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天然产物

从自然界存在的生物体内分离、提取得到的有机化合物被称为天然产物,它们在动、植物体内通过生化作用和光合作用形成。例如,淀粉来源于植物的种子、茎及根块;蛋白质则主要来自肉类、乳品、蛋类以及谷物和豆类;许多药物如麻黄碱、薄荷脑、蛇胆等都源自相应生物体;而蓝色染料靛蓝与红色染料茜素分别从天然靛叶和茜草中提取;天然香料如麝香、茉莉、玫瑰等亦来自特定动、植物。

在大多数情况下,这些天然产物对产生它们的植物、昆虫或微生物而言似乎是不必需的,这与糖类、氨基酸、核酸及其多聚体等其他有机化合物显著不同。例如吗啡仅存在于少数几种植物中,如罂粟属的刚毛罂粟和虞美人以及头花千金藤;尽管人类使用它作为镇痛药,但其在这些植物中的功能仍不清楚。青霉素是由少数真菌产生的,而不会被其他生物产生。尽管它们作为抗菌药物用于治疗各种感染性疾病,在产生它们的微生物中却无明显用途。

海洋天然产物指的是从海洋生物中提取的一系列有机物质,包括脂肪族、芳香族、萜类、甾醇以及含氮、含硫等各种类型的化合物。海洋是一个蕴藏丰富药理活性天然产物的宝库,其中生活着地球上约80%的动植物和大约1500种细菌。例如,海藻在中国已有悠久的历史被用作食品和药物,《神农本草经》中就有记载“海藻疗瘿”、“牡蛎强骨节,杀邪气”。海藻富含各种独特结构的有机化合物,其代谢产物具有多种多样的生理活性,特别是以卤素为特征的萜类、脂肪族化合物、含硫和含氮类化合物以及甾醇类化合物等都表现出显著的抗菌及抗心血管疾病的作用。高分子多糖,如醇脂、褐藻胶和卡拉胶,也是由海藻中制得,在工业及医药上具有重要应用价值。

从海洋数千种有毒生物中提取出的强效生理活性成分(如河豚毒素)是大自然赐予人类的宝贵财富。研究发现,在海洋动物的提取物中约10%有抗P388淋巴细胞白血病和KB细胞的作用;而约3.5%的海洋植物提取物具有抗肿瘤或细胞毒性作用。美国研究人员在400多种海洋天然产物中,发现了100种具有生物、药理活性的化合物。

