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 1-20    21-23 
1.
Action of curcuminoids of the hemolysis and lipid peroxidation of mouse erythrocytes induced by hydrogen peroxide // J. Ethnopharmacol., 1988. Vol. 23, N 1.-С.105-108

2.
Anti-tumour and antioxidant activity of natural curcuminoids // Cancer Lett., 1995. Vol. 94, N 1.-С.79-83

3.
Anti-tumour and antioxidant activity of natural curcuminoids // Cancer Lett., 1995. Vol. 94, N 1.-С.79-83

4.
Babish John G. Curcuminoid compositions exhibiting synergistic inhibition of the expression and/or activity of cyclooxygenase-2

5.
Changtam Isoxazole analogs of curcuminoids with highly potent multidrug-resistant antimycobacterial activity // Eur. J. Med. Chem., 2010. Vol. 45, N 10.-С.4446-4457

6.
Chauhan S.K. Estimation of curcuminoids in Curcuma longa by HPLC and spectrophotometric methods // Indian J. Pharm. Sci., 1999. Vol. 61, N 1.-С.58-60

7.
Chauhan S.K. Estimation of curcuminoids in Curcuma longa by HPLC and spectrophotometric methods // Indian J. Pharm. Sci., 1999. Vol. 61, N 1.-С.58-60

8.
Correlation of Phenylalanine ammonia lyase (PAL) and Tyrosine ammonia lyase (TAL) activities to phenolics and curcuminoid content in ginger and its wild congener, Zingiber zerumbet following Pythium myriotylum infection // Eur. J. Plant Pathol., 2016. Vol. 145, N 4.-С.777-785

9.
Curcuminoids from Curcuma longa and their inhibitory activities on influenza A neuraminidases // Food Chem., 2012. Vol. 134, N 1.-С.21-28

10.
Curcuminoids inhibit multiple human cytochromes P450, UDP-glucuronosyltransferase, and sulfotransferase enzymes, whereas piperine is a relatively selective CYP3A4 inhibitor // Drug Metab. and Dispos., 2008. Vol. 36, N 8.-С.1594-1605

11.
Curcuminoids promote neurite outgrowth in PC12 cells through MAPK/ERK-and PKC-dependent pathways // J. Agr. and Food Chem., 2012. Vol. 60, N 1.-С.433-443

12.
Curcuminoids promote neurite outgrowth in PC12 cells through MAPK/ERK-and PKC-dependent pathways // J. Agr. and Food Chem., 2012. Vol. 60, N 1.-С.433-443

13.
Curcuminoids promote neurite outgrowth in PC12 cells through MAPK/ERK-and PKC-dependent pathways // J. Agr. and Food Chem., 2012. Vol. 60, N 1.-С.433-443

14.
Evaluation of novel alginate foams as drug delivery systems in antimicrobial photodynamic therapy (aPDT) of infected wounds. An in vitro study: Studies on curcumin and curcuminoides XL // J. Pharm. Sci., 2010. Vol. 99, N 8.-С.3499-3513

15.
In vitro studies on the biotransformation of curcuminoids // Drug Metab. Rev., 2002. Vol. 35, прил. 1.-С.106

16.
Inhibitory effect of curcuminoids and tetrahydrocurcuminoids on equine activated neutrophils and myeloperoxidase activity // Physiol. Res., 2008. Vol. 57, N 4.-С.577-587

17.
Masuda Isolation and structure determination of cassumunarins A,B, and C: New anti-inflammatory antioxidants from a tropical ginger, Zingiber cassumunar // J. Amer. Oil Chem. Soc., 1995. Vol. 72, N 9.-С.1053-1057

18.
Optimized turmeric extracts have potent anti-amyloidogenic effects // Curr. Alzheimer Res., 2009. Vol. 6, N 6.-С.564-571

19.
Production of curcuminoids from tyrosine by a metabolically engineered Escherichia coli using caffeic acid as an intermediate // Biotechnol. J., 2015. Vol. 10, N 4.-С.599-609

20.
Sreejayan Free radical scavenging activity of curcuminoids // Arzneim.-Forsch., 1996. Vol. 46, N 2.-С.169-171

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