| Literature DB >> 35309716 |
Ziyan Wang1, Zuoyuan Wang1, Miaomiao Jiang1, Jing Yang1, Qingfen Meng2, Jianli Guan2, Maoling Xu3, Xin Chai1.
Abstract
By employing nuclear magnetic resonance (NMR), we implemented a chemical research on Shuanghuanglian injection (SHLI) and identified 17 components, including eight primary metabolites and nine secondary metabolites. Guided by the approach of network pharmacology, the potential activities were briefly predicted for seven primary metabolites except for formic acid, such as anti-inflammation, antioxidation, and cardiovascular protection. The focused primary metabolites were quantified by a proton nuclear magnetic resonance (1H-NMR) method, which was verified with good linearity and satisfactory precision, repeatability, stability, and accuracy (except for myo-inositol with mean recovery at 135.78%). Based on the successfully established method, seven primary metabolites were effectively quantified with a slight fluctuation in 20 batches of SHLIs. The average total content of these compounds was 6.85 mg/mL, accounting for 24.84% in total solid of SHLI. This research provides an alternative method for analysis of primary metabolites and contributes to the quality control of SHLI.Entities:
Year: 2022 PMID: 35309716 PMCID: PMC8926469 DOI: 10.1155/2022/7763207
Source DB: PubMed Journal: J Anal Methods Chem ISSN: 2090-8873 Impact factor: 2.193
Figure 1Representative 1H-NMR spectrum of SHLI from δ 0.0 to 10.0 (a), enlarged spectrum between δ 0.8 and 3.0 (b), from δ 3.0 to 5.5 (c), and in the range of δ 6.0 and 9.0 (d). TSP-d4 as an internal standard with a chemical shift at 0.0 ppm. Characteristic signal peaks of 17 metabolites: 1 valine; 2 glucose; 3 fructose; 4 mannose; 5 sucrose; 6 formic acid; 7 succinic acid; 8 myo-inositol; 9 chlorogenic acid; 10 neochlorogenic acid; 11 cryptochlorogenic acid; 12 caffeic acid; 13 forsythoside A; 14 isoforsythiaside A; 15 forsythoside E; 16 baicalin; 17 secoxyloganin.
The assignments of chemical shifts for 17 components by 1H-NMR and13C-NMR spectra of SHLI (H2O : D2O = 1 : 1).
| Metabolites |
|
|
|---|---|---|
| Valine [ | 3.61 (d, | 63.4 ( |
| Glucose [ | 5.24 (d, | 95.0 ( |
| Fructose [ | 3.66–3.68 (m, | 65.8 ( |
| Mannose [ | 5.19 (d, | 96.9 ( |
| Sucrose [ | 5.42 (d, | 95.0 (C-1), − (C-2), 75.5 (C-3), 72.1 (C-4), 75.3 (C-5), 63.0 (C-6), 64.2 (C-1′), 106.5 (C-2′), − (C-3′), 76.9 (C-4′), 84.2 (C-5′), 65.3 (C-6′) |
| Formic acid [ | 8.46 (s, H-1) | − (C-1) |
| Succinic acid [ | 2.48 (s, H-2, H-3) | − (C-1, C-4), − (C-2, C-3) |
|
| 4.06 (dd, | 75.1 (C-1), 74.1(C-2, C-6), 75.3 (C-3, C-5), 77.3 (C-4) |
| Chlorogenic acid [ | 2.16 (m, H-2), 5.27 (m, H-3), 3.85 (dd, | — |
| Neochlorogenic acid [ | 1.93 (m, H-2), 5.36 (m, H-3), 3.96 (m, H-4), 4.16 (m, H-5), 2.04–2.14 (m, H-6), 7.09 (brs, H-2′), 6.84 (d, | — |
| Cryptochlorogenic acid [ | 2.03 (m, H-2), 4.30 (m, H-3), 3.96 (m, H-4), 4.90 ( | — |
| Caffeic acid [ | 7.00 (d, | — |
| Forsythoside A [ | 6.82 (brs, H-2), 6.78 (d, | — |
| Isoforsythiaside A [ | 6.82 (brs, H-2), 6.77 (d, | — |
| Forsythoside | 6.81 (d, | − |
| Baicalin [ | 6.33 (s, H-3), 6.53 (s, H-8), 7.51 (d, | 167.2 (C-2), 106.4 (C-3), 185.5 (C-4), 148.5 (C-5), 135.1 (C-6), 153.8 (C-7), 96.9 (C-8), 152.6 (C-9), 108.8 (C-10), 132.2 (C-1′), 128.7 (C-2′, C-6′), 131.7 (C-3′, C-5′), 135.1 (C-4′), 102.6 (C-1″), 75.4 (C-2″), 78.0 (C-3″), 74.7 (C-4″), 79.4 (C-5″), 178.0 (C-6″) |
| Secoxyloganin [ | 5.52 (d, | — |
Singlet (s), doublet (d), triplet (t), doublet of doublets (dd), doublet of doublets of doublets (ddd), quintet (q), multiplet (m), broad doublet (brd), broad singlet (brs), furanose (f), pyranose (p), proton signal peaks were overlaid in 1H-NMR and carbon signal responses were too low or overlapped in 13C-NMR (−).
Figure 2Chemical structures of 17 components in SHLI.
Figure 3The key HSQC correlations of the identified components in HSQC spectrum of SHLI.
Figure 4Parallel coordinate plot for the ingredients-targets-pathways-activities network of the focused primary metabolites from SHLI.
Chemical shift and signals assignment of quantitative protons for seven primary metabolites.
| Primary metabolites | Chemical shift and signals assignment of the quantitative protons |
|---|---|
| Valine | 0.99 ( |
| Glucose | 5.24 ( |
| Fructose | 4.12 ( |
| Mannose | 5.19 ( |
| Sucrose | 5.42 (H-1) |
| Succinic acid | 2.48 (H-2, H-3) |
|
| 4.06 (H-1) |
Summary results of linear regression, LODs, LOQs, precision, repeatability, stability, and recovery for the primary metabolites in SHLI.
| Primary metabolites | Linear regression | Precision RSD (%) | Repeatability ( | Stability ( | Recovery ( | |||
|---|---|---|---|---|---|---|---|---|
| Regression equation | Linear range (mg/mL) | Correlation coefficients ( | Intraday | Interday | ||||
| Valine |
| 0.0010–0.1320 | 0.9998 | 1.3 | 1.0 | 0.8 | 1.2 | 98.43 ± 1.55 |
| Glucose |
| 0.0540–6.9180 | 0.9998 | 0.6 | 0.5 | 1.9 | 0.3 | 100.94 ± 1.74 |
| Fructose |
| 0.0696–8.9108 | 0.9997 | 0.4 | 0.6 | 0.3 | 0.6 | 102.30 ± 1.52 |
| Mannose |
| 0.0053–0.6840 | 0.9999 | 1.1 | 1.3 | 2.7 | 0.7 | 105.93 ± 0.52 |
| Sucrose |
| 0.0167–2.1320 | 0.9998 | 0.4 | 0.5 | 1.1 | 0.5 | 93.96 ± 1.14 |
| Succinic acid |
| 0.0008–0.0961 | 0.9997 | 0.4 | 0.7 | 0.6 | 0.4 | 102.66 ± 1.69 |
|
|
| 0.0288–3.6924 | 0.9997 | 0.7 | 0.7 | 0.4 | 0.4 | 135.78 ± 1.21 |
Figure 5Boxplot for the quantitative analysis (a) and double-Y plot for the total content and content percentage (b) of seven primary metabolites in 20 batches SHLIs (n = 3).