Copyright
©The Author(s) 2022.
World J Diabetes. Aug 15, 2022; 13(8): 622-642
Published online Aug 15, 2022. doi: 10.4239/wjd.v13.i8.622
Published online Aug 15, 2022. doi: 10.4239/wjd.v13.i8.622
CAS | Name | GenecardID | Attribution |
512-61-8 | (-)-α-Santalene | PTGS2, CHRM2 | JH |
87-44-5 | Caryophyllene | PTGS2, CHRM2 | BZ, JH, CZ, ZHP, TNX |
495-60-3 | α-Zingiberene | PTGS2, DPP4 | JH |
20307-83-9 | β-Sesquiphellandrene | PTGS2 | JH |
644-30-4 | α-Curcumene | PTGS2, TOP2A, DPP4 | JH |
1139-30-6 | Caryophyllene oxide | CHRM2, DPP4 | ZHP, TNX |
639-99-6 | Elemol | CHRM2 | ZHP, JH |
58334-55-7 | Zingiberenol | CHRM2 | JH |
6989-21-5 | Atractylon | SCN5A, CHRM4, HTR2A, CHRM2, OPRM1 | CZ |
82508-14-3 | 2-methyl-6-(4-methylidenecyclohex-2-en-1-yl)hept-2-en-4-one | PTGS2, CHRM2 | JH, ZHP, CZ |
112-39-0 | Methyl palmitate | PTGS2, IL-10, TNF, IL-6 | JH, ZHP, BZ, HB, THF |
473-15-4 | beta-Eudesmol | CHRM2 | ZHP, JH, CZ |
532-65-0 | (6S)-2-methyl-6-(4-methylphenyl)hept-2-en-4-one | DPP4, PTGS2, CHRM2x, ampC | JH |
112-62-9 | Methyl oleate | RXRA | ZHP, THF |
1937-62-8 | trans-octadec-9-enoicacidmethylester | RXRA | ZHP, THF |
112-63-0 | methyl linoleate | PTGS2, RXRA | BZ, THF, ZHP, TNX |
301-00-8 | 9,12,15-Octadecatrienoic acid, methyl ester, (Z,Z,Z)- | PTGS2, RXRA | THF |
38142-57-3 | 2-Methyl-6-(p-tolyl)hept-2-en-4-ol | PTGS2, CHRM2, DPP4, ampC, RXRA | THF, ZHP, TNX |
1957—10—3 | Palmitic acid | PTGS2, IL-10, TNF, PCYT1A | DH, ZHP, THF |
149-91-7 | Gallic acid | PTGS2, PTPN1, TOP2A | DH, TNX, CP, GC, JH |
23313-21-5 | Emodin-8-Beta-D-Glucoside | TOP2A | DH |
458-37-7 | Curcumin | PTGS2, PTPN1 | JH |
22608-11-3 | Demethoxycurcumin | PTGS2, PTPN1, AKR1B1, ABCB1, SCN5A | JH |
520-26-3 | Hesperidin | PTGS2 | CP |
14259-47-3 | isosakuranetin-7-O-rutinoside | TOP2A | CP |
10236-47-2 | Naringin | TOP2A, CDKN1A, TNF, RASGRF2, RAF, PTGS2, ampC, MTTP, APOB, mvaA, PPARA | CP, GC |
21967-41-9 | Baicalin | PTPN1, TOP2A | DH |
88191-48-4 | Catechin | CHRM2 | DH, CP |
491-70-3 | Luteolin | PTGS2, DPP4, EGFR, IL10, CDK4, TNF, IL6, NFKBIA, psdA1, IL2, TOP2A, SLC2A4, INSR, MET | CP, ZHP |
551-15-5 | Liquiritin | PTGS2 | GC |
478-43-3 | Rheic acid | PTGS2, AKR1B1 | DH |
2086-83-1 | Berberine | PTGS2, RXRA | HB |
77-92-9 | Citric acid | PTGS2, AKR1B1, GRIN2A, GRIA2, PTPN1 | DH |
320-77-4 | Isocitric acid | PTGS2 | DH |
7200-25-1 | DL-Arginine | PTGS2 | THF |
446-72-0 | Genistein | PTGS2, EGFR, TNF, SELE, IL8 | GC |
482-45-1 | Isoimperatorin | PTGS2 | BZ |
486-66-8 | Daidzein | PTGS2, RXRA | GC |
6831-17-0 | Aristolone | CHRM2, PTGS2 | BZ |
532-65-0 | (+) -ar-Turmerone | PTGS2, RXRA, CHRM2, ampC, DPP4 | JH |
327-97-9 | Chlorogenic acid | PTGS2 | HB |
77-95-2 | D-(-)-Quinic acid | PTGS2 | HB |
1460-73-7 | Agarospirol | CHRM2 | ZHP |
- Citation: Li XY, Zhang XT, Jiao YC, Chi H, Xiong TT, Zhang WJ, Li MN, Wang YH. In vivo evaluation and mechanism prediction of anti-diabetic foot ulcer based on component analysis of Ruyi Jinhuang powder. World J Diabetes 2022; 13(8): 622-642
- URL: https://www.wjgnet.com/1948-9358/full/v13/i8/622.htm
- DOI: https://dx.doi.org/10.4239/wjd.v13.i8.622