Кантаксантин
Кантаксантин тән каралтуын көчәйтү өчен кулланылган каротеноид. Озак кулланганда ул челтәркатлауның эчке катламнарында арткы котып өлкәсендә кабартма формасында тәңгәл урнашкан бик кечкенә, зарарсыз ялтыравыклы сары чыганаклар утырмасына китерә ала (рәс.22.5б). Бу чыганаклар әкренләп юкка чыга ала.
Искәрмәләр
үзгәртү- ↑ PubChem
- ↑ 2,0 2,1 Global Substance Registration System
- ↑ 3,0 3,1 Takaichi S., Mochimaru M., Maoka T. Presence of free myxol and 4-hydroxymyxol and absence of myxol glycosides in Anabaena variabilis ATCC 29413, and proposal of a biosynthetic pathway of carotenoids // Plant and Cell Physiology — OUP, 2005. — 6 p. — ISSN 0032-0781; 1471-9053 — doi:10.1093/PCP/PCI236 — PMID:16338959
- ↑ 4,00 4,01 4,02 4,03 4,04 4,05 4,06 4,07 4,08 4,09 4,10 4,11 4,12 4,13 4,14 G.E. FOGG, W.D.P. STEWART, P. FAY һ.б. Pathogens of blue-green algae — 2012. — doi:10.1016/B978-0-12-261650-1.50017-4
- ↑ 5,0 5,1 5,2 Antia N. J., J.Y. Cheng The keto-carotenoids of two marine coccoid members of the Eustigmatophyceae // British phycological journal — 2007. — ISSN 0007-1617; 2331-2238 — doi:10.1080/00071618200650061
- ↑ Prum R. O. Novel methoxy-carotenoids from the burgundy-colored plumage of the Pompadour Cotinga Xipholena punicea // Arch. Biochem. Biophys. — Academic Press, Elsevier BV, 2010. — ISSN 0003-9861; 1096-0384 — doi:10.1016/J.ABB.2010.08.006 — PMID:20709013
- ↑ 7,0 7,1 Czeczuga B. Investigations of carotenoids in some animals of the Adriatic Sea—VI. Representatives of sponges, annelids, molluscs and echinodermates // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 2003. — ISSN 0305-0491 — doi:10.1016/0305-0491(84)90180-9
- ↑ B. Czeczuga Ketocarotenoids—Autumn carotenoids in Metasequoia glyptostroboides // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(87)90003-2
- ↑ 9,0 9,1 9,2 9,3 9,4 B. Czeczuga Carotenoids in representatives of the cladoniaceae // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(85)90064-X
- ↑ 10,0 10,1 Maoka T., Fujiwara Y., Hashimoto K. et al. Carotenoids in three species of Corbicula Clams, Corbicula japonica, Corbicula sandai, and Corbicula sp. (Chinese Freshwater Corbicula Clam). // J. Agric. Food Chem. — USA: ACS, 2005. — ISSN 0021-8561; 1520-5118 — doi:10.1021/JF058088T — PMID:16218688
- ↑ Fujiwara Y. Structure of new carotenoids from corbicula clam Corbicula japonica // J. Nat. Prod. — ACS, 2005. — ISSN 0163-3864; 1520-6025 — doi:10.1021/NP058053N — PMID:16180810
- ↑ 12,0 12,1 12,2 12,3 12,4 Tushima M., Maoka T., Matsuno T. Comparative biochemical studies of carotenoids in marine invertebrates— the first positive identification of ϵ,ϵ-carotene derivatives and isolation of two new carotenoids from chitons // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 2003. — ISSN 0305-0491 — doi:10.1016/0305-0491(89)90393-3
- ↑ 13,0 13,1 Tsushima M., Matsuno T., Maoka T. new acetylenic carotenoids from the starfishes Asterina pectinifera and Asterias amurensis // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 1989. — ISSN 0305-0491 — doi:10.1016/0305-0491(89)90054-0
- ↑ Grung M., Metzger P., Synn∅ve Liaaen-Jensen Algal carotenoids 53; secondary carotenoids of algae 4; secondary carotenoids in the green alga Botryococcus braunii, race L, new strain // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(94)90111-2
- ↑ Grung M., Metzger P., Liaaen-jensen S. Primary and secondary carotenoids in two races of the green alga Botryococcus braunii // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(89)90001-X
- ↑ 16,0 16,1 S. Arad (Malis), E. Cohen, A. Ben Amotz Accumulation of canthaxanthin in Chlorella emersonii // Physiol. Plant. — Wiley-Blackwell, 2003. — ISSN 0031-9317; 1399-3054 — doi:10.1034/J.1399-3054.1993.870217.X
