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41.
本文应用系统分析方法,建立了一种一级吸收药物的生物利用度的简便估计的两点法。这种方法,只需测量血管内和血管外给药后的两个相同时点的血药浓度值。不论该药的处置系统是多少室,均能得到较好的结果。这种方法不仅比目前常用的点一点法和点一面法简单,而且结果更精确。  相似文献   
42.
津白_3侏儒小鼠(dW~t)是1982年从津白_3纯系小鼠(TA_3)中发现,进而培育成侏的变种。本实验应用免疫细胞化学技术,对dw ̄t小鼠垂体前叶生长激素(GH)细胞进行观察,并根据体视学原理进行定量分析,以探讨dw~t小鼠是否存在垂体发育缺陷。实验结果显示,dw~t小鼠GH细胞的体积密度(Vv)和数密度(Nv)值均低于正常对照组,P<0.01~0.001。表明dw~t小鼠由于垂体前叶GH细胞数量减少,导致GH分泌不足,从而形成侏儒。  相似文献   
43.
HBIG,无环鸟苷,干扰素联合对慢性乙型肝炎抗病毒效应观察   总被引:1,自引:0,他引:1  
本文报道血清HBV复制标志阳性的慢乙肝54例,随机分为治疗组及对照组各27例进行HBIG、无环鸟苷、干扰素联合近、远期抗病毒效应观察。治疗组为无环鸟苷第一周按25~20mg/kg/d计后改17~15mg/kg/d×53天,共60天;人白细胞干扰素1×106U肌注每周3次×4周,后改1.0×106U肌注每周2次×6周,共10周;HBIG400U肌注隔日1次,共10周,对照组仅给予一般“保肝”药物。其中治疗组18例,对照组19例进行治后半年到2年追踪观察,结果近、远期HBcAg、DNAP、HBV-DNA阴转率治疗组均高于对照组,其中治疗组近、远期HBcAg,HBV-DNA阴转率均达40%以上,明显高于对照组(P<0.05~0.01),治疗组近、远期各有4例及2例HBsAg阴转,而对照组则无一例阴转,从近、远期综合抗病毒效应观察,治疗组全阴率分别为33.3%、44.4%,而对照组分别为3.79%及0%,P<0.01,治疗组无明显毒副反应。对比单用无环鸟苷,全阴率31.8%;无环鸟苷加干扰素两药联合全阴率37.5%,均有所提高,达到44.4%,值得进一步研究。  相似文献   
44.
冷锻炼和ABA诱导水稻幼苗提高抗冷性期间膜保护系统的变化   总被引:16,自引:1,他引:15  
冷锻炼和ABA处理提高了水稻幼苗叶绿体SOD和GR活性及叶片抗氧化剂AsA和GSH的含量,降低了膜电解质泄漏,增强了幼苗的抗冷性.等电聚焦电泳分析表明,冷锻炼和ABA处理苗叶绿体SOD三条同工酶带和GR1、2、3和6同工酶带都有不同程度的增强.低温胁迫后,处理和未处理首的SOD、GR活性和ASA、GSH含量均有所下降.但处理苗的水平仍维持在未处理苗之上.亚胺环已酮可抑制因冷锻炼和ABA诱导增加的SOD和GR活性,并使叶片电解质泄漏增大.本试验结果表明冷锻炼或ABA诱导水稻幼苗抗冷性提高时,对防御活性氧的保护系统有类似的影响。  相似文献   
45.
