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Effects of Tetracycline on Ruminal Activity and Blood Calcium in Sheep

REFERENCES 1. Agwuh, K. N., MacGowan, A., 2006: Pharmacokinetics and pharmacodynamics of the tetracyclines including glycylcyclines. J. Antimicrob. Chemotherapy , 58, 256—265. 2. Attebery, J. T., Johnson, H. D., 1969: Effects of environmental temperature, controlled feeding and fasting on rumen motility. J. Anim. Sci. , 29, 734—737. 3. Bengtsson, B., Franklin, A., Luthman, J., Jacobsson, S. O., 1989: Concentrations of sulphadimidine, oxytetracycline and penicillin G in serum, synovial fluid and tissue cage fluid after parenteral

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Dehorning of Calves – Methods of Pain and Stress Alleviation – A Review

/12/1991. Council Directive 97/2/ECof 20 January 1997 amending Directive 91/629/EEClaying down minimum standards for the protection of calves. Official Journal L 025, 28/01/1997. Delatour P., Foot R., Foster A.P., Bagott D., Lees P. (1996). Pharmacodynamics and chiral pharmacokinetics of carprofen in calves. Brit. Vet. J., 152: 183-198. Doherty T.J., Kattesh H.G., Adcock R.J., Welborn M.G., Saxton A.M., Morrow J.L., Dailey J.W. (2007). Effects ofaconcentrated lidocaine solution on the acute phase stress response to dehorning in dairy calves. J

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The Effect of Administration of Silver Nanoparticles on the Immune Status of Chickens

extracellular nanoparticle clearance by human immune cells. Nano Lett., 10: 59-63. Bomski H. (1995). Biernacki’s reaction (in Polish). In: Basic hematology laboratory analyses, Bomski H. (ed.). National Institute of Medical Publications, Warsaw, pp. 161-168. Cho W.S., Cho M., Jeong J., Choi M., Cho H.Y., Han B.S., Kim S.H., Kim H.O., Lim Y.T., Chung B.H., Jeon J. (2009). Acute toxicity and pharmacokinetics of 13 nm-sized PEG-coated gold nanoparticles. Tox. Appl. Pharmacol., 236: 16-24. Chuammitri P., Ostojić J., Andreasen C

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Role of Mesenchymal Stem Cells—Derived Exosomes in Osteoarthritis Treatment

secretome and exosomes. Biochemie , 95, 2229e2234. 22. Meirelles, L. S., Fontes, A. M., Covas, D. T., Caplan, A. I., 2009: Mechanisms involved in the therapeutic properties of mesenchymal stem cells. Cytokine Growth Factor Rev. , 20, 419—427. 23. Morishita, M., Takahashi, Y., Nishikawa, M., Takakura, Y., 2017: Pharmacokinetics of exosomes – an important factor for elucidating the biological roles of exosomes and for the development of exosome-based therapeutics. J. Pharm. Sci. , 106, 2265—2269. 24. Pan, B. T., Johnstone, R. M., 1983: Fate of the

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Redox Status, Hematological Parameters as Well Liver and Kidney Function Indicators in Blood of Chickens Receiving Gold Nanoparticles

). Acute toxicity and pharmacokinetics of 13 nm-sized PEG-coated gold nanoparticles. Tox. Appl. Pharmacol., 236: 16–24. Connor E.E., Mwamuka J., Gole A., Murphy C.J., Wyatt M.D. (2005). Gold nanoparticles are taken up by human cells but do not cause acute cytotoxicity. Small, 1: 325–327. Dobrovolskaia M.A., Patri A.K., Zheng J., Flogston J.D., Ayub N., Aggarwal P. (2009). Interaction of colloidal gold nanoparticles with human blood: effects on particle size and analysis of plasma protein binding profiles. Nanomedicine, 5: 106–117. Dykman L., Khlebtsov N

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