| Literature DB >> 27413385 |
Wei Wu1, Ruijie Luo1, Ziqi Lin1, Qing Xia1, Ping Xue1.
Abstract
To reveal the key molecular mechanisms of ChaiqincEntities:
Year: 2016 PMID: 27413385 PMCID: PMC4930819 DOI: 10.1155/2016/3265368
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Components of Chinese drug decoction pieces in the CQCQD formula and their production lot numbers and the relative contents of major active ingredients.
| Pharmaceutical name and Chinese phonetic name | Botanical name and plant part | Composition (%) | Lot number | Quantitative analysis of major active ingredients | |
|---|---|---|---|---|---|
| Reference markers (HPLC) | Relative content (% w/w) | ||||
| Bupleuri Radix (Chai Hu) |
| 11.111 | 2014100802 | Saikosaponin a | 0.383–0.421 |
| Saikosaponin d | 0.381–0.398 | ||||
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| Scutellariae Radix (Huang Qin) |
| 11.111 | 2014081003 | Baicalin | 12.338–14.321 |
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| Rhei Radix et Rhizoma (Da Huang) |
| 14.814 | 2014080301 | Aloe-emodin | 0.348–0.367 |
| Rhein | 1.002–1.162 | ||||
| Emodin | 0.513–0.628 | ||||
| Chrysophanol | 0.661–0.702 | ||||
| Physcion | 0.268–0.301 | ||||
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| Natrii Sulfas (Mang Xiao) |
| 14.814 | 2014030506 | Thenardite | 99.812–99.993 |
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| Magnoliae Officinalis Cortex (Hou Pu) |
| 11.111 | 2014060501 | Magnolol | 2.118–2.491 |
| Honokiol | 2.181–2.228 | ||||
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| Aurantii Fructus Immaturus (Zhi Shi) |
| 11.111 | 2014053101 | Synephrine | 0.612–0.641 |
| Hesperidin | 1.231–1.445 | ||||
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| Artemisiae Scopariae Herba (Yin Chen) |
| 11.111 | 2014030601 | Chlorogenic acid | 0.598–0.693 |
| Escoparone | 0.598–0.6341 | ||||
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| Gardeniae Fructus (Zhi Zi) |
| 14.814 | 2014110301 | Geniposide | 5.989–6.959 |
Figure 1Chromatographic fingerprint of Rhei Radix et Rhizoma.
KEGG pathway enrichments analyses (closely related to albumin leakage) in the S/N and C/S DEGs cluster.
| Pathway | Total | Hits |
| FDR |
|---|---|---|---|---|
| Toll-like receptor signaling pathway | 96 | 39 | 8.96 | 3.18 |
| Tight junction | 122 | 48 | 1.47 | 3.13 |
| Adherens junction | 71 | 27 | 1.97 | 1.75 |
| Regulation of actin cytoskeleton | 183 | 62 | 1.74 | 6.86 |
| Apoptosis | 82 | 25 | 6.07 | 2.23 |
Figure 2Predicting target proteins for CQCQD to attenuate pulmonary albumin leakage based on the analyses of rats pulmonary tissue microarray and also the construction of PPI network. (a) The proteins, encoded by these prioritized hub nodes including Fos, Pik3r1, and Src, were predicted as the key target proteins (red nodes = upregulated DEGs, green nodes = downregulated DEGs, grey nodes = other interactive genes; the size of nodes = the betweenness of the node). (b) The expressions of these 3 prioritized hub nodes in each sample within each group (red represents upregulation and green represents downregulation).
The blood concentrations of LPS, sCd14, Lbp, and amylase.
| Indexes | SO group | SAP group | CQCQD group |
|---|---|---|---|
| LPS (ng/mL) | 0.13 ± 0.04 | 0.52 ± 0.06▲▲ | 0.36 ± 0.09△ |
| LBP (ug/mL) | 2.46 ± 0.35 | 9.12 ± 0.61▲▲ | 7.48 ± 0.49△ |
| sCD14 (ug/mL) | 2.23 ± 1.24 | 7.08 ± 5.37▲▲ | 4.31 ± 4.02△△ |
| Serum amylase (IU/L) | 1480.76 ± 422.46 | 2583.96 ± 297.51▲▲ | 2039.23 ± 141.99△△ |
▲▲ P < 0.01 versus SO, △ P < 0.05 versus SAP, and △△ P < 0.01 versus SAP.
The characteristics indexes closely related to systemic and pulmonary albumin leakage.
| Indexes | SO | SAP | CQCQD |
|---|---|---|---|
| TER (%/h) | 8.56 ± 1.14 | 24.73 ± 2.19▲▲ | 16.42 ± 1.45△ |
| Serum albumin (g/L) | 23.03 ± 0.31 | 13.26 ± 0.63▲▲ | 18.49 ± 0.38△△ |
| Pulmonary EB content (ug/g) | 37.29 ± 3.09 | 77.14 ± 9.24▲▲ | 61.03 ± 4.38△ |
| Pulmonary water content (%) | 71.23 ± 1.07 | 80.35 ± 1.37▲▲ | 75.01 ± 1.33△ |
▲▲ P < 0.01 versus SO, △ P < 0.05 versus SAP, and △△ P < 0.01 versus SAP.
