Skip to main content
. 2019 Aug 5;56(12):5153–5166. doi: 10.1007/s13197-019-03986-1

Table 2.

HPLC and LC–MS/MS methods for determination of curcuminoids

Sample matrix Mobile phase Column and detector Separation time (min) LOD and flow rate Reference
HPLC methods
 Turmeric powder C2H5OH:H2O (96:04 v/v) RP-5-NH2, UV 280 nm 20.73 −; 1 mL/min Khurana and Ho (1988)
 Fresh turmeric extract (A) H2O (0.25% CH3COOH) and (B) CH3CN, 0–17 min, 40– 60% B; 17–32 min, 60–100% B; 32–38 min, 100% B; 38–40 min, 100–40% B C18, UV 200–500 nm 14.0 –; 0.2 mL/min He et al. (1998)
 Turmeric and spent oleoresin CH3OH–2% CH3COOH– CH3CN C18, UV 425 nm, UV 425 nm 6.75 0.05 µg/mL, 1 mL/min Jayaprakasha et al. (2002)
 Turmeric powder CH3CN–0.1% CF3COOH– (50:50 v/v), (pH adjusted to 3.0 with NH3) C18, UV–VIS 420 nm 9.0 27.99, 31.91 and 21.81 ng/mL for C, DMC and BDMC; 1.5 mL/min Jadhav et al. (2007)
 Turmeric extracts

Isocratic elution of CH3CN

and 2% v/v CH3COOH (40:60v/v)

RP-Alltima C18

Column

13.6 0.90, 0.84, 0.08 µg/mL for C, DMC and BDMC; 2.0 mL/min Wichitnithad et al. (2009)
 Turmeric powder and tablet 0.1 M of acetate buffer (pH 4.0)–CH3CN (57:43 v/v)

C18,

fluorescence detector

RF-10AXL

~28 1.5, 0.9 and 0.09 ng/mL for C, DMC and BDMC; 1 mL/min Zhang et al. (2009)
 Turmeric oleoresin C3H8O:H2O (95:05 v/v) Exil-Amino column, UV–VIS 425 nm 11 0.3 µg/mL; 1 mL/min Naidu et al. (2009)
 Curcuminoids-loaded liposome 1% H3PO4–CH3CN C18, UV–VIS 425 nm 6.36 2.5 mg/mL; 1.0 mL/min Jangle and Thorat (2013)
 Turmeric powder ACN–MeOH–H2O (40:20:40 v/v RP-phenyl column, UV–VIS 10.5 0.30–0.50 ng/mL; 1.0 mL/min Ali et al. (2014)
 Turmeric powder 10 mM Na2HPO4:H3PO4 (pH 5.0) (50:50 v/v) C18, Electrochemical detection cell 15.0 0.208, 0.197 and 0.227 µM for C, DMC and BDMC; 1.0 mL/min Long et al. (2014)
 Turmeric colour pigments, curry powder CH3OH (A):C4H8O (B): 0.1 g/100 ml H3PO4 in H2O (C). Gradient system: 0–15 min, 10–15% A, 30–40% B, and 60–45% C; 15–20 min, 15–55% A, 40–10% B, and 45–35% C C18, UV 425 nm 17.13 0.27, 0.18, 0.23 µg/mL for C, DMC and BDMC; 1.0 mL/min Li et al. (2014b)
 Turmeric extract and emulsion CH3CN:CH3OH:H2O (40:20:40 v/v/v) C18, UV/VIS detector 6.67 0.305 µg/mL; 1.5 mL/min Syed et al. (2015)
 Turmeric rhizome Acetonitrile:water (70:30 v/v). C18, DAD 15.08 1.0 µg/mL; 0.8 mL/min Hwang et al. (2016)
 In different commercial products 0.1% CH3COOH in H2O(A): CH3CN with 0.1% CH3COOH (B) Gradient Program:0 min,45% of solvent B; Step 1: 1.5 min, 65% solvent B; Step 2: 2.5 min, 90% solvent B; Step 3: 4.0 min, 90% C18, Photodiode array detector 1.3 0.40, 0.20, 0.19 µg/mL for C, DMC and BDMC 2.5 mL/min Osorio-Tobón et al. (2016)
 In different commercial products CH3CN: 0.1% CH2O2 in H2O C18, Photodiode array detector 9.18 7.40, 9.24 and 6.48 ng/mL for C, DMC and BDMC; 0.8 mL/min Peram et al. (2017)
 Java turmeric Gradient elution, acetonitrile- 0.001% formic acid Phenomenex C18, UV–VIS 425 nm 10.72 0.0250, 0.0166, 0.0119 µg/mL for C, DMC and BDMC;1 mL/min Erpina et al. (2017)
LC–MS/MS methods
 Equine plasma 0.1% (v/v) CH2O2 in C2H3N (A) and 0.1% (v/v) CH2O2 in H2O (B); isocratic program (43% A: 57% B)

XBridge BEH C18, MS,

electrospray ionization

9 1 ng/mL; 0.2 mL/min Liu et al. (2018b)
 Bacterial culture medium 10 mM C2H7NO2 and 0.1% (v/v) CH2O2 in H2O (A) or in acetonitrile (B). Gradient elution: 0–5 min, 20% B; 5–8.1 min, 80% B; 8.1–10.0 min, 20% B.

Poroshell 120 EC-C8 column

, MS, electrospray ionization

10 0.1 µM; 0.3 mL/min Tan et al. (2015)
 Turmeric rhizome 5 mM NH4HCO2, 0.1% CH2O2, in H2O (A); C2H3N (B); Gradient (in buffer A): 0–2 min, 5% B; 2–57 min, 5–100% B; 57–60 min, 100% B; 60–65 min, 100–5% B; 65–75 min, 5% B Discovery HS C18; MS Sustained off-resonance irradiation fragmentation (SORI) 75 –; 0.25 mL/min Jiang et al. (2006a)
 Plasma samples 10.0 mM NH4HCO2 (pH 3.0) (A) and CH3OH (B) Gradient elution: 0–3.0 min (25–90% B), 3.0–7.50 min (90–90% B), 7.50–7.51 min (90–25% B), 7.51–11.0 min (25–25% B) Xterra MS C18, MS, electrospray ionization 11.0 2.50–179 ng/mL; 0.25 mL/min Kunati et al. (2018)
 Cell medium and mouse plasma 0.1% CH2O2 in C2H3N (50%) (A) and H2O (B); isocratic mode Beta basic C8 column, MS ion reaction monitoring 12 1 ng/mL; 0.2 mL/min Vijaya Saradhi et al. (2010)
 Human plasma 0.1% CH2O2 in C2H3N (50%) (A) and H2O (B); isocratic mode BetaBasic C8 column, MS, electro-spray ionization 5 2.0 ng/ml; 0.2 mL/min Chen et al. (2012)