International Journal of Animal Biology
Articles Information
International Journal of Animal Biology, Vol.1, No.4, Aug. 2015, Pub. Date: Jul. 15, 2015
Conception of a New Approach to Detection of Lymph Humor Factor in Thoracic Duct Lymph of Rabbits
Pages: 110-113 Views: 3995 Downloads: 1193
Authors
[01] Alexander V. Kuznetsov, Department of Human Anatomy, Novosibirsk State Medical University, Novosibirsk, Russia.
Abstract
There is lymph humor/lymphocytopoietic factor (LHF) in various tissues. However, a definite substance or a definite combination of any substances of LHF in thoracic duct lymph remains unknown. Justification for the conception of a new approach to revealing of LHF composition in native thoracic duct lymph is based on a discovery of mitoses in native thoracic duct lymph of normal immature rabbits. No mitoses are strongly detected in native thoracic duct lymph of normal mature rabbits. The aim of the work is to justify a new approach to detection of definite LHF. Two groups of anesthetized normal Chinchilla rabbit males should be formed: group 1- 5 or more adult rabbits, group 2 - 5 or more immature rabbits. The conception of the new approach suggests a certain succession of stages. 1. To obtain native lymph from cistern chyle of thoracic duct with a glass micropipette (Patent № 1495076, Russia). 2. To make lymph plasma from thoracic duct lymph of rabbits of group 1 and group 2. 3. To find a qualitative/quantitative substances composition of lymph plasma in group 1 and group 2. 4. To find the difference between the lymph plasma composition in group 1 and group 2. Consequently, the difference will be the sought-for LHF. The conception of the new methodical approach can be used to study different features of thoracic duct lymph, particularly cells division, identification of lymph humor/lymphocytopoietic factor, that can play a key role in access to cell dividing mechanism and it is the way to elaborate new cancer drugs.
Keywords
Lymph Humor Factor, Mitosis, Native Thoracic Duct Lymph
References
[01] Cross FR, Umen JG. The chlamydomonas cell cycle. Plant J. 2015; 82 (3):370-92. DOI: 10.1111/tpj.12795.
[02] Kitagawa M, Lee SH. The chromosomal passenger complex (CPC) as a key orchestrator of orderly mitotic exit and cytokinesis. Front Cell Dev Biol. 2015; 3 (14). DOI10.3389/fcell.2015.00014.eCollection 2015. Reviewe.
[03] Chang L, Barford D. Insights into the anaphase-promoting complex: a molecular machine that regulates mitosis. Curr Opin Struct Biol. 2014 Dec;29:1-9. doi: 10.1016/j.sbi.2014.08.003. Epub 2014 Aug 24.
[04] Oku Y, Tareyanagi C, Takaya S, Osaka S, Ujiie H, Yoshida K, Nishiya N & Uehara Y. 2014. Multimodal Effects of Small Molecule ROCK and LIMK Inhibitors on Mitosis, and Their Implication as Anti-Leukemia Agents. PLoS One. 9(3): e92402. doi: 10.1371/journal.pone.0092402. eCollection 2014.
[05] Lampaki S, Lazaridis G, Zarogoulidis K, Kioumis I, Papaiwannou A, Tsirgogianni K, Karavergou A, Tsiouda T, Karavasilis V, Yarmus L, Darwiche K, Freitag L, Sakkas A, Kantzeli A, Baka S, Hohenforst-Schmidt W, Zarogoulidis P. Defining the role of tyrosine kinase inhibitors in early stage non-small cell lung cancer. J Cancer. 2015 May 7; 6(6):568-74. doi: 10.7150/jca.11893. eCollection 2015. Review.
[06] Van Diest, P.J., van der Wall, E. & Baak, J,P. Prognostic value of proliferation in invasive breast cancer: a review. J Clin Pathol. 2004; 57, 675- 81.
[07] Yamashita A, Fukumoto T, Miyamoto M. Studies on lymph humoral factor. Evidence for a lymphocytopoietic factor in rat thoracic duct lymph. Immunology. 1976; 30 (3): 349-59.
[08] Yamashita, A. & Fukumoto, T., Miyamoto, M. Studies on lymph humoral factor. Biological characteristics of a lymphocytopoietic factor in rat thoracic duct lymph. Immunology. 1977. 32, 651-6.