岩豆凝集素的圆二色性与生物学活性关系的研究   总被引:1,自引:0,他引:1  
岩豆凝集素(MDL)的远紫外圆二色性谱(CD谱)显示216-217nm处的单一负峰。此时MDL分子含有16.2%的α螺旋,46.3%的β折叠和37.5%的无规卷曲。pH9.0时负峰红移至220nm,且在217-222nm处的峰值几乎相同;在20-40℃范围内,CD谱的变化甚微;60℃时谱峰蓝移;在80℃或100℃时,212nm处出现一大负峰。1mol/L或2mol/L脲时,MDL的CD谱已发生明显变化,二级结构单元也有变化,凝集兔红细胞的活性也随之减弱;随脲浓度的增加,MDL的谱峰蓝移,最终在212nm处出现大负峰。当胍浓度为0.75mol/L时,MDL的CD谱即有明显变化和活性丧失;胍浓度继续增加,CD谱逐渐成为特征的无规卷曲的谱形。在pH9.0、温度超过80℃、脲或胍浓度分别高于2mol/L和0.75mol/L时,MDL的CD谱发生显著变化的同时,其凝集兔红细胞的生物学活性全部丧失,分子的二级结构单元也发生很大改变。  相似文献   
46.
大鼠出生后脑内钙调神经磷酸酶的研究   总被引:1,自引:0,他引:1  
本文用BA-ELISA.immunoblotting及酶活力测定等方法,研究了大鼠脑中钙调神经磷酸酶在大鼠出生后的变化情况。结果表明,钙调神经磷酸酶的含量在大鼠出生后第二周和第三周显著增加,其活力也在出生后第二周达到顶峰。钙调神经磷酸酶这种有规律的变化与脑中突触形成在时间上是一致的,暗示钙调神经磷酸酶可能参与突触功能的调节。  相似文献   
47.
Bisphenol S (BPS) is an environmental endocrine disruptor widely used in industrial production. BPS induces oxidative stress and exhibits male reproductive toxicity in mice, but the mechanisms by which BPS impairs steroid hormone synthesis are not fully understood. Nuclear factor erythroid 2-related factor 2(Nrf2)/HO-1 signaling is a key pathway in improving cellular antioxidant defense capacities. Therefore, this study explored the effects of exposure to BPS on testosterone synthesis in adult male mice and its mechanisms with regard to the Nrf2/HO-1 signaling pathway. Adult male C57BL/6 mice were orally exposed to BPS (2, 20, and 200 mg/kg BW) with sesame oil as a vehicle (0.1 ml/10 g BW) per day for 28 consecutive days. The results showed that compared with the control group, serum testosterone levels were substantially reduced in the 20 and 200 mg/kg BPS treatment groups, and testicular testosterone levels were reduced in all BPS treatment groups. These changes were accompanied by a prominent decrease in the expression levels of testosterone synthesis-related enzymes (STAR, CYP11A1, CYP17A1, HSD3B1, and HSD17B3) in the mouse testis. In addition, BPS induced oxidative stress in the testis by upregulating the messenger RNA and protein levels of Keap1 and downregulating the levels of Nrf2, HO-1, and downstream antioxidant enzymes (CAT, SOD1, and Gpx4). In summary, our results indicate that exposure of adult male mice to BPS can inhibit Nrf2/HO-1 signaling and antioxidant enzyme activity, which induces oxidative stress and thereby may impair testosterone synthesis in testicular tissues, leading to reproductive damage.  相似文献   
48.
Few approaches have been conducted in the treatment of renal cell carcinoma (RCC) after nephrectomy, resulting in a high mortality rate in urological tumours. Mitophagy is a mechanism of mitochondrial quality control that enables selective degradation of damaged and unnecessary mitochondria. Previous studies have found that glycerol-3-phosphate dehydrogenase 1-like (GPD1L) is associated with the progression of tumours such as lung cancer, colorectal cancer and oropharyngeal cancer, but the potential mechanism in RCC is still unclear. In this study, microarrays from tumour databases were analysed. The expression of GPD1L was confirmed by RT–qPCR and western blotting. The effect and mechanism of GPD1L were explored using cell counting kit 8, wound healing, invasion, flow cytometry and mitophagy-related experiments. The role of GPD1L was further confirmed in vivo. The results showed that GPD1L expression was downregulated and positively correlated with prognosis in RCC. Functional experiments revealed that GPD1L prevented proliferation, migration and invasion while promoting apoptosis and mitochondrial injury in vitro. The mechanistic results indicated that GPD1L interacted with PINK1, promoting PINK1/Parkin-mediated mitophagy. However, inhibition of PINK1 reversed GPD1L-mediated mitochondrial injury and mitophagy. Moreover, GPD1L prevented tumour growth and promoted mitophagy by activating the PINK1/Parkin pathway in vivo. Our study shows that GPD1L has a positive correlation with the prognosis of RCC. The potential mechanism involves interacting with PINK1 and regulating the PINK1/Parkin pathway. In conclusion, these results reveal that GPD1L can act as a biomarker and target for RCC diagnosis and therapy.  相似文献   
49.
