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101.
102.

Background

Progesterone is effective treatment for hot flushes/night sweats. The cardiovascular effects of progesterone therapy are unknown but evidence suggests that premenopausal normal estradiol with also normal progesterone levels may provide later cardiovascular protection. We compared the effects of progesterone to placebo on endothelial function, weight, blood pressure, metabolism, lipids, inflammation and coagulation.

Methods and Results

We conducted a randomized, double-blind, 3-month placebo-controlled trial of progesterone (300 mg daily) among 133 healthy postmenopausal women in Vancouver, Canada from 2003–2009. Endothelial function by venous occlusion plethysmography was a planned primary outcome. Enrolled women were 1–11 y since last menstruation, not using hormones (for >6 months), non-smoking, without diabetes, hypertension, heart disease or their medications. Randomized (1∶1) women (55±4 years, body mass index 25±3) initially had normal blood pressure, fasting lipid, glucose and electrocardiogram results. Endothelial function (% forearm blood flow above saline) was not changed with progesterone (487±189%, n = 18) compared with placebo (408±278%, n = 16) (95% CI diff [−74 to 232], P = 0.30). Progesterone (n = 65) and placebo (n = 47) groups had similar changes in systolic and diastolic blood pressure, resting heart rate, weight, body mass index, waist circumference, total cholesterol, low-density lipoprotein cholesterol and triglyceride levels. High-density lipoprotein was lower (−0.14 mmol/L, P = 0.001) on progesterone compared with placebo. Fasting glucose, hs-C-reactive protein, albumin and D-dimer changes were all comparable to placebo. Framingham General Cardiovascular Risk Profile scores were initially low and remained low with progesterone therapy and not statistically different from placebo.

Conclusions

Results indicate that progesterone has short-term cardiovascular safety. Endothelial function, weight, blood pressure, waist circumference, inflammation and coagulation were unchanged as were lipids except for HDL-C. The statistically significant decrease in HDL-C levels was not clinically important (based on lack of Cardiovascular Risk Profile change).

