| Literature DB >> 33967742 |
Zixuan Liu1,2, Wenxiang Wang1,2, Jie Luo1,2, Yingrui Zhang1,2, Yunsen Zhang2, Zhiqiang Gan1,2, Xiaofei Shen3, Yi Zhang1,2, Xianli Meng4.
Abstract
Endotoxemia is characterized by initial uncontrollable inflammation, terminal immune paralysis, significant cell apoptosis and tissue injury, which can aggravate or induce multiple diseases and become one of the complications of many diseases. Therefore, anti-inflammatory and anti-apoptotic therapy is a valuable strategy for the treatment of endotoxemia-induced tissue injury. Traditional Chinese medicine exhibits great advantages in the treatment of endotoxemia. In this review, we have analyzed and summarized the active ingredients and their metabolites of Sanhuang Xiexin Decoction, a famous formula in endotoxemia therapy. We then have summarized the mechanisms of Sanhuang Xiexin Decoction against endotoxemia and its mediated tissue injury. Furthermore, silico strategy was used to evaluate the anti-apoptotic mechanism of anisodamine, a well-known natural product that widely used to improve survival in patients with septic shock. Finally, we also have summarized other anti-apoptotic natural products as well as their therapeutic effects on endotoxemia and its mediated tissue injury.Entities:
Keywords: anisodamine; anti-apoptosis; endotoxemia; herbal medicine; immunosuppression; sanhuang xiexin decoction
Year: 2021 PMID: 33967742 PMCID: PMC8099151 DOI: 10.3389/fphar.2021.531325
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
FIGURE 1Schematic diagram of endotoxin damage and the detection of apoptotic cells.
FIGURE 2Metabolic pathways of main components of Sanhuang Xiexin Decoction.
FIGURE 3Molecular docking of anisodamine binding with apoptosis receptor of endothelial cells.
FIGURE 4Schematic diagram of the molecular mechanism of endotoxin-induced apoptosis.
Effect of herbal ingredients on anti-apoptosis related pathway molecular (excepted those mentioned in the text).
| Herbal medicine | Effects | Related targets | Endotoxemia related indications | References |
|---|---|---|---|---|
| Punicalagin (PNG) | Anti-apoptosis, nephroprotection, anti-inflammation, anti-oxidant | ↓: Serum Cr, NGAL, KIM-1, IL-18, TNF-α, IL-6; MDA, NO, MPO, iNOS. Bax/Bcl2, caspase-3/-8/-9 | Sepsis complication of acute kidney injury |
|
| Thaliporphine | Anti-inflammation, anti-apoptosis; radioprotection | ↓: p38/NF-κB pathway; TNF-a, caspase 3, serum cTnI, LDH, Reverse steeper EDPVR, Gentler ESPVR | Cardiac depression |
|
| ↑: PI3K/Akt/mTOR pathway | ||||
| Apocynin | Hepatocyte protection, anti-apoptosis, anti-oxidation | ↓: Hydroperoxides, MDA, SOD, NADPH, POX | Endotoxemia |
|
| ↑: CAT, SOD, G-POX | ||||
| Stevioside | Anti-apoptosis, anti-oxidation, anti-inflammation, immunoregulation | ↓: SOD, CAT, GSH, MDA, NO, DPPH; TNF-α, IL-1β, IL-6 | Acute liver injury |
|
| ↑: AST, ALT | ||||
| Soybean oil, olive oil | Anti-inflammation, immunoregulation | ↓: Mitochondrial pathway, Apoptosis of lymphocyte, Caspase-8, Bax, Bcl-xl, caspase-3, TNF-α, IL-6 | Sepsis complications of acute lung injury and acute respiratory distress syndrome |
|
| ↑: PI3K/Akt phosphorylation | ||||