中文名称 英文名称 CAS号 化学式 结构式图片
—— (+/-)-endo-2-hydroxy-1,8-cineol 60761-00-4 C10H18O2
(+/-)-endo-2-hydroxy-1,8-cineol
—— Arjunic acid 31298-06-3 C30H48O5
Arjunic acid
—— 1,1,1-trifluoro-3-diazo-2-oxopropane 433-26-1 C3HF3N2O
1,1,1-trifluoro-3-diazo-2-oxopropane
—— cholestenone 601-57-0 C27H44O
cholestenone
—— Δ<sub>4</sub>-cholesten-3-one 601-57-0 C27H44O
Δ<sub>4</sub>-cholesten-3-one
—— cholestenone 601-57-0 C27H44O
cholestenone
—— cholest-4-en-3-one 601-57-0 C27H44O
cholest-4-en-3-one
—— ginkgolide B 15291-77-7 C20H24O10
ginkgolide B
—— Simiarene 2318-78-7 C30H48O
Simiarene
—— 13β-ethyl-11-methylenegon-4-en-3,17-dione 54024-17-8 C20H26O2
13β-ethyl-11-methylenegon-4-en-3,17-dione
—— [(1R,10S,12R,13E,14R,16S)-13-Ethylidene-14-[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy-8,15-diazahexacyclo[14.2.1.01,9.02,7.010,15.012,17]nonadeca-2,4,6,8-tetraen-18-yl] acetate 31282-07-2 C27H32N2O8
[(1R,10S,12R,13E,14R,16S)-13-Ethylidene-14-[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy-8,15-diazahexacyclo[14.2.1.01,9.02,7.010,15.012,17]nonadeca-2,4,6,8-tetraen-18-yl] acetate
—— Deoxypicropodophyllin 477-51-0 C22H22O7
Deoxypicropodophyllin
—— deoxypicropodophyllotoxin 477-51-0 C22H22O7
deoxypicropodophyllotoxin
—— (5S,5aR,8aR)-5-(3,4,5-trimethoxyphenyl)-5a,8,8a,9-tetrahydro-5H-[2]benzofuro[5,6-f][1,3]benzodioxol-6-one 477-51-0 C22H22O7
(5S,5aR,8aR)-5-(3,4,5-trimethoxyphenyl)-5a,8,8a,9-tetrahydro-5H-[2]benzofuro[5,6-f][1,3]benzodioxol-6-one
—— (-)-isodehydropodophyllotoxin 19186-35-7 C22H22O7
(-)-isodehydropodophyllotoxin
—— rac-(7'β,8α,8'percentb)-3',4',5'-trimethoxy-4,5-methylenedioxy-2,7'-cyclolignan-9',9-olide 477-51-0 C22H22O7
rac-(7'β,8α,8'percentb)-3',4',5'-trimethoxy-4,5-methylenedioxy-2,7'-cyclolignan-9',9-olide
—— Desoxy-picropodophyllin 477-51-0 C22H22O7
Desoxy-picropodophyllin
—— Deoxypodophyllotoxin 477-51-0 C22H22O7
Deoxypodophyllotoxin
—— (-)-isodesoxypodophyllotoxine 477-51-0 C22H22O7
(-)-isodesoxypodophyllotoxine
—— (+/-)-Isopicrodesoxypodophyllotoxin 477-51-0 C22H22O7
(+/-)-Isopicrodesoxypodophyllotoxin
—— kaempferol 3-[α-L-rhamnopyranosyl-(1->6)-β-D-galactopyranoside] 6130-58-1 C27H30O15
kaempferol 3-[α-L-rhamnopyranosyl-(1->6)-β-D-galactopyranoside]
—— kaempferol-3-O-α-L-rhamnopyranosyl(1→6)-β-D-glucopyranoside 6130-58-1 C27H30O15
kaempferol-3-O-α-L-rhamnopyranosyl(1→6)-β-D-glucopyranoside
—— Kaempferol-3-rutinosid 6130-58-1 C27H30O15
Kaempferol-3-rutinosid
—— Kaempferol-3-rhamno-glucosid 6130-58-1 C27H30O15
Kaempferol-3-rhamno-glucosid
—— Kaempferol-3-rhamnoglucosid 6130-58-1 C27H30O15
Kaempferol-3-rhamnoglucosid
—— kaempferol 3-O-rutinoside 6130-58-1 C27H30O15
kaempferol 3-O-rutinoside
—— (6-1)Rhamnosyl-3-O-glucosylkaempferol 6130-58-1 C27H30O15
(6-1)Rhamnosyl-3-O-glucosylkaempferol
—— methyl (1S,12S,14R,15E)-15-ethylidene-3,17-diazapentacyclo[12.3.1.02,10.04,9.012,17]octadeca-2(10),4,6,8-tetraene-13-carboxylate 975-77-9 C20H22N2O2
methyl (1S,12S,14R,15E)-15-ethylidene-3,17-diazapentacyclo[12.3.1.02,10.04,9.012,17]octadeca-2(10),4,6,8-tetraene-13-carboxylate
—— (8,8-dimethyl-8-azoniabicyclo[3.2.1]octan-3-yl) 3-hydroxy-2-phenylpropanoate,nitrate 52-88-0 C18H26NO3*NO3
(8,8-dimethyl-8-azoniabicyclo[3.2.1]octan-3-yl) 3-hydroxy-2-phenylpropanoate,nitrate
—— Sarpagine 482-68-8 C19H22N2O2
Sarpagine
—— 3-tropanol 120-29-6 C8H15NO
3-tropanol
—— 7,20(2H,19H)-Cyclovobasan, 1,2,18,19-tetradehydro-3,17-epoxy-, (3R,7alpha,20alpha)- 1358-76-5 C20H22N2O
7,20(2H,19H)-Cyclovobasan, 1,2,18,19-tetradehydro-3,17-epoxy-, (3R,7alpha,20alpha)-
—— 3β-acetoxy-urs-12-en-28-oic acid 915-79-7 C32H50O4
3β-acetoxy-urs-12-en-28-oic acid
—— Urs-12-en-28-oic acid,3-hydroxy-, (3b,19a,20b)- (9CI) 77-52-1 C30H48O3
Urs-12-en-28-oic acid,3-hydroxy-, (3b,19a,20b)- (9CI)
—— 3-acetyloxy-urs-12-en-28-oic acid 915-79-7 C32H50O4
3-acetyloxy-urs-12-en-28-oic acid
—— ursolic acid 77-52-1 C30H48O3
ursolic acid
—— Ursolic acid 77-52-1 C30H48O3
Ursolic acid
—— 3β-hydroxy-urs-12-en-28-oic acid 77-52-1 C30H48O3
3β-hydroxy-urs-12-en-28-oic acid
—— APOHYOSCINE 535-26-2 C17H19NO3
APOHYOSCINE
—— (1RS,2SR)-1-phenylpropane-1,2-diol 40421-52-1 C9H12O2
(1RS,2SR)-1-phenylpropane-1,2-diol
—— Kirenol 52659-56-0 C20H34O4
Kirenol
—— Vindolin 2182-14-1 C25H32N2O6
Vindolin
—— (-)-vindoline 2182-14-1 C25H32N2O6
(-)-vindoline
—— irinotecan hydrochloride trihydrate 136572-09-3 C33H38N4O6*ClH*3H2O
irinotecan hydrochloride trihydrate
—— 1,10-Dihydroxy-1,2,6a,6b,9,9,12a-heptamethyl-2,3,4,5,6,6a,7,8,8a,10,11,12,13,14b-tetradecahydropicene-4a-carboxylic acid 13849-91-7 C30H48O4
1,10-Dihydroxy-1,2,6a,6b,9,9,12a-heptamethyl-2,3,4,5,6,6a,7,8,8a,10,11,12,13,14b-tetradecahydropicene-4a-carboxylic acid
—— cycloheterophyllin 36545-53-6 C30H30O7
cycloheterophyllin
—— Ugaxanthone 13179-11-8 C18H16O6
Ugaxanthone
—— 5-(6-Hydroxy-1-benzofuran-2-yl)-2-(5-hydroxy-9-methyl-8-oxatricyclo[7.3.1.02,7]trideca-2(7),3,5,10-tetraen-11-yl)benzene-1,3-diol 89199-99-5 C27H22O6
5-(6-Hydroxy-1-benzofuran-2-yl)-2-(5-hydroxy-9-methyl-8-oxatricyclo[7.3.1.02,7]trideca-2(7),3,5,10-tetraen-11-yl)benzene-1,3-diol
—— Curzerenone 20493-56-5 C15H18O2
Curzerenone
—— 4’-O-methylbavachalconea 20784-60-5 C21H22O4
4’-O-methylbavachalconea