| Literature DB >> 26941826 |
Hor-Yue Tan1, Serban San-Marina2, Ning Wang1, Ming Hong1, Sha Li1, Lei Li1, Fan Cheung1, Xiao-Yan Wen2, Yibin Feng1.
Abstract
Liver disease results from a dynamic pathological process associated with cellular and genetic alterations, which may progress stepwise to liver dysfunction. Commonly, liver disease begins with hepatocyte injury, followed by persistent episodes of cellular regeneration, inflammation, and hepatocyte death that may ultimately lead to nonreversible liver failure. For centuries, herbal remedies have been used for a variety of liver diseases and recent studies have identified the active compounds that may interact with liver disease-associated targets. Further study on the herbal remedies may lead to the formulation of next generation medicines with hepatoprotective, antifibrotic, and anticancer properties. Still, the pharmacological actions of vast majority of herbal remedies remain unknown; thus, extensive preclinical studies are important. In this review, we summarize progress made over the last five years of the most commonly used preclinical models of liver diseases that are used to screen for curative herbal medicines for nonalcoholic fatty liver disease, liver fibrosis/cirrhosis, and liver. We also summarize the proposed mechanisms associated with the observed liver-protective, antifibrotic, and anticancer actions of several promising herbal medicines and discuss the challenges faced in this research field.Entities:
Year: 2016 PMID: 26941826 PMCID: PMC4749812 DOI: 10.1155/2016/4750163
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Animal models of NAFLD and NASH used to investigate the effect of herbal medicines.
| Model (ingredients) | Duration | Herbal medicine | Pathological and biochemical changes; mechanisms involved | Reference |
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| 10% lard oil and 2% cholesterol | 4 wk | Si Jun Zi Tang (SJZ), Lizhong Tang (LZ), Linggui Zhugan Tang (LGZG), and Shen Zhuo Tang (SZ) | Reduced epididymal fat index and hepatic fats infiltration; reduced triglycerides and ALT levels. | [ |
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| Methionine and choline bitartrate tablets | 4 wk | Alkaloids of | Reduced hepatic lobule, serum ALT, AST, TNF | [ |
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| 25% lard, 2% cholesterol 0.5% sodium cholate, and 25% Tween-80 | 56 d |
| Reduced SOD, serum TC, and LDLC and increased hepatic MDA. | [ |
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| 12% lard oil, 2% cholesterol, 0.2% propylthiouracil, and 0.5% bile salt | 6 wk |
| Increased fat deposition, fat-storing cells proliferation, collagen accumulation, macrovesicular steatosis, ballooning degeneration, and cytoplasmic vacuolation (model group). Reduced liver cell volume, hepatic lobules, and fat droplets (treatment group). Reduced TC, TG, LDL-C, ALT, and AST; increased APN level in treatment group. | [ |
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| 10% lard, 2% cholesterol, 0.2% bile salts, 15% sucrose, 8% baking soybean powder | 7 wk | TZQ formula (red peony root, mulberry leaf, lotus leaf, danshen root, and hawthorn leaf) | Increased hepatic steatosis, necrosis, and inflammatory cell infiltration (model group). Reduced TC, TG, LDL-C, HDL-C, and TC-HDL/HDL in treatment group. | [ |
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| 88% normal chow plus 10% lard plus 2% cholesterol | 4 wk + 4 wk treatment | Jiang Zhi Granule | Improved hepatic steatosis, reduced ALT and AST, and improved free fatty acid and triacylglycerol levels. Reduced LXR alpha and SREBP-1c. | [ |
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| MCD diet | 8 wk | Fuzheng Huayu recipe | Model group showed disoriented lobule, macrosteatosis, hepatocyte necrosis, and inflammatory infiltration. Treatment group reduced ALT, AST and P450 2E1, TNF | [ |
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| High fat diet | 8 wk | Ping-tang recipe | Suppressed visceral fat accumulation, enhanced glucose metabolism, and ameliorated hepatic steatosis. Upregulated PGC-1 alpha, PPAR alpha, and gamma and reduced SREBP-1c, FAS, and FABP; activated AMPK and acetyl CoA carboxylase phosphorylation. | [ |
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| High fat and high fructose diet | 9 wk | Puerariae radix, | Reduced fasting blood glucose and improved insulin resistance. | [ |
