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Andrea Dovio

Publications and source records attributed to Andrea Dovio.

9 recordsLinked to original sources

The circadian rhythm of biochemical markers of bone resorption is normally synchronized in breast cancer patients with bone lytic metastases independently of tumor load.

BACKGROUND: Bone metastases are devastating events resulting in disruption of local bone remodeling processes. Physiological bone turnover has a circadian rhythm. No data are available on the circadian pattern of bone turnover markers in patients with bone metastases. METHODS: Twenty post-menopausal women with breast cancer (BC) at first disease relapse and at least one bone metastasis were consecutively recruited. Twenty healthy women served as controls. Patients were free from concomitant chemotherapy/endocrine therapy. Throughout a 24-h period, urine samples were collected at 4-h intervals, and blood samples were collected at 4-h intervals between 08:00 and 24:00, and at 2-h intervals between 24:00 and 08:00. Serum osteocalcin (OC), total and bone-alkaline phosphatase (tALP and bALP, respectively) and C-terminal telopeptide of type I collagen (CTX), and urinary NTX and free deoxypyridinoline (fDPD) were measured together with serum parathyroid hormone (PTH) and serum and urinary calcium and phosphorus. Temporal variations of measured analytes were assessed by ANOVA and the COSINOR model. RESULTS: At 08:00, patients had higher levels of bone resorption indices (NTX, CTX and fDPD) than controls (p<0.0001). tALP and bALP, but not OC, were higher in patients than controls (p<0.001). PTH, serum and urinary calcium and urinary phosphorus did not differ between groups; serum phosphorus was higher in controls (p<0.0001). A circadian rhythm was evident for CTX and fDPD values in both patients and controls. A circadian rhythm in NTX, OC, phosphorus and PTH was apparent in controls only. However, it was detected also in patients when percent changes from MESOR were considered. Serum phosphorus showed a circadian rhythm, while no rhythm was detected for tALP, bALP, serum and urinary calcium. The rhythmicities in cancer patients were normally synchronized, and rhythmic parameters were independent of tumor load in the skeleton, age and menopausal status. CONCLUSIONS: This is the first study to yield information on the maintenance of the temporal program of bone turnover in bone metastatic cancer patients. Whether administration of bisphosphonates in the nighttime leads to a different outcome with respect to the current administration in the morning is a matter of future research.

Adult↗

High prevalence of asymptomatic vertebral fractures in post-menopausal women receiving chronic glucocorticoid therapy: a cross-sectional outpatient study.

Glucocorticoid (GC)-induced osteoporosis mostly affects trabecular bone of vertebrae. Only 30% of vertebral fractures are symptomatic, yet both clinical and radiological vertebral fractures have been associated with increased mortality and morbidity. The aims of this cross-sectional, outpatient-based study were to measure the prevalence of asymptomatic vertebral fractures in a large sample of post-menopausal women given GCs for different diseases; to compare prevalence of asymptomatic vertebral fractures according to disease, GC treatment and major risk factors; and to assess the quality of life in GC users with and without asymptomatic vertebral fractures. 551 patients referring to 39 centers as outpatients for their programmed follow-up and satisfying the inclusion criteria were included in the analysis. Each patient underwent structured medical interview (including dose and duration of GC therapy, major risk factors for osteoporosis, the quality of life questionnaire of the European Foundation for Osteoporosis (QUALEFFO) and a back function score questionnaire), thoraco-lumbar radiographs and subsequent morphometry; for 253 and 437 patients, respectively, lumbar spine bone mineral density (BMD) assessed by dual energy X-ray absorptiometry and calcaneal bone stiffness assessed by quantitative ultrasonometry were available. The prevalence of asymptomatic vertebral fractures resulted >37%, with >14% of patients having two or more asymptomatic vertebral fractures and was much higher than that found in epidemiological studies on healthy women. Distribution of asymptomatic vertebral fractures along the spine showed a bimodal pattern, with two peaks at T7 and T11. The prevalence of asymptomatic vertebral fractures clearly increased with age. Differences in prevalence among diseases were evidenced. When controlled for age, GC cumulative dose, duration of therapy and personal history of fractures, the adjusted prevalences were 30.77% for systemic lupus erythematosus, 33.78% for rheumatoid arthritis, 37.78% for asthma/chronic obstructive pulmonary disease, 43.20% for polymyalgia rheumatica and 43.36% for diseases grouped as "other vasculitides/connective tissue diseases". No significant association was found with GC cumulative dose and duration of therapy. Established risk factors for osteoporosis (except for age, years since menopause and personal history of fractures), lumbar spine BMD, calcaneal stiffness and QUALEFFO score were not associated with number and severity of asymptomatic vertebral fractures. Underlying disease is likely to contribute to the risk of fracture, but disease by itself could not be dissected from GC regimen. Vertebral fractures should be looked for carefully in all post-menopausal women receiving long-term systemic GCs since they can be asymptomatic and are scarcely predictable.

