Amino acid composition of gallstones and its connection with the mineral component
- 作者: Mashina E.V.1, Shanina S.N.1
-
隶属关系:
- Komi Science Centre of the Ural Branch of the RAS
- 期: 卷 148, 编号 4 (2019)
- 页面: 95-109
- 栏目: Organic mineralogy and biomineralogy
- URL: https://journals.eco-vector.com/0869-6055/article/view/11214
- DOI: https://doi.org/10.30695/zrmo/2019.1484.07
- ID: 11214
如何引用文章
详细
The study of the amino acid composition of gallstones of the Komi Republic residents has shown the significant differences in cholesterol and pigment specimens. It has been revealed that during formation of the carbonate or phosphate component in gallstones, the specificity of the protein component is of great importance. It is shown that the content of amino acids is higher in samples with presence of the mineral component and is non-uniform through the cross-section of gallstones. The presence of D-forms of amino acids in pigment and cholesterol gallstones is a consequence of the participation in their formation of various microorganisms.
全文:
作者简介
Ekaterina Mashina
Komi Science Centre of the Ural Branch of the RAS
编辑信件的主要联系方式.
Email: borovkova@geo.komisc.ru
ORCID iD: 0000-0001-7653-9625
SPIN 代码: 4327-4540
Scopus 作者 ID: 57194204880
Junior Researcher, Laboratory of Experimental Mineralogy, Institute of Geology of Komi Science Centre of the Ural Branch of the RAS
俄罗斯联邦, 167982, Komi Republic, Syktyvkar, Pervomayskaya, 54Svetlana Shanina
Komi Science Centre of the Ural Branch of the RAS
Email: shanina@geo.komisc.ru
Candidate of geological - mineralogical sciences, Senior Researcher, Laboratory of Experimental Mineralogy, Institute of Geology of Komi Science Centre of the Ural Branch of the RAS
俄罗斯联邦, 167982, Komi Republic, Syktyvkar, Pervomayskaya, 54参考
- Berezov T. T., Korovkin B. F. Biological Chemistry. Moscow: Medicinа, 1998. 704 p. (in Russian).
- Berg A. A., Buul J. D., Tytgat G. N., Groen, A. K., Ostrow J. D. Mucins and calcium phosphate precipitates additively stimulate cholesterol crystallization. Lipid Res. 1998. Vol. 39. P. 1744-1751.
- Carter P. W. Adsorption of amino acid-containing organic matter by calcite and quartz. Geochim. Cosmohim. Acta. 1978. Vol. 42. P. 1239-1242.
- Chikvaidze E. N., Gogoladze T. V., Kirikashvili I. N., Mamniashvili G. I. Ternary complexes of albumin-Mn(II)-bilirubin and electron spin resonance studies of gallstones. Georgian Med. News. 2009. Vol. 168. P. 5-11.
- Drozdova Т. V. Geochemistry of amino acids. Moscow: Nauka, 1977. 199 p. (in Russian).
- Efimova Y. A., Kuzmicheva G. M., Nikitina E. A., Orlova S. V. Radiography of gallstones. Questions of biological medical and pharmaceutical chemistry. 2005. N 2. P. 36-49 (in Russian).
- Ekimova N. V., Lifshits V. B., Subbotina V. G. To the etiopathogenesis of cholelithiasis and gallbladder cholesterosis. Saratov Journal of Science. 2009. Vol. 5. N 3. P. 337-341 (in Russian).
- Feng J., Wu G., Qing C. Biomimetic synthesis of hollow calcium carbonate with the existence of the agar matrix and bovine serum albumin. Materials Science and Engineering C. 2016. Vol. 58. P. 409-411.
- Golovanova O. A. Pathogenic minerals in the human body. Omsk: Omsk State University, 2006. 400 p. (in Russian).
- Goncharov N. V., Belinskaya D. A., Razygraev A. V., Ukolov A. I. About the enzymatic activity of albumin. Bioorganic chemistry. 2015. Vol. 41. N 2. P. 131-144 (in Russian).
- Ilchenko A. A. Gallstone disease. Moscow: Anaharsis, 2004. 200 p. (in Russian).
- Imano M., Satou T., Itoh T., Takeyama Y., Yasuda A., Peng Y. F. An immunohistochemical study of osteopontin in pigment gallstone formation. Am. Surg. 2010. P. 91-95.
- Katkova V. I. Biomineralogy of dentites. Ekaterinburg: UB RAS, 2006. 112 p. (in Russian).
- Katkova V. I., Shanina S. N., Borovkova E. V. Amino acids: the structure-forming components of biominerals and markers of biosynthetic processes. Zapiski RMO (Proc. Russian Miner. Soc.). 2008. N 5. P. 80-85 (in Russian).
- Korago A. A. Introduction to biomineralogy. Saint Petersburg: Nedra, 1992. 279 p. (in Russian).
- Korkin A. L. General regularities, features of development and course of cholelithiasis on the background of opisthorchiasis. Doct. thesis syn. Tyumen. 2009. 44 p. (in Russian).
- Li W. H., Shen G. R., Soloway R. D., Yang Z. L., Tong X. B., Wu E., Xu D. F., Wu J. G., Xu C. X. Copper bilirubinate and black pigment gallstone. Biospectroscopy. 1995. P. 149-156.
- Mashina E. V. Phosphates of calcium carbonate in gallstone. Proc. miner. seminar «Yushkin Readings». Syktyvkar, 2014. P. 204 (in Russian).
- Mashina E. V., Makeev B. A., Filippov V. N. Calcium carbonates in gallstone. Izvestiya of Tomsk Polytechnic University. Tomsk: TPU, 2015. Vol. 326. N 1. P. 34-39 (in Russian).
- Ohta K., Monma H., Tanaka J., Eda H. Interaction between hydroxyapatite and proteins by liquid chromatography using simulated body fluids as eluents. Materials Science: Materials in Medicine. 2002. Vol. 13. P. 633-637.
- Pyatanova P. A. Physico-chemical study of kidney stones, formal genesis: authors abstract. PhD thesis syn. Omsk, 2004. 20 p. (in Russian).
- Rawson J. Human bile proteins. Clinical Chemistry. 1962. Vol. 8. N 3. P. 310-317.
- Rodionova E. Yu. Colloidal properties of aqueous dispersions of hemoglobin, chlorophyll and bilirubin. PhD thesis. Saint Petersburg, 2014. 229 p. (in Russian).
- Shanina S. N., Golubev E. A. Amino acids in the Karelian shungites. Geochemistry Int. 2010. Vol. 48. N 9. P. 917-931.
- Swain S. K., Sarkar D. Cryogenically cured hydroxyapatite-gelatin nanobiocomposite for bovine serum albumin proteinadsorption and release. RSC Advances. 2013. N 34. P. 14 622-14 633.
- Trushina D. B. Structure and properties of particles of the vaterite with a controlled size and their use as the basis of carriers for the delivery of drug substances. PhD thesis. Moscow, 2016. 131 p. (in Russian).
- Vorobeva L. I. Propionic acid bacteria. Moscow: MSU, 1995. 288 p. (in Russian).
- Wen-Kun Z., Xue-Gang L., Chi Z., Tao D., Jian Z. Regulation of microstructure of calcium carbonate crystals by egg white protein. Chem. Res. Chinese Univ. 2012. Vol. 28. P. 180-185.
补充文件