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| 10% lard, 1.5% cholesterol, 0.2% sodium deoxycholate, 5% sugar, 0.05% prothiopyrimidine | 10 wk (5 wk treatment) | Yiqi huoxue decoction and solutions of herbs | Hepatic fat deposit, macrovesicular steatosis, ballooning degeneration, and cytoplasmic vacuolation (model group); reduced lipid degeneration, fat droplets and smaller liver cells, and delineated hepatic lobules (treatment group). | [ |
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| 9.3 g AIN-93MX, 2.6 g AIN-93VX, 0.5 g choline bitartrate, 1.1 g DL-methionine, 57.5 g lactalbumin hydrolysate, 117.5 g dextrose, 36.6 mL fish oil, and 4.5 g suspending agent K | 12 wk |
| Reduced lipid droplet accumulation, inflammatory cells infiltration, and hepatocyte necrosis as observed in model group. Reduced phosphorylation of TGF- | [ |
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| High fat diet | 12 wk | Chinese medicine recipes | Treatment group blocked fatty degeneration. Decreased expressions of JNK and p-JNK. | [ |
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| 5.3 kcal/g (fat 59%, protein 16%, and carbohydrate 24%) | 15 wk | Yin-Chen-Hao-Tang | Reduced hepatocyte foaming and ballooning. Reduced TNF- | [ |
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| 45 kcal% fat, 20 kcal% protein, and 35 kcal% carbohydrate | 16 wk | Garcinia cambogia supplement | Increased collagen deposition in treatment group. Reduced obesity, but induced hepatic fibrosis (inflammation TNF- | [ |
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| Axungia porci 10%, cholesterol 1.5%, and bile salt 0.5% | 16 wk | Chaihu-Shugan-San and Shen-ling-bai-zhu-San | Model group showed microvesicular and macrovesicular steatosis, lobular, and portal inflammation and hepatocyte ballooning while treatment group improved them. Decreased TNF-alpha and IL-6 in serum, inhibited TLR4, and activation of p38 MAPK. | [ |
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| High fat diet | 16 wk | Soothing liver and invigorating spleen recipes | Reduced TC, LDL-C, TC, and TG in treatment group. Reduced TLR4 expression. | [ |
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| 21.9 kJ/g, 60% fat, 20% protein, and 20% carbohydrate | 20 wk | Troxerutin | Decreased epididymal adipose tissue mass, lipid accumulation, and lipid levels in treatment group. Suppressed NAD (+) depletion, increased NAMPT, and decreased PARP1. Increased SirT1 and AMPK and inhibited mTORC1 and | [ |
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| 60% of kcal as fat with an energy density of 5.24 kcal/g | 24 wk | Crude extract of | Lowered TC, LDL, TG, and DAG levels. Induced phosphorylation of AMPK, reduced nuclear expression of SREBP-1c, and increased UCP1 and PGC-1 alpha in adipose tissue. | [ |
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| 60% kcal from lard/soybean 9.8 : 1 | 4 mo + 40 d treatment | Rhein | Steatotic and enlarged hepatocytes (model group); reduced lipid accumulation (treatment group). Reduced ALT, TC, LDL, and TG level in treatment group and improved insulin resistant. Suppressed SREBP-1c and LXR; inhibited T-BET, and enhanced GATA-3 and pSTAT3. | [ |
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| 15% fat, 15% sucrose, and 2% cholesterol | 12 wk | Salvia-Nelumbinis naturalis | Reduced macrovesicular steatosis, TG, LDL-C, and FFA levels. Increased IRS and Akt phosphorylation and decreased SOCS3. | [ |
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| High fat diet |
| Cigu Xiaozhi pills | Model group showed adipose degeneration and inflammatory cell infiltration. Treatment group reduced TG, TC, ALT, AST, and MDA level while increased SOD and GPX. Reduced TNF | [ |
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| ApoE (−/−) + high cholesterol diet | 4 wk | Huanglian Jiedu decoction | Ameliorated pathological changes in fatty liver. Associated with increase of M2 macrophages populations. | [ |
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| MCD diet in db/db mice | 4 wk | Sho-saiko-to (TJ-9), inchin-ko-to (TJ-135), juzen-taiho-to (TJ-48), and keishi-bukuryo-gan (TJ-25) | TJ-9 and TJ-48 reduced ALT. Necroinflammation, hepatic lobules, steatosis, and ballooning degeneration. Reduced TGF- | [ |
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| High fat diet | 4 wk | pomegranate flowers polyphenols | Reduced fat drops, non-HDL-C, and transaminase. Antioxidant ability enhanced and PON1 increased in liver. | [ |
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| High fat diet (10% lard and