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1.
D. V. Popov D. V. Swirkun A. I. Netreba O. S. Tarasova A. B. Prostova I. M. Larina A. S. Borovik O. L. Vinogradova 《Human physiology》2006,32(5):609-614
The study was designed to test the hypothesis that, during strength training, a restricted blood supply to the working muscles stimulates the secretion of anabolic hormones and an increase in the muscle mass and strength can be achieved with significantly lower training loads. During eight weeks, three times a week, 18 young, physically active males trained their leg extensor muscles. Nine subjects (group I) worked at 80% of the maximal voluntary contraction (MVC), whereas the rest (group II) performed their exercise without relaxation and at a lower load (50% MVC). The total training load in group II was significantly lower than in group I (77 ± 5 vs. 157 ± 7 kJ, respectively). The eight-week training of both groups significantly increased the mean maximum strength (by 35 and 21% in groups I and II, respectively) and volume (by 17 and 9%, respectively) of the muscles trained (however, the differences between the groups with respect to these changes were nonsignificant). Group I displayed a higher increase in the blood level of creatine phosphokinase than group II, while group II showed a greater increase in the blood concentration of lactate. In contrast to group I, group II displayed a significant increase in the blood concentrations of growth hormone, insulin-like growth factor 1 (IGF-1), and cortisol. Hence, the suggestion that the secretion of metabolic hormones is triggered by a metabolic, rather than mechanical, stimulus from working muscles seems plausible. 相似文献
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本文记述采自新疆的皿蛛科蜘蛛一新届——颚齿蛛属Maxillodens gen.nov.及其一新种——鞭状颚齿蛛M.flageuatus sp.nov。 相似文献
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Larina M. V. Finashutina Y. P. Lyzhko N. A. Misyurin V. A. Novoseletsky V. N. Dolgikh D. A. Solopova O. N. Moysenovich A. M. Balabashin D. S. Aliev T. K. Misyurin A. V. Kirpichnikov M. P. 《Russian Journal of Bioorganic Chemistry》2022,48(2):360-371
Russian Journal of Bioorganic Chemistry - The PRAME antigen, which is a significant target for monoclonal antibodies, is a tumor-specific marker that is active at all stages of tumor cell... 相似文献
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John J. Armstrong Irina V. Larina Mary E. Dickinson Warren E. Zimmer Karen K. Hirschi 《Genesis (New York, N.Y. : 2000)》2010,48(7):457-463
Smooth muscle α actin (SMA) is a cytoskeletal protein expressed by mesenchymal and smooth muscle cell types, including mural cells (vascular smooth muscle cells and pericytes). Using Bacterial Artificial Chromosome (BAC) recombineering technology, we generated transgenic reporter mice that express a membrane localized cherry red fluorescent protein (mCherry), driven by the full‐length SMA promoter and intronic sequences. We determined that the founders and F1 progeny of five independent lines contain 1–3 copies of the mCherry‐substituted BAC vector. Furthermore, we characterized the expression of SMA‐mCherry in relation to endogenous SMA in the embryo and in adult tissues, and found that the transgenic reporter in each line recapitulated endogenous SMA expression at all time points. We were also able to isolate SMA expressing cells from embryonic tissues using fluorescence‐activated cell sorting (FACS). We demonstrated that this marker can be combined with other vital fluorescent reporters and it can be used for live imaging of embryonic cardiodynamics. Therefore, these transgenic mice will be useful for isolating live SMA‐expressing cells via FACS and for studying the emergence, behavior, and regulation of SMA‐expressing cells, including vascular smooth muscle cells and pericytes throughout embryonic and postnatal development. genesis 48:457–463, 2010. © 2010 Wiley‐Liss, Inc. 相似文献
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V. S. Kurova A. S. Kononikhin D. A. Sakharov I. A. Popov I. M. Larina A. G. Tonevitsky S. D. Varfolomeev E. N. Nikolaev 《Russian Journal of Bioorganic Chemistry》2011,37(1):48-52
In the course of analysis of protein composition of exhaled breath to diagnose diseases of the respiratory system the problem is raised to distinguish between proteins, expressed in lung tissues and in respiratory tract (endogenous) and those that got into the respiratory system from the ambient air in the process of respiration (exogenous). In this work, an attempt is made to estimate the constitution of exogenous proteins in exhaled air with mass spectrometry and nanoflow high performance liquid chromatography (nano-HPLC). Six months’ indoors isolation of healthy donors with air being cleaned of dust leads to the removal from the spectrum of exhaled proteins of some keratins that are therefore considered to be exogenous. Nonkeratin proteins may also circulate between ambient air and human airways, but their concentration appears to be significantly lower than keratin concentrations (especially than the epidermis keratin). Among nonkeratins, dermicidin seems to be the most significant exogenous protein of the exhaled air. Conclusions concerning the diagnostic value of exhaled proteins can be made only after careful comparison of results of quantitative and qualitative analyses of their normal and pathological composition for a statistically significant sample of donors. 相似文献