonspecific alkaline phosphatase;

Angiogenic properties of human placenta-derived adherent cells and efficacy in hindlimb ischemia.

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Human placenta-derived adherent cells (PDACs) are a culture-expanded, undifferentiated mesenchymal-like population from full-term placental tissue and were previously shown to possess anti-inflammatory and immunomodulatory properties. PDACs (formulated as PDA-002) are in clinical trials for
Ischemia caused by narrowing of femoral artery is a major cause of peripheral arterial disease and morbidity affecting patients with diabetes mellitus. We have previously reported that the inhibition of the angiogenic response to VEGF (vascular endothelial growth factor) in diabetic mice was

Role of homocysteine in aortic calcification and osteogenic cell differentiation.

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BACKGROUND The role of homocysteine in atherosclerosis is unclear. We examined the relationship between plasma homocysteine and infrarenal aortic calcification, the presence of homocysteine in human atheroma and the influence of homocysteine on osteogenic differentiation in vitro. RESULTS In 194

The Role of Angiogenic Inducing microRNAs in Vascular Tissue Engineering

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Angiogenesis is an important process in tissue repair and regeneration as blood vessels are integral to supply nutrients to a functioning tissue. In this review, the application of microRNAs (miRNAs) or anti-microRNAs (anti-miRNAs) that can induce angiogenesis to aid in blood vessel formation for

Bone mineral density in type 2 diabetes patients with Charcot arthropathy.

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BACKGROUND Charcot arthropathy is one of the disabling diabetes complications. There are enigmatic areas concerning its underlying pathophysiology and risk predictors. Osteoporosis and local osteopenia has been postulated to have a role in Charcot arthropathy development, but it is still

Bone markers predict cardiovascular events in chronic kidney disease.

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Recent studies have indicated a link between bone metabolism and cardiovascular events in patients with chronic kidney disease (CKD). CKD is a major health problem worldwide. This study evaluates the role of noninvasive markers of bone metabolism in predicting cardiovascular morbidity (coronary
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