- ↑ 17,0 17,1 17,2 17,3 Burczyk J. Cell wall carotenoids in green algae which form sporopollenins // Phytochemistry — Elsevier BV, 2002. — 8 p. — ISSN 0031-9422; 1873-3700 — doi:10.1016/S0031-9422(00)81494-6
- ↑ 18,0 18,1 B. Czeczuga, B. Cifuentes, P.A. Reynaud Carotenoids in lichens from the Canary Islands // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(88)90082-8
- ↑ B. Czeczuga Carotenoids in fish—XXX. Rhodoxanthin in Ctenopharyngodon idella Val. (cyprinidae) // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 2003. — ISSN 0305-0491 — doi:10.1016/0305-0491(81)90400-4
- ↑ Findlay J. A., Daljeet A., Matsoukas J. et al. Constituents of the Sea Cucumber Cucumaria frondosa // J. Nat. Prod. — ACS, 2005. — ISSN 0163-3864; 1520-6025 — doi:10.1021/NP50033A039
- ↑ Tsushima M., Matsuno T. Carotenoids of shellfishes—X. Reductive metabolic pathways of echinenone and fritschiellaxanthin in the spindle shell Fusinus perplexus // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 2003. — ISSN 0305-0491 — doi:10.1016/0305-0491(89)90333-7
- ↑ Tanaka Y., Inoue T. A new aldehydic carotenoid gelliodesxanthin from sea sponge Gelliodes callista. // 日本水産学会誌 — 1987. — ISSN 1349-998X; 0021-5392 — doi:10.2331/SUISAN.53.1271
- ↑ Tanaka Y., Yamada S., Sameshima M. Novel Apocarotenoid Apoastacenal Isolated from Nudibranch Eggmasses // 日本水産学会誌 — 1992. — ISSN 1349-998X; 0021-5392 — doi:10.2331/SUISAN.58.1549
- ↑ Zhmyrko T. G., �. I. Gigienova, Umarov A. U. Vitamins of the oil of the fruit ofHippopha� rhamnoides // Chemistry of Natural Compounds — Springer Science+Business Media, 2004. — ISSN 0009-3130; 1573-8388 — doi:10.1007/BF00713311
- ↑ Matsuno T., Watanabe T., Maoka T. et al. Carotinoids of crustacea—VII. Carotenoids in the sea louse Ligia exotica (Crustacea: Isopoda) // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 2003. — ISSN 0305-0491 — doi:10.1016/0305-0491(90)90313-I
- ↑ 26,0 26,1 26,2 26,3 26,4 26,5 Liaaen-Jensen S. The carbohydrate moieties bound to the carotenoids myxol and oscillol and their chemosystematic applications // Phytochemistry — Elsevier BV, 1986. — 6 p. — ISSN 0031-9422; 1873-3700 — doi:10.1016/S0031-9422(00)81568-X
- ↑ Katagiri K., Koshino Y., Maoka T. et al. Occurrence of pirardixanthin derivatives in the prawn, Penaeus japonicus // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 2003. — ISSN 0305-0491 — doi:10.1016/0305-0491(87)90484-6
- ↑ M Tsushima, E Mune, T Maoka et al. Isolation of stereoisomeric epoxy carotenoids and new acetylenic carotenoid from the common freshwater goby Rhinogobius brunneus, Isolation of Stereoisomeric Epoxy Carotenoids and New Acetylenic Carotenoid from the Common Freshwater Goby Rhinogobius brunneus // J. Nat. Prod. — ACS, 2000. — ISSN 0163-3864; 1520-6025 — doi:10.1021/NP990580H — PMID:10924174
- ↑ J. Burczyk Biogenetic relationships between ketocarotenoids and sporopollenins in green algae // Phytochemistry — Elsevier BV, 2002. — 7 p. — ISSN 0031-9422; 1873-3700 — doi:10.1016/S0031-9422(00)81493-4
- ↑ B. Czeczuga, V. Alstrupt The carotenoid content of lichens from Greenland // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(87)90002-0
- ↑ Bjørnland T. Chromatographic separation and spectrometric characterization of native carotenoids from the marine dinoflagellate Thoracosphaera heimii // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(90)90002-W
- ↑ Patočka J., Jakl J. Biomedically relevant chemical constituents of Valeriana officinalis // J. Appl. Biomed. / J. Berger — University of South Bohemia in České Budějovice, 2010. — ISSN 1214-021X; 1214-0287 — doi:10.2478/V10136-009-0002-Z
