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31.
通过测定和比较正常人和力量项目运动员在静息和逐级递增负荷运动时,室壁多普勒频谱图上E波和A波峰值速度,研究左室后壁主动松弛和被动充盈功能的变化。结果表明:在静息状态,力量项目组房缩期心房收缩对于左室舒张充盈的贡献小于正常组;在逐级递增负荷中,力量项目组心脏舒张功能的动员表现为同时动用主动舒张储备和左房收缩储备,显示出心脏主动舒张的能力强,左房收缩储备大。 相似文献
32.
Shenqiang Wang Letao Yang Bolei Cai Fuwei Liu Yannan Hou Hua Zheng Fang Cheng Hepeng Zhang Le Wang Xiaoyi Wang Qianxin Lv Liang Kong Ki-Bum Lee Qiuyu Zhang 《国家科学评论(英文版)》2022,9(4)
Cartilage injuries are often devastating and most cannot be cured because of the intrinsically low regenerative capacity of cartilage tissues. Although stem-cell therapy has shown enormous potential for cartilage repair, the therapeutic outcome has been restricted by low survival rates and poor chondrocyte differentiation in vivo. Here, we report an injectable hybrid inorganic (IHI) nanoscaffold that facilitates fast assembly, enhances survival and regulates chondrogenic differentiation of stem cells. IHI nanoscaffolds that strongly bind to extracellular matrix (ECM) proteins assemble stem cells through synergistic 3D cell–cell and cell–matrix interactions, creating a favorable physical microenvironment for stem-cell survival and differentiation in vitro and in vivo. Additionally, chondrogenic factors can be loaded into nanoscaffolds with a high capacity, which allows deep, homogenous drug delivery into assembled 3D stem-cell-derived tissues for effective control over the soluble microenvironment of stem cells. The developed IHI nanoscaffolds that assemble with stem cells are injectable. They also scavenge reactive oxygen species and timely biodegrade for proper integration into injured cartilage tissues. Implantation of stem-cell-assembled IHI nanoscaffolds into injured cartilage results in accelerated tissue regeneration and functional recovery. By establishing our IHI nanoscaffold-templated 3D stem-cell assembly method, we provide a promising approach to better overcoming the inhibitory microenvironment associated with cartilage injuries and to advance current stem-cell-based tissue engineering. 相似文献
33.
藏成药七十味珍珠丸中矿物质元素在体内蓄积性水平研究 总被引:1,自引:0,他引:1
名贵藏成药七十味珍珠丸是传统藏药的典型代表,疗效显著.其中矿物类药的大量运用为现代医学科学不可理喻,给传统藏医药学的健康发展带来了困惑。以金诃七十味珍珠丸为研究材料,以Wistar大白鼠为试验对象,用等离子体发射光谱(ICP AES)和氢化物原子吸收光谱(HAAS)等分析仪器,测定了对照组和给药组实验动物在连续 1 8周试验期间心、肝、肾等组织器官中的矿物质元素含量水平,阐述金诃七十味珍珠丸中矿物质元素在动物主要组织器官中的长期蓄积性及其对生物机体的毒性效应 相似文献
34.
中药王不留行的组织培养技术初探 总被引:1,自引:0,他引:1
选取王不留行饱满种子培养无菌苗,用无菌苗的茎和叶作为外植体,分别接种MS基本培养基外加激素NAA和6-BA诱导愈伤组织和不定芽,使用1/2MS培养基,附加IBA或NAA进行不定芽的生根实验,最后炼苗和移栽.实验结果表明王不留行的最优组织培养方案:种子用0.1%升汞消毒8m in,无菌湿脱脂棉催芽,茎和叶作为外植体,使用MS 0.1mg/L NAA 0.1mg/L 6-BA诱导愈伤组织和不定芽,1/2MS 0.15mg/L NAA诱导植株生根. 相似文献
35.
在铁皮石斛组织培养过程中,通过筛选适宜铁皮石斛原球茎增殖、分化、壮苗和生根的培养基,以提高增殖系数和试管苗的质量。结果表明:原球茎增殖以MS NAA1.0 mg/L 6-BA1.0 mg/L KT1.0 mg/L为最佳;原球茎分化以MS NAA1.0 mg/L 6-BA3.0mg/L KT1.0 mg/L为最佳;壮苗生根以1/2MS IBA2.0 mg/L 水解酪蛋白500mg/L 10%香蕉提取液为最佳,45天生根率达92%。 相似文献
36.
目的:观察茶多酚对D-半乳糖所致亚急性衰老小鼠皮肤光老化程度的影响,探讨茶多酚延缓皮肤光老化作用。方法:用紫外线模拟日光照射建立小鼠皮肤光老化模型,给以茶多酚灌胃及外涂治疗,结束后测定皮肤中丙二醛(MDA)和超氧化物歧化酶(SOD),以及皮肤中成纤维细胞数目和羟脯氨酸含量。结果:模型小鼠与正常小鼠比较,MDA含量升高而SOD活性下降,成纤维细胞数目和羟脯氨酸含量明显下降;茶多酚可明显提高光老化小鼠皮肤中SOD活性以及成纤维细胞数目和羟脯氨酸含量,并使皮肤MDA含量降低。结论:茶多酚具有延缓皮肤光老化作用。 相似文献
37.