Trial Registration

ClinicalTrials.gov NCT00152438  相似文献   
103.
Torbert  H. A.  Prior  S. A.  Rogers  H. H.  Wood  C. W. 《Plant and Soil》2000,224(1):59-73
A series of studies using major crops (cotton [Gossypium hirsutum L.], wheat [Triticum aestivum L.], grain sorghum [Sorghum bicolor (L.) Moench.] and soybean [Glycine max (L.) Merr.]) were reviewed to examine the impact of elevated atmospheric CO2 on crop residue decomposition within agro-ecosystems. Experiments evaluated utilized plant and soil material collected from CO2 study sites using Free Air CO2 Enrichment (FACE) and open top chambers (OTC). A incubation study of FACE residue revealed that CO2-induced changes in cotton residue composition could alter decomposition processes, with a decrease in N mineralization observed with FACE, which was dependent on plant organ and soil series. Incubation studies utilizing plant material grown in OTC considered CO2-induced changes in relation to quantity and quality of crop residue for two species, soybean and grain sorghum. As with cotton, N mineralization was reduced with elevated CO2 in both species, however, difference in both quantity and quality of residue impacted patterns of C mineralization. Over the short-term (14 d), little difference was observed for CO2 treatments in soybean, but C mineralization was reduced with elevated CO2 in grain sorghum. For longer incubation periods (60 d), a significant reduction in CO2-C mineralized per g of residue added was observed with the elevated atmospheric CO2 treatment in both crop species. Results from incubation studies agreed with those from the OTC field observations for both measurements of short-term CO2 efflux following spring tillage and the cumulative effect of elevated CO2 (> 2 years) in this study. Observations from field and laboratory studies indicate that with elevated atmospheric CO2, the rate of plant residue decomposition may be limited by N and the release of N from decomposing plant material may be slowed. This indicates that understanding N cycling as affected by elevated CO2 is fundamental to understanding the potential for soil C storage on a global scale. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   
104.
湖南省双季稻生产系统碳效率   总被引:2,自引:0,他引:2  
提高农作物生产系统的碳效率是实现低碳农业的重要途径之一.本文采用2004—2012年农作物产量、农田作物生产系统农资投入等统计数据,利用生命周期法和投入产出法,对湖南省双季稻生产系统碳排放、碳吸收和碳效率特征及其动态进行估算.结果表明:湖南省2004—2012年双季稻生产系统年均碳排放总量为656.4×107kg CE,其中化肥和农药生产运输碳排放占农资投入碳排放总量的大部分,分别约占70.0%和15.9%,碳排放总量年际间持续降低,年均降低率为2.4%,碳排放强度则表现为增长趋势;湖南双季稻生产系统2004—2012年年均碳吸收总量为1547.0×107kg C,也呈现逐年降低的趋势,年降低率为1.2%,单位面积稻田碳吸收强度则表现为增长趋势;碳生产效率呈现缓慢增加的趋势,碳经济效率随着年份递进增加幅度较大,年均增长率为9.9%,碳生态效率则表现为稳定且较低,保持在2.4kg C·kg-1CE左右.表明湖南近几年双季稻生产系统碳综合效率提高缓慢,降低肥料和农药的投入量,提高利用效率是提高双季稻生产系统碳效率的关键.  相似文献   
105.
The yeast Saccharomyces cerevisiae responds to osmotic stress, i.e., an increase in osmolarity of the growth medium, by enhanced production and intracellular accumulation of glycerol as a compatible solute. We have cloned a gene encoding the key enzyme of glycerol synthesis, the NADH-dependent cytosolic glycerol-3-phosphate dehydrogenase, and we named it GPD1. gpd1 delta mutants produced very little glycerol, and they were sensitive to osmotic stress. Thus, glycerol production is indeed essential for the growth of yeast cells during reduced water availability. hog1 delta mutants lacking a protein kinase involved in osmostress-induced signal transduction (the high-osmolarity glycerol response [HOG] pathway) failed to increase glycerol-3-phosphate dehydrogenase activity and mRNA levels when osmotic stress was imposed. Thus, expression of GPD1 is regulated through the HOG pathway. However, there may be Hog1-independent mechanisms mediating osmostress-induced glycerol accumulation, since a hog1 delta strain could still enhance its glycerol content, although less than the wild type. hog1 delta mutants are more sensitive to osmotic stress than isogenic gpd1 delta strains, and gpd1 delta hog1 delta double mutants are even more sensitive than either single mutant. Thus, the HOG pathway most probably has additional targets in the mechanism of adaptation to hypertonic medium.  相似文献   
106.
Xu J  Zheng HJ  Liu L  Pan ZC  Prior P  Tang B  Xu JS  Zhang H  Tian Q  Zhang LQ  Feng J 《Journal of bacteriology》2011,193(16):4261-4262
Ralstonia solanacearum strain Po82, a phylotype IIB/sequevar 4 strain, was found to be pathogenic to both solanaceous plants and banana. Here, we report the complete genome sequence of Po82 and its comparison with seven published R. solanacearum genomes.  相似文献   
107.
Platelets contribute to the development of metastasis, the most common cause of mortality in cancer patients, but the precise role that anti-platelet drugs play in cancer treatment is not defined. Metastatic tumor cells can produce platelet alphaIIb beta3 activators, such as ADP and thromboxane A(2) (TXA(2)). Inhibitors of platelet beta3 integrins decrease bone metastases in mice but are associated with significant bleeding. We examined the role of a novel soluble apyrase/ADPase, APT102, and an inhibitor of TXA(2) synthesis, acetylsalicylic acid (aspirin or ASA), in mouse models of experimental bone metastases. We found that treatment with ASA and APT102 in combination (ASA + APT102), but not either drug alone, significantly decreased breast cancer and melanoma bone metastases in mice with fewer bleeding complications than observed with alphaIIb beta3 inhibition. ASA + APT102 diminished tumor cell induced platelet aggregation but did not directly alter tumor cell viability. Notably, APT102 + ASA treatment did not affect initial tumor cell distribution and similar results were observed in beta3-/- mice. These results show that treatment with ASA + APT102 decreases bone metastases without significant bleeding complications. Anti-platelet drugs such as ASA + APT102 could be valuable experimental tools for studying the role of platelet activation in metastasis as well as a therapeutic option for the prevention of bone metastases.  相似文献   
108.
109.
The coat protein (CP) of potato virus X was localized immunocytochemically in infected leaves of susceptible Nicotiana species and shown to be targeted to the central cavity of plasmodesmata in virus-infected cells. A viral deletion mutant, in which the CP gene was replaced with the gene for the green fluorescent protein (GFP), was restricted to single, inoculated cells. However, movement of the mutant virus was rescued on transgenic plants constitutively expressing the CP gene, and the CP was again targeted to plasmodesmata. The CP was not localized to plasmodesmata in uninfected transgenic plants and, in contrast to the plasmodesmata of PVX-infected cells, the plasmodesmata of the transgenic plants did not allow the passage of 10 kDa fluorescent dextrans. We propose that the CP is not involved in plasmodesmal gating per se , but is necessary for transport of the viral RNA to, and possibly through, plasmodesmata.  相似文献   
110.
【目的】高加索三叶草是优良的蜜源植物,了解其花蜜腺形态特征、组织结构及其发育规律对认识其小花糖分变化规律和合理利用该植物资源具有重要意义。【方法】选择生长良好的高加索三叶草标准株,分别在小花的不同发育时期,即现蕾期、露冠期、初花期、盛花期和谢花期采样。利用石蜡切片技术,观察小花细胞组织结构。采用毛细管法吸取小花花蜜,用生理试剂盒-分光光度法测定初花期、盛花期和谢花期小花的可溶性糖(包含蔗糖、果糖、葡萄糖)和淀粉等糖分营养指标。【结果】结果表明,(1)单个小花的花蜜量为0.394±0.095μL,每平方米花蜜量为4536.93±1319.34μL。(2)蜜腺位于9枚合生雄蕊的花丝内侧基部,属于雄蕊蜜腺。经PAS 染色,蜜腺组织在整个泌蜜过程中淀粉粒有明显的动态变化,属于淀粉型蜜腺。(3)小花的可溶性糖含量在盛花期最高,为7.978mg/g;可溶性糖各组分中果糖占比最大,初花期占比最高,为66%,后逐渐下降;淀粉含量占全糖含量的81%~82%,其中盛花期最高,为35.173mg/g,初花期最低,为24.168 mg/g。【结论】高加索三叶草花蜜腺属于雄蕊蜜腺,蜜腺由分泌表皮细胞和泌蜜细胞构成。原蜜由蜜腺相邻的花托维管束提供,经蜜腺细胞加工成蜜汁,最后由表皮的气孔泌出。高加索三叶草小花的可溶性糖含量在盛花期时最高,其中果糖的占比最大。  相似文献   
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