INTERSTRAIN AND SEASONAL DIFFERENCES IN THE RESPONSE OF BLOOD AND ORGANS OF THE IMMUNE SYSTEM TO ROUND-THE-CLOCK ILLUMINATION OF CBA AND C57/BL6 MICE

A. V. Shurlygina , G. I. Litvinenko , O. B. Gritzyk , Ye. V. Mel’nikova , P. A. Avrorov , M. V. Tenditnik , V. A. Trufakin

Morphology ›› 2015, Vol. 147 ›› Issue (2) : 44 -48.

PDF
Morphology ›› 2015, Vol. 147 ›› Issue (2) : 44 -48. DOI: 10.17816/morph.398857
Articles
research-article

INTERSTRAIN AND SEASONAL DIFFERENCES IN THE RESPONSE OF BLOOD AND ORGANS OF THE IMMUNE SYSTEM TO ROUND-THE-CLOCK ILLUMINATION OF CBA AND C57/BL6 MICE

Author information +
History +
PDF

Keywords

thymus / spleen / round-the-clock illumination / CBA and C57/BL6 mice

Cite this article

Download citation ▾
A. V. Shurlygina, G. I. Litvinenko, O. B. Gritzyk, Ye. V. Mel’nikova, P. A. Avrorov, M. V. Tenditnik, V. A. Trufakin. INTERSTRAIN AND SEASONAL DIFFERENCES IN THE RESPONSE OF BLOOD AND ORGANS OF THE IMMUNE SYSTEM TO ROUND-THE-CLOCK ILLUMINATION OF CBA AND C57/BL6 MICE. Morphology, 2015, 147(2): 44-48 DOI:10.17816/morph.398857

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Бородин Ю. И., Труфакин В. А., Летягин А. Ю., Шурлыгина А. В. Циркадианные биоритмы иммунной системы. Новосибирск: РИПЭЛ, 1992.

[2]

Литвиненко Г. И., Шурлыгина А. В., Вербицкая Л. В. и др. Суточная динамика клеточного состава тимуса и лимфоузлов мышей в норме, при постоянном освещении и при введении мелатонина // Бюл. экспер. биол. 2005. Т. 140, № 8. С. 181-185.

[3]

Манько В. М., Чижевская М. А., Мастернак Т. Б. и др. Фенотипическая коррекция генного контроля иммунного ответа на гриппозную вакцину // Иммунология. 1994. № 4. С. 17-21.

[4]

Шкурупий В. А. Туберкулёзный гранулематоз. Цитофизиология и адресная терапия. М.: Изд-во РАМН, 2007. С. 109- 150.

[5]

Butler M. P., Terner K. B. T., Cuker J. A melatonin-independent seasonal timer induces neuroendocrine refractoriness to short day lengths // J. Biol. Rhythms. 2008. № 23. P. 242-251.

[6]

Kosson A., Krizbai I., Lesniak A. et al. Role of the blood-brain barrier in differential response to opioid peptides and morphine in mouse lines divergently bred for high and low swim stress-induced analgesia // Acta Neurobiol. Exp. 2014. Vol. 74, № 1. P. 26-32.

[7]

Marquis J. F., Gros P. Genetic analysis of resistance to infections in mice: A/J meets C57BL/6J // Curr. Top. Microbiol. Immunol. 2008. Vol. 321. P. 27-57.

[8]

Naranjoa M. C., Guerreroa J.M, Rubioa A. et al. Melatonin biosynthesis in the thymus of humans and rats // Cell. Mol. Life Sci. 2007. Vol. 64. P. 781-790.

[9]

Roseboom P.H., Namboodiri M. A., Zimonjic D. B. et al. Natural melatonin ‘knockdown’ in C57BL/6J mice: rare mechanism truncates serotonin N-acetyltransferase // Brain Res. Mol. Brain Res. 1998. Vol. 10, № 63 (1). P. 189-197.

[10]

Srinivasan V., Spence D. W., Trakht I. et al. Immunomodulation by melatonin: its significance for seasonally occurring diseases // Neuroimmunomodulation. 2008. № 15. P. 93-101.

[11]

Vivien-Roels B., Malan A., Rettori M. C. et al. Daily variations in pineal melatonin concentrations in inbred and outbred mice // J. Biol. Rhythms. 1998. Vol. 13, № 5. P. 403-409.

[12]

Walton J. C., Weil Z. M., Nelson R. Influence of photoperiod on hormones, behavior, and immune function // Front Neuroendocrinol. 2011. Vol. 32. P. 303-319.

RIGHTS & PERMISSIONS

Eco-Vector

AI Summary AI Mindmap
PDF

69

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/