补充扇贝肽对运动大鼠停训后萎缩骨骼肌细胞Caspase-3活性的影响 总被引:1,自引:0,他引:1
目的:通过测试萎缩骨骼肌细胞Caspase-3、SOD活性和MDA含量,观察补充扇贝肽对运动大鼠停训导致骨骼肌萎缩后肌细胞Caspase-3活性及其抗氧化能力的影响,研究扇贝肽对停训后骨骼肌萎缩的干预作用。方法:40只SD雄性大鼠以15 m/min的速度,持续性水平跑台训练30 min开始进行递增负荷运动,运动6 d/周,休息1 d/周,速度递增3 m/min/周,时间递增30 min/周,运动3周后即刻处死10只大鼠为基础对照组,其余大鼠随机分组为补充安慰剂阴性对照组、补充牛乳阳性对照组和补充扇贝肽实验组,30只大鼠左侧后肢实施石膏固定模拟停训模型,并进行扇贝肽补充实验。实验组和对照组所有动物每天分别进行灌胃15%扇贝肽饮料2mL、等量的安慰剂和牛乳。结果:发现补充扇贝肽可显著减低停训后萎缩骨骼肌细胞MDA含量增加,增加SOD活性,提高细胞内抗氧化能力,可显著抑制停训后萎缩骨骼肌细胞Caspase-3的活性,从而抑制骨骼肌收缩蛋白和结构蛋白的降解,促进萎缩骨骼肌的恢复。 相似文献
38.
Yi-Hung Liao Toby Mündel Yan-Ting Yang Chen-Chan Wei Shiow-Chwen Tsai 《Journal of sports sciences》2019,37(16):1805-1815
The purpose of this study was to examine CHO ingestion on a cognitive task using a field-simulated time-trial (TT) under hypoxia in well-trained triathletes. Ten male triathletes (age: 22.1 ± 1.1 years; VO2max: 59.4 ± 1.4 ml/kg/min) participated in this double-blind/crossover/counter-balanced design study. Participants completed 3 TT trials: 1) normoxic placebo (NPLA; FiO2 = 20.9%), 2) hypoxic placebo (HPLA; FiO2 = 16.3%), and 3) hypoxic CHO (HCHO; 6% CHO provided as 2 ml/kg/15 min; FiO2 = 16.3%). During the TT, physiological responses (SpO2, HR, RPE, and blood glucose/lactate), cognitive performance, and cerebral haemodynamics were measured. Hypoxia reduced TT performance by ~3.5–4% (p < 0.05), but CHO did not affect TT performance under hypoxia. For the cognitive task, CHO slightly preserved exercise-induced cognitive reaction speed but did not affect response accuracy during hypoxic exercise. However, CHO did not preserve the decreased Hb-Diff (cerebral blood flow, CBF) and increased HHb in the prefrontal lobe (p < 0.05) during hypoxic exercise, and CHO failed to preserve hypoxia-suppressed prefrontal CBF and tissue oxygen saturation. In conclusion, the present study demonstrates that CHO is effective in sustaining reaction speed for a cognitive task but not promoting TT performance during hypoxic exercise, which would be important for strategy-/decision-making when athletes compete at moderate high-altitude. 相似文献
39.
The purpose of this study was to analyse associations between lean soft tissue (LST), a surrogate of skeletal muscle mass and key fracture-related geometric characteristics of the proximal femur. Moreover, we examined the role that muscle played on the proximal femur geometry in response to physical activity (PA). Participants were 83 young adults. Leg LST (exposure) was assessed by dual energy X-ray absorptiometry (DXA). Proximal femur geometry was derived from a left hip DXA scan. Geometric variables (outcomes) included the femoral neck axis length (FNAL), the femoral neck width (FNW), the neck–shaft angle and FNW|FNAL (an index of robustness). PA was evaluated by accelerometry. Linear regression was used to analyse relationships. Additional exposure variables included body height and mass. In males, leg LST explained 17.4% of variation in FNAL (P < 0.001) and 15% in FNW (P = 0.015). In females, it explained 8.8% of the variance in FNAL (P = 0.020). Associations remained significant in males, but not in females, when vigorous PA was added to the models. These results suggest that public health approaches to promote PA may be particularly important in females since vigorous PA seems to convey advantages in femur geometry and consequently in bone strength. 相似文献
40.
谷氨酰胺及运动训练对大鼠血液某些生化指标的影响 总被引:5,自引:0,他引:5
对大强度耐力性跑台训练SD大鼠血清超氧化物歧化酶(SOD)、谷草转氨酶(GOT)、谷丙转氨酶(GPT)活性及血糖(BS)、丙二醛(MDA)和全血血红蛋白(Hb)的含量进行了测定分析。结果表明,与对照组比较,训练组SOD活性和BS含量表现出适应性升高,而MDA含量和GOT、GPT活性有显著性升高(P<0 05)。服药训练组大鼠与训练组比较,SOD活性、BS、Hb含量显著升高(P<0 05),MDA含量,GOT、GPT活性显著下降(P<0 05)。笔者提示,大强度耐力训练对机体造成损伤的同时,适应性的提高了抗氧化酶活力和糖储备;Gln具有清除运动产生的脂质过氧化物和提高BS,Hb含量的功效。 相似文献