[09] Domaszewska-Szostek A, Zaleska M, Olszewski WL. The influence of tissue Fluid/lymph cytokines and growth factors on human keratinocyte proliferation and differentiation. Transplant Proc. 2009; 41(8):3269-71. doi: 10.1016/j.transproceed.2009.07.075.
[10] Thomas SN, Rutkowski JM, Pasquier M, Kuan EL, Alitalo K, Randolph GJ, Swartz MA. Impaired humoral immunity and tolerance in K14-VEGFR-3-Ig mice that lack dermal lymphatic drainage. J Immunol. 2012 Sep 1; 189(5):2181-90. doi: 10.4049/jimmunol.1103545. Epub 2012 Jul 27.
[11] Kotani M. Inhibition of mitosis in the guinea pig thymus after ligation of draining afferent lymphatics. Lymphology. 1998; 31 (1):21-6.
[12] Kuznetsov AV. Mitoses in thoracic duct lymph of rabbits. Sci. Agri. 2015; 9 (2):89-92. DOI: 10.15192/PSCP.SA.2015.9.2.8992. Epub 2015 Feb 20.
[13] Marques RM, Costa-E-Silva A, Águas AP, Teixeira L, Ferreira PG. 2012. Early inflammatory response of young rabbits attending natural resistance to calicivirus (RHDV) infection. Vet Immunol Immunopathol. Dec 15; 150(3-4):181-8. doi: 10.1016/j.vetimm.2012.09.038.
[14] Kuznetsov AV. A new procedure for sampling lymph in animals. J. Exper. biol. and med. 1993; 116 (9):329-331.
[15] Wu Z, Xia R, Yin X, Huo Y, Zhu G, Wu S, Bao W. Proteomic Analysis of Duodenal Tissue from Escherichia coli F18-Resistant and -Susceptible Weaned Piglets. PLoS One. 2015 Jun 8; 10(6):e0127164. doi: 10.1371/journal.pone.0127164.
[16] Cole JL, Hansen JC. Analytical ultracentrifugation as a contemporary biomolecular research tool. J Biomol Tech. 1999 Dec;10(4):163-76.
[17] Wang L, Yang W, Ju W, Wang P, Zhao X, Jenkins EC, Brown WT, Zhong N. A proteomic study of Hutchinson-Gilford progeria syndrome: Application of 2D-chromotography in a premature aging disease. Biochem Biophys Res Commun. 2012 Jan 27;417(4):1119-26. doi: 10.1016/j.bbrc.2011.12.056. Epub 2011 Dec 24.
[18] Görg A1, Weiss W, Dunn MJ. Current two-dimensional electrophoresis technology for proteomics. Proteomics. 2004 Dec;4(12):3665-85.
[19] Conrotto P, Souchelnytskyi S. Proteomic approaches in biological and medical sciences: principles and applications. Exp Oncol. 2008 Sep;30(3):171-80. Review.
[20] Zhang C, Kim SH. Overview of structural genomics: from structure to function.Curr Opin Chem Biol. 2003 Feb;7(1):28-32. Review.
[21] Hey J, Posch A, Cohen A, Liu N, Harbers A. Fractionation of complex protein mixtures by liquid-phase isoelectric focusing. Methods Mol Biol. 2008;424:225-39. doi: 10.1007/978-1-60327-064-9_19.
[22] Zhang Y. Progress and challenges in protein structure prediction. Curr Opin Struct Biol. 2008 Jun;18(3):342-8. doi: 10.1016/j.sbi.2008.02.004. Epub 2008 Apr 22.
[23] Kuznetsov AV. [Phenotypes of dendritic cells in central lymph of healthy rabbits and During correction of experimental atherosclerosis]. Biull Eksp Biol Med. 1992;114(9): 241-2. [Article in Russian].
[24] Milling S, MacPherson G. Isolation of rat intestinal lymph DC. Methods Mol Biol. 2010; 595:281-97. doi: 10.1007/978-1-60761-421-0_19.
[25] Mac Keon S, Ruiz MS, Gazzaniga S, Wainstok R. Dendritic cell-based vaccination in cancer: therapeutic implications emerging from murine models. Front Immunol. 2015;6:243. doi: 10.3389/fimmu.2015.00243. eCollection 2015.
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