Effah  Zechariah  Li  Lingling  Xie  Junhong  Liu  Chang  Xu  Aixia  Karikari  Benjamin  Anwar  Sumera  Zeng  Min 《Journal of Plant Growth Regulation》2023,42(2):1120-1133

It is critical for spring wheat (Triticum aestivum L.) production in the semi-arid Loess Plateau to understand the impact of nitrogen (N) fertilizer on changes in N metabolism, photosynthetic parameters, and their relationship with grain yield and quality. The photosynthetic capacity of flag leaves, dry matter accumulation, and N metabolite enzyme activities from anthesis to maturity were studied on a long-term fertilization trial under different N rates [0 kg ha?1(N1), 52.5 kg ha?1 (N2), 105 kg ha?1 (N3), 157.5 kg ha?1 (N4), and 210 kg ha?1 (N5)]. It was observed that N3 produced optimum total dry matter (5407 kg ha?1), 1000 grain weight (39.7 g), grain yield (2.64 t ha?1), and protein content (13.97%). Our results showed that N fertilization significantly increased photosynthetic parameters and N metabolite enzymes at all growth stages. Nitrogen harvest index, partial productivity factor, agronomic recovery efficiency, and nitrogen agronomic efficiency were decreased with increased N. Higher N rates (N3–N5) maintained higher photosynthetic capacity and dry matter accumulation and lower intercellular CO2 content. The N supply influenced NUE by improving photosynthetic properties. The N3 produced highest chlorophyll content, photosynthetic rate, stomatal conductance and transpiration rate, grain yield, grain protein, dry matter, grains weight, and N metabolite enzyme activities compared to the other rates (N1, N2, N4, and N5). Therefore, increasing N rates beyond the optimum quantity only promotes vegetative development and results in lower yields.

  相似文献   
50.
Gui  Runfei  Mo  Zhaowen  Zeng  Shan  Wen  Zhiqiang  Long  Weisi 《Journal of Plant Growth Regulation》2023,42(3):1604-1613

Compared with the standard method of manual fertilizer broadcasting (MFB), mechanized hill-drilling direct-seeding with deep application of slow-release nitrogen fertilizer (MHDDF) is an efficient method to integrate both fertilization and seeding. However, there are few studies that combine the use of slow-release fertilizer with MHDDF. We sought to explore the combined effect of MHDDF with slow-release fertilizer on rice yield and nitrogen, phosphorus, and potassium utilization, compared to MFB. We compared three different MHDDF methods (D30: 450 kg ha?1, D40: 600 kg ha?1, D50: 750 kg ha?1), with one MFB method (B50: 750 kg ha?1), and one control (CK: 0 kg ha?1). We found that the yield of all MHDDF method was higher than that of both the MFB method. Yield was the highest in the D50 treatment and was 14.14–46.03% higher than that in B50 treatment. Biomass accumulation, nutrient accumulation, and nutrient use efficiency were similarly higher in MHDDF method than both MFB and CK. Compared to B50, the D50 treatment increased nitrogen recovery efficiency by 170.53–231.50%, phosphorus recovery efficiency by 480.00–724.25%, and potassium recovery efficiency by 201.55–169.59%. Overall, we found that combining MHDDF with slow-release fertilizer was an effective method to increase rice yield and nutrient use efficiency compared with MFB.

  相似文献   
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