Absorptiometry, Photon↗

High-dose glucocorticoids increase serum levels of soluble IL-6 receptor alpha and its ratio to soluble gp130: an additional mechanism for early increased bone resorption.

OBJECTIVE: Glucocorticoids (GCs) at pharmacological doses stimulate bone resorption. Mechanisms of this action are unclear. The osteoclastogenic cytokine interleukin (IL)-6 acts through an oligomeric receptor consisting of two subunits, gp80 (or IL-6 receptor alpha, IL-6Ralpha) and gp130; both exist in membrane and soluble forms. Soluble IL-6Ralpha (sIL-6Ralpha) enhances, while sgp130 inhibits IL-6 signalling. In vitro, GCs enhance many effects of IL-6 by up-regulation of IL-6Ralpha. The aim of the present study was to assess acute changes of IL-6 system in the peripheral blood of patients given high-dose GCs. SUBJECTS AND METHODS: Serum levels of IL-6, sIL-6Ralpha, sgp130 and bone turnover markers were assessed before and each day during treatment in 24 multiple sclerosis (MS) patients undergoing high-dose (prednisolone, 15 mg/kg per day), short-term (3 to 5 days) intravenous GC therapy for relapse at the Regional Multiple Sclerosis Centre. RESULTS: An immediate and marked fall of osteocalcin and an early increase of C-terminal telopeptide of type I collagen were already noticed at day 2 (P < 0.001 and P < 0.02, respectively); both became more apparent in the subsequent days. IL-6 was always below or near the detection limit of our ELISA. sgp130 showed a slight increase. sIL-6Ralpha significantly increased, peaking at day 4 (P < 0.01). However, inter-individual variability of response was noticed. Four patients showed a slight decrease, while no change was observed in one patient and an increase was noticed in the remaining nineteen (maximum change ranging from +10% to +67% with respect to baseline). In these patients, a significant increase of sIL-6Ralpha/sgp130 ratio was apparent. No correlation was found between bone turnover markers and any measured component of the IL-6 system. CONCLUSIONS: sIL-6Ralpha and sIL-6Ralpha/sgp130 ratio are precociously increased in the peripheral blood of the vast majority of patients given high-dose, intravenous GCs. The increase of systemically available sIL-6Ralpha conceivably results in the enhancement of IL-6-dependent osteoclastogenesis. The role of such a mechanism in the bone loss observed in inflammatory and immune-mediated diseases (where abundancy of IL-6 in the bone microenvironment is expected) requires further investigation.

Adult↗

Immediate fall of bone formation and transient increase of bone resorption in the course of high-dose, short-term glucocorticoid therapy in young patients with multiple sclerosis.

Glucocorticoid (GC)-induced osteoporosis is the leading form of secondary osteoporosis. Bone loss can be rapid. However, longitudinal studies at the very beginning of treatment are scarce. Patients relapsing from multiple sclerosis are treated with high-dose, short-term iv GCs. A number of them are young, without concomitant disease affecting bone and with no substantial impairment of mobility. Such patients were selected for the present study. Thirteen patients suffering from multiple sclerosis [11 females, two males; age 32 +/- 2 yr (mean +/- se)] and receiving iv methylprednisolone 15 mg/kg daily for 10 d completed the study. We measured serum osteocalcin (OC), aminoterminal propeptide of type I collagen (PINP), bone isoform of alkaline phosphatase (bALP), carboxyterminal telopeptide of type I collagen (CTX), and urinary calcium/creatinine ratio (uCa/Cr) during the 10-d cycle and 3 months later. Dual-energy x-ray absorptiometry and calcaneal quantitative ultrasonometry were performed before and 6 months after therapy. We found an immediate, impressive fall of OC and PINP (-80 +/- 3 and -54 +/- 5% at d 2, respectively), which persisted throughout the whole treatment period (P < 0.0001 for both markers). bALP levels showed only a modest decrease at d 6 (-19 +/- 7%, P < 0.05), with subsequent return to baseline in d 7-10. After 3 months, OC, PINP, and bALP levels rose to +51 +/- 22, +37 +/- 16 (not significant), and +61 +/- 17% (P < 0.01) with respect to baseline, respectively. uCa/Cr and CTX showed a progressive, marked increase during treatment, peaking at d 7-9 (+92 +/- 44 and +149 +/- 63%, respectively), with subsequent decrement at d 10 (P < 0.01 and P < 0.05, respectively) despite continuing GC administration. After 3 months, uCa/Cr and CTX levels were also higher than baseline. No change in quantitative ultrasonometry parameters and bone mineral density was observed 6 months after therapy. In conclusion, high-dose, short-term iv GC regimens cause an immediate and persistent decrease in bone formation and a rapid and transient increase of bone resorption. Our data also support the concept that discontinuation of such regimens is followed by a high bone turnover phase.