| Cordyceps sinensis | Anti-apoptosis, anti-inflammation, immunoregulation | ↓: NF-κB, TNF-α, AST, NO, AST, caspase-3/-6, PARP | Sepsisshock complication of hepaticdysfunction |
|
| ↑: Phosphorylation of MAPK (ERK1/2), SOD, IL-10 | ||||
| Garlic | Anti-inflammation, pro-apoptosis, immunoregulation, anti-platelet, anti-hypertension, antioxidation | ↓: TNF-a, IL-6 | Preeclampsia |
|
| ↑: IL-10, sTRAIL/Apo-2L | ||||
| Salvia miltiorrhizae | Improve microcirculation, anti-inflammation, antioxidation, anti-apoptosis, mucosal protection, macrophage protection | ↓: p65NF-κB, PLA2, Bax | Severe acute pancreatitis; obstructive jaundice |
|
| Sophocarpine | Anti-inflammation, anti-apoptosis, antioxidation | ↓: p38/JNK, NF-κB, PI3K/AKT, Bcl-xl, H2O2, O2, NO, CYP2E/NRF2, CYPE2, ROS, ALT, ALT, ALP, AST, IL-1β, TNF-α, IL-6, Cyto-C, Apaf1, caspase-9/-3 | Septicliver injury |
|
| ↑: SOD, CAT, GSH, SOD1, Nrf2 | ||||
| Astragalusroot | Cytoprotection, anti-apoptosis, immunoregulation | ↓: ROS, caspase-3, p53, mitochondrial membrane depolarization | Endotoxemia |
|
| ↑: Bcl2 | ||||
| Astragalin | Antioxidation, anti-apoptosis, anti-inflammation, antianaphylaxis | ↓: NF-κB, MAPK, TLR4, JNK pathways; eotaxin-1, ROS, caspase-3, NADPH, PLCγ1-PKCβ2-NADPH | Allergic airway diseases; peribronchial eosinophilia |
|
| ↑: Akt, ERK | ||||
| Matrine | Anti-inflammation, antioxidation, anti-fibrosis, antiviral | ↓: NF-κB, MIP-2, MPO, MDA, TNF- α, IL-6, IL-8, ALT, AST, LDH, ALP, NO, sICAM-1, caspase-3 | Acute liver injury, Hepaticischemia |
|
| Green teapolyphenols, catechins, flavandiols, flavanols, phenolicacids | Anti-apoptosis, geno protective, antioxidation | ↓: AST, ALT, TB, ALB, NO | Liver damage |
|
| ↑: TAC | ||||
| Siniinjection | Anti-apoptosis | ↓: MABP, iNOS, PI, IL-6, IL-18, ET-1, NO | Septic shock |
|
| 12-O-Tetradecanoyl-phorbol 13-Acetate (TPA) | Anti-apoptosis | ↓: NF-κB | Endotoxemia |
|
| ↑: C/EBP, p38 MAPK | ||||
| Strawberry | Anti-inflammation, antioxidation, anti-apoptosis | ↓: NF-κB, NO, iNOS, CAT, SOD, ROS, Caspase 3, PiκBα, TNF-α, IL-1β, IL-6 | Human dermalfibroblast |
|
| ↑: pAMPK, SIRT1463, PGC1α, GPX, GR, GST, IL-10, Nrf2-AMPK | Inflammationliver injury | |||
| Betulinicacidderivative BA5 | Immunoregulation | ↓: NF-κB, TNF-α, IL-2, IL-4, IL-6, IL-17A, IFN-γ, NO, Activated LY, CD4+ Tcellcalcineurin activity | Delayed hypersensitivity |
|
| Garlic oildiallyldisulfide diallyl trisulfide | Anti-inflammation, antioxidation, anti-apoptosis | ↓: nitrate/nitrite | Intestinaldamage |
|
| Rubiaceae-typecyclo-peptide (RA-V) | Anti-inflammation | ↓: NF-κB, NO, IL-8, IL-6, MCP-1, P-p65, P-IκBα | Septic shock |
|
| ↓: PI3K/AKT, TAK1 + TAB2 | ||||
| Cinnamaldehyde (CA) Linalool (LIN) | Anti-inflammation | ↓: NF-κB, TLR4/MD2, MyD88, NLRP3, ASC, caspase-1, TNF-α, IL-1β, IL-18, nitrate/nitrite, IFN-γ, HMGB-1 | Endotoxemia |
|
| Gryllusbimaculatus Extracts (GBE) | Anti-apoptosis, anti-inflammation, antioxidation | ↓: ROS, NO, IL-6, TNF-α, TG, TLR4, P-JNK, P-p38, OHdG, p-MLCK, p-ROCK, p-srcFK | Alcoholic liver diseases |
|
| Intestinal inflammation | ||||
| Scytonemin | Antiproliferative | ↓: cdc25C, p-cdc25C, Cell cycleregulatory kinases, GST-PLK, GST-Tie2, Protein kinase A, Protein kinase Cβ2, CDK1/cyclin B, GST-Myt1, GST-checkpoint kinase 1, GST-polo-like kinase 1 | Endotoxemia |
|