- ↑ Cooney J. J., Marks H. W., Smith A. M. Isolation and Identification of Canthaxanthin from Micrococcus roseus // J. Bacteriol. / T. J. Silhavy — Baltimore: ASM, 2020. — ISSN 0021-9193; 1098-5530; 1067-8832 — doi:10.1128/JB.92.2.342-345.1966
- ↑ Czygan F. On the Metabolism of Carotenoids in the Crustacean Artemia salina // Z. Naturforsch. B Chem. Sci. — Verlag Walter de Gruyter, 1968. — ISSN 0932-0776; 1865-7117 — doi:10.1515/ZNB-1968-1016
- ↑ Haxo F. Carotenoids of the Mushroom Cantharellus cinnabarinus // Botanical Gazette — Chicago [etc.]: University of Chicago Press, 1950. — 5 p. — ISSN 0006-8071; 1940-1205 — doi:10.1086/335653
- ↑ Maoka T., Akimoto N. 2,3'-Dihydroxycanthaxanthin, a new carotenoid with a 2-hydroxy-4-oxo-beta-end group from the hermit crab, Paralithodes brevipes // Chemical & Pharmaceutical Bulletin — Pharmaceutical Society of Japan, 2006. — ISSN 0009-2363; 1347-5223 — doi:10.1248/CPB.54.1462 — PMID:17015993
- ↑ 37,0 37,1 37,2 Martínez H. R. Carotenoid content of chlorophycean microalgae: factors determining lutein accumulation in Muriellopsis sp. (Chlorophyta) // J. Biotechnol. — Elsevier BV, 2000. — ISSN 0168-1656; 1873-4863 — doi:10.1016/S0168-1656(99)00178-9 — PMID:10784296
- ↑ Bandaranayake W. M., Gentien P. Carotenoids of temora turbinata, centropages furcatus, undinula vulgaris and euchaeta russelli // Comparative Biochemistry and Physiology Part B: Comparative Biochemistry — Elsevier BV, 1982. — ISSN 0305-0491 — doi:10.1016/0305-0491(82)90219-X
- ↑ Heelis D. V., W. Kernick, Phillips G. O. et al. Separation and identification of the carotenoid pigments of stigmata isolated from light-grown cells of Euglena gracilis strain Z // Archives of Microbiology — Springer Science+Business Media, 1979. — ISSN 0302-8933; 1432-072X; 0003-9276 — doi:10.1007/BF00425057 — PMID:117781
- ↑ 40,0 40,1 LaFountain A. M., Prum R. O. Carotenoids from the crimson and maroon plumages of Old World orioles (Oriolidae). // Arch. Biochem. Biophys. — Academic Press, Elsevier BV, 2013. — ISSN 0003-9861; 1096-0384 — doi:10.1016/J.ABB.2013.07.001 — PMID:23851380
- ↑ 41,0 41,1 Liaaen-Jensen S. Carotenoids of Prymnesiophyceae (Haptophyceae) // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(77)90034-5
- ↑ 42,0 42,1 Fox D. L., Hopkins T. S. Comparative metabolic fractionation of carotenoids in three flamingo species // Comparative biochemistry and physiology — Pergamon Press, 1966. — ISSN 0010-406X; 1879-3029 — doi:10.1016/0010-406X(66)90125-3 — PMID:5943916
- ↑ B. Czeczuga, E. Czeczuga-Semeniuk, S. Calvelo et al. Carotenoids in representatives of theProtousnea (Parmeliaceae), endemic genus from South America // Feddes Repertorium / Hrsg.: T. Stützel — Wiley-Blackwell, 2005. — ISSN 0014-8962; 1522-239X — doi:10.1002/FEDR.200411068
- ↑ 44,0 44,1 Kleinig H, Heumann W, Meister W et al. Carotenoids of rhizobia. I. New carotenoids from Rhizobium lupini // Helvetica Chimica Acta — Wiley, 1977. — ISSN 0018-019X; 1522-2675 — doi:10.1002/HLCA.19770600131 — PMID:838596
- ↑ Liaaen-Jensen S. Carotenoid Distribution Patterns in Bacillariophyceae (Diatoms) // Biochem. Syst. Ecol. — Elsevier BV, 2003. — ISSN 0305-1978; 1873-2925 — doi:10.1016/0305-1978(88)90067-1
- ↑ Matus Z., Deli J., Szabolcs J. Carotenoid composition of yellow pepper during ripening: isolation of .beta.-cryptoxanthin 5,6-epoxide // J. Agric. Food Chem. — USA: ACS, 2005. — ISSN 0021-8561; 1520-5118 — doi:10.1021/JF00011A003
Чыганаклар
үзгәртү- Джек Кански. Клиник офтальмология. Системалаштырылган караш. / редакторлар: Еричева В.П.. — 2009. — Б. 944. — ISBN 83-7609-034-8.