Absorptiometry, Photon↗

Mental deterioration correlates with response of natural killer (NK) cell activity to physiological modifiers in patients with short history of Alzheimer's disease.

Natural killer (NK) cell activity of peripheral blood mononuclear (PBM) cells was measured in 16 subjects with mild to moderate senile dementia of Alzheimer's type (sDAT) chosen for short history of disease and no medication, and in 17 age- and sex-matched controls. Levels of cytotoxicity at baseline and after PBM cell exposure to modifiers either negative (cortisol 10(-6) M) or positive (rIL-2 650 IU/ml and rIFN-gamma 100 UI/ml, respectively) were related to indices of hypothalamic-pituitary-adrenal (HPA) function and Gottfries Bråne Rating Scale (GBS) score for mental deterioration. Spontaneous NK cell activity was not significantly different in sDAT subjects vs controls. In vitro inhibition by cortisol was lower in sDAT (P<0.05); cytokine-induced changes were greater (rIL-2, P<0.02; rIFN-gamma, P<0.05). Percent negative or positive variations from baseline significantly correlated with GBS scores (P<0.05 or less). Serum cortisol and cortisol/DHEAS molar ratio at 0800 h were significantly higher in sDAT (P<0.05 and P<0.02, respectively). Cortisol/DHEA ratio positively correlated with GBS scores (P<0.02). Moreover, the ratios of incremental area of response ACTH/cortisol and beta-endorphin/cortisol after 1 microg/kg ovine-corticotrophin-releasing hormone (o-CRH) positively correlated with percent increase of NK cell activity after rIL-2 (P<0.01). Data indicate that patients with mild cognitive impairment and short history of sDAT show abnormal responsiveness of NK cell activity to physiological modifiers while maintaining normal spontaneous activity. Furthermore, data are compatible with partial glucocorticoid resistance at the immune level. Progressing sDAT longitudinal studies are needed to address: i) the clinical applicability of these abnormalities as prognostic factors; ii) the role played by pro-opiomelanocortin (POMC)-derived peptides and adrenal androgens in the control of NK cell activity.

Aged↗

Psychoneuroimmunology: new avenues of research for the twenty-first century.

Psychoneuroimmunology (PNI) investigates the relations between the psychophysiological and immunophysiological dimensions of living beings. PNI brings together researchers in a number of scientific and medical disciplines, including psychology, the neurosciences, immunology, physiology, pharmacology, psychiatry, behavioral medicine, infectious diseases, and rheumatology. All are scientists with profound interest in interactions between the nervous and immune systems, and the relation between behavior and health. Despite the variety in domains and approaches to research, the outcome common to all research endeavors is the discovery of new information, of uncovered facts, of novel evidence, which contributes to the continuing generation of knowledge. In this paper we discuss psychoneuroimmune aspects of some conditions that are not routinely immediately associated with immunity, such as the condition of being the caregiver of somebody suffering from dementia; the effect on the brain-body modulations of aluminum, a metal that is not a component of the human body; and insomnia, a fairly common but disturbing disease, that even today lacks an effectual treatment.

Aluminum↗

[Pathophysiological significance and clinical utility of circulating osteoprotegerin].

Osteoprotegerin (OPG) belongs to the tumor necrosis factor receptor superfamily and acts as a decoy receptor for the receptor activator of NF-kappaB ligand (RANKL), preventing its binding to RANK. Since 1997, the RANKL/RANK/OPG system has been intensively investigated in the fields of bone, immune and cardiovascular system pathophysiology. Specific anti-OPG antibodies have been developed, allowing for the measurement of OPG and, more recently, of soluble RANKL in both physiological and pathological conditions, often yielding unexpected results. When considering circulating OPG measurements, it should be borne in mind that this receptor is ubiquitously expressed, and that circulating levels do reflect the production by a number of tissues. Moreover, strikingly different values of circulating OPG have been reported. The aim of this paper is to summarize the available data on circulating OPG levels in a number of conditions; the pathophysiological significance and potential clinical utility will be emphasized.

Adult↗