CAS 14897-06-4
:clorofilida a
Descrição:
clorofilida a é um derivado da clorofila que desempenha um papel crucial na fotossíntese, encontrado principalmente em plantas, algas e cianobactérias. É um pigmento verde que absorve a energia da luz, facilitando a conversão da energia solar em energia química. Estruturalmente, clorofilida a é caracterizado por um anel de porfirina com um íon de magnésio central, que é essencial para suas propriedades de absorção de luz. Ao contrário da clorofila a, clorofilida a não possui a cauda de fitol, tornando-o mais polar e solúvel em água. Este composto exibe forte absorção nas regiões azul e vermelha do espectro de luz, o que é vital para a eficiência fotossintética. clorofilida a também está envolvido em vários processos bioquímicos, incluindo a síntese de clorofila e a regulação do crescimento das plantas. Sua presença é significativa em estudos relacionados à fisiologia vegetal, ecologia e bioquímica, pois serve como um indicador da saúde e produtividade das plantas. Além disso, clorofilida a tem aplicações potenciais nas indústrias alimentícia e cosmética devido às suas propriedades antioxidantes.
Fórmula:C35H34MgN4O5
InChI:InChI=1/C35H36N4O5.Mg/c1-8-19-15(3)22-12-24-17(5)21(10-11-28(40)41)32(38-24)30-31(35(43)44-7)34(42)29-18(6)25(39-33(29)30)14-27-20(9-2)16(4)23(37-27)13-26(19)36-22;/h8,12-14,17,21,31H,1,9-11H2,2-7H3,(H3,36,37,38,39,40,41,42);/q;+2/p-2/t17-,21-,31+;/m0./s1
Chave InChI:InChIKey=ANWUQYTXRXCEMZ-NYABAGMLSA-L
SMILES:CC1=C2[N-]3[Mg+2]45[N]=6C(=C7C3=C1C(=O)[C@@H]7C(OC)=O)[C@@H](CCC([O-])=O)[C@H](C)C6C=C8[N-]4C(=CC9=[N]5C(=C2)C(CC)=C9C)C(C=C)=C8C.[H+]
Sinónimos:- 3-Phorbinepropanoic acid, 9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-, magnesium complex, [3S-(3α,4β,21β)]-
- Magnesate(1-), (9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-N23,N24,N25,N26)-, hydrogen, (SP-4-2-(3S-(3alpha,4beta,21beta)))-
- Magnesate(1-), [(3S,4S,21R)-9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-κN<sup>23</sup>,κN<sup>24</sup>,κN<sup>25</sup>,κN<sup>26</sup>]-, hydrogen (1:1), (SP-4-2)-
- Magnesate(1-), [(3S,4S,21R)-9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-κN<sup>23</sup>,κN<sup>24</sup>,κN<sup>25</sup>,κN<sup>26</sup>]-, hydrogen, (SP-4-2)-
- Magnesate(1-), [9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-N<sup>23</sup>,N<sup>24</sup>,N<sup>25</sup>,N<sup>26</sup>]-, hydrogen, [SP-4-2-[3S-(3α,4β,21β)]]-
- Magnesate(1-), [9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-κN<sup>23</sup>,κN<sup>24</sup>,κN<sup>25</sup>,κN<sup>26</sup>]-, hydrogen, [SP-4-2-[3S-(3α,4β,21β)]]-
- Magnesium, [dihydrogen 21-carboxy-14-ethyl-4,8,13,18-tetramethyl-20-oxo-9-vinyl-3-phorbinepropionato(2-)]-, 21-methyl ester
- Magnesium-pheophorbide A
- Phorbine, magnesate(1-) deriv.
- magnesium (3S,4S,21R)-3-(2-carboxyethyl)-9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-23,25-didehydrophorbine-23,25-diide
- magnesium hydrogen 3-[9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxido-23,25-didehydro-4,21-dihydro-3H-phorbin-23-id-3-yl]propanoate (1:1:1)
- Magnesate(1-), [(3S,4S,21R)-9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-κN23,κN24,κN25,κN26]-, hydrogen (1:1), (SP-4-2)-
- Magnesate(1-), [(3S,4S,21R)-9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-κN23,κN24,κN25,κN26]-, hydrogen, (SP-4-2)-
- Magnesate(1-), [9-ethenyl-14-ethyl-21-(methoxycarbonyl)-4,8,13,18-tetramethyl-20-oxo-3-phorbinepropanoato(3-)-κN23,κN24,κN25,κN26]-, hydrogen, [SP-4-2-[3S-(3α,4β,21β)]]-
- Chlorophyllide a
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Pureza (%)
0
100
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0
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50
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90
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95
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100
1 produtos.
Chlorophyllide A
CAS:<p>Chlorophyllide A is a chlorophyll molecule that has been synthesized by the enzymatic conversion of an existing chlorophyll molecule. It can be used as a model system for studying the physiological function of chlorophyll and its role in photosynthesis. The synthesis of Chlorophyllide A has been shown to be biocompatible with cells and tissues, making it an excellent candidate for drug delivery systems. The synthesis of this molecule is achieved through a reaction mechanism involving glutamate dehydrogenase, which adds a hydroxyl group to the cysteine residue on the chlorophyll molecule. This reaction takes place in low light conditions, which prevents photodegradation of this molecule. Chlorophyllide A also has a pH optimum at around pH 7-8 and does not react with proteins or nucleic acids.</p>Fórmula:C35H34MgN4O5Pureza:90%MinCor e Forma:PowderPeso molecular:614.97 g/mol
