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Sutada Lotinun Glenda L Evans James T Bronk Mark E Bolander Thomas J Wronski Erik L Ritman Russell T Turner 《Journal of bone and mineral research》2004,19(7):1165-1171
We examined the time course effects of continuous PTH on cortical bone and mechanical properties. PTH increased cortical bone turnover and induced intracortical porosity with no deleterious effect on bone strength. Withdrawal of PTH increased maximum torque to failure and stiffness with no change in energy absorbed. INTRODUCTION: The skeletal response of cortical bone to parathyroid hormone (PTH) is complex and species dependent. Intermittent administration of PTH to rats increases periosteal and endocortical bone formation but has no known effects on intracortical bone turnover. The effects of continuous PTH on cortical bone are not clearly established. MATERIALS AND METHODS: Eighty-four 6-month-old female Sprague-Dawley rats were divided into three control, six PTH, and two PTH withdrawal (WD) groups. They were subcutaneously implanted with osmotic pumps loaded with vehicle or 40 microg/kg BW/day human PTH(1-34) for 1, 3, 5, 7, 14, and 28 days. After 7 days, PTH was withdrawn from two groups of animals for 7 (7d-PTH/7d-WD) and 21 days (7d-PTH/21d-WD). Histomorphometry was performed on periosteal and endocortical surfaces of the tibial diaphysis in all groups. microCT of tibias and mechanical testing by torsion of femora were performed on 28d-PTH and 7d-PTH/21d-WD animals. RESULTS AND CONCLUSIONS: Continuous PTH increased periosteal and endocortical bone formation, endocortical osteoclast perimeter, and cortical porosity in a time-dependent manner, but did not change the mechanical properties of the femur, possibly because of addition of new bone onto periosteal and endocortical surfaces. Additionally, withdrawal of PTH restored normal cortical porosity and increased maximum torque to failure and stiffness. We conclude that continuous administration of PTH increased cortical porosity in rats without having a detrimental effect on bone mechanical properties. 相似文献
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Extradural sacral (caudal) block was performed in 17 cases (14 patients) of chronic low back pain. In each case 22 ml of a bupivacaine/methylprednisolone solution incorporating a radioopaque dye was injected over a 2-min period. Patients were randomly assigned to receive the injection in the horizontal position or with 15 degrees head-up or head-down tilt applied to the operating table. Results indicate that analgesia is usually more localised than spread of solution determined by x-ray evidence and that higher levels of analgesia are achieved in patients in the head-up position. Possible causes are the differing distribution characteristics of the constituents of the solution and the gravitational effects of posture on cerebrospinal fluid mechanics. Technical problems associated with obesity, congenital abnormalities, vascular uptake of solution, and delayed spread of the injectant due to adhesions are discussed. 相似文献
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Strategies for treating pediatric malignancies have not only been successful (i.e., curative) for several disseminated childhood cancers, they have also served as paradigms for the therapy of many adult cancers. Initial strategies included combined treatment modalities (chemotherapy, surgery, radiotherapy) and combinations of different pharmacologic classes of anticancer drugs given in the appropriate schedules. Despite the currently successful therapy for some malignancies (e.g., 70% 4-year disease-free survival in acute lymphocytic leukemia), many children die without known reason. Recent advances in the clinical pharmacology of anticancer drugs have identified relationships between dose intensity and response (efficacy, toxicity). Traditional methods of measuring dose intensity (prescribed dose) have evolved to more sophisticated approaches in maximizing the intensity of treatment, with good response rates. Other methods of optimizing chemotherapy for individual patients include bone marrow support procedures and therapy with biologic response modifiers. Relatively few clinically useful new anticancer drugs have been discovered in the past several years. Fortunately, the potential to improve therapy with currently available agents has come about through enhanced knowledge of the biochemical and clinical pharmacology of anticancer drugs and biologic response modifiers, as well as improved understanding drug resistance biology. 相似文献