The airways indicators and respiratory function.
| Indexes | SO | SAP | CQCQD |
|---|---|---|---|
| Total protein levels in BALF (mg/mL) | 1.58 ± 0.16 | 9.34 ± 1.02▲▲ | 6.84 ± 0.72△ |
| Total cell counts in BALF (×106/L) | 2.89 ± 0.06 | 9.82 ± 0.85▲▲ | 5.33 ± 0.21△ |
| TNF- | 124.07 ± 17.35 | 189.61 ± 10.22▲▲ | 164.21 ± 7.88△ |
| IL-6 levels in BALF (ng/L) | 149.23 ± 15.47 | 217.27 ± 9.82▲▲ | 188.75 ± 11.49△ |
| IL-1 | 1068.93 ± 117.76 | 1992.80 ± 120.20▲▲ | 1567.14 ± 139.24△ |
| PaCO2 (mmHg) | 30.02 ± 0.98 | 47.16 ± 1.32▲▲ | 41.07 ± 1.08△△ |
| PaO2 (mmHg) | 105.87 ± 1.38 | 74.26 ± 1.33▲▲ | 90.25 ± 0.85△△ |
| SaO2 (%) | 98.66 ± 0.93 | 89.07 ± 0.74▲▲ | 97.82 ± 0.69△△ |
▲▲ P < 0.01 versus SO, △ P < 0.05 versus SAP, and △△ P < 0.01 versus SAP.
Figure 3HE staining. (a) Pancreatic histopathological changes (×200) (pancreatic histopathological score: SO = 0.32 ± 0.08, SAP = 16.85 ± 2.89, CQCQD = 8.87 ± 1.26; SAP versus SO, P < 0.01, CQCQD versus SAP, P < 0.01); (b) pulmonary histopathological changes (×400) (pulmonary histopathological score: SO = 0.45 ± 0.12, SAP = 3.44 ± 0.46, CQCQD = 1.87 ± 0.35; SAP versus SO, P < 0.01, CQCQD versus SAP, P < 0.05).
The proinflammatory cytokines release, TEER, and paracellular leakage in HUVECs.
| Indexes | Normal | LPS (1 mg/L) | CQCQD (1 mg/L) | Inhibition agents | ||
|---|---|---|---|---|---|---|
| siRNA (c-F-os) | PP1 (10 | LY294002 (30 | ||||
| TNF- | 1.85 ± 0.35 | 12.46 ± 0.41▲ | 9.32 ± 0.58△ | 5.85 ± 0.28☆ | 6.78 ± 0.31⋄ | 5.18 ± 0.33¤ |
| IL-6 ( | 32.19 ± 7.55 | 318.45 ± 9.47▲ | 194.33 ± 8.61△ | 112.18 ± 9.98☆ | 121.23 ± 10.45⋄ | 98.56 ± 10.10¤ |
| IL-1 | 10.75 ± 1.03 | 112.42 ± 4.55▲ | 58.16 ± 3.93△ | 45.78 ± 3.03☆ | 48.24 ± 3.56⋄ | 42.66 ± 3.75¤ |
| TEER (Ω·cm2) | 25.12 ± 1.66 | 18.61 ± 0.98▲ | 21.23 ± 1.12△ | 23.89 ± 1.03☆ | 22.64 ± 1.23⋄ | 23.13 ± 1.01¤ |
| Dextran flux (cm/s) | 0.22 ± 0.12 | 0.48 ± 0.29▲ | 0.33 ± 0.22△ | 0.31 ± 0.18☆ | 0.28 ± 0.16⋄ | 0.26 ± 0.14¤ |
▲ P < 0.05 versus Normal, △ P < 0.05 versus LPS, ☆ P < 0.05 versus LPS, ⋄ P < 0.05 versus LPS, and ¤ P < 0.05 versus LPS.
Figure 4The expression changes in these 3 predicted proteins in HUVECs. ▲▲ P < 0.01 versus Normal group, △△ P < 0.01 versus LPS group, △ P < 0.05 versus LPS group, ☆☆ P < 0.01 versus LPS group, and ☆ P < 0.05 versus LPS group.
Figure 5Correlations among the expressions of p-Src, p-p85α, and c-Fos and LPS-induced paracellular leakage and the change in TEER as well as LPS-induced proinflammatory cytokines release in HUVECs (benchmark logarithmic scale = 10; △ ρ > 0.98 versus dextran flux, or the levels of TNF-α or IL-6 or IL-1β, △ ρ < −0.98 versus TEER, ρ > 0.98 versus dextran flux, and ρ < −0.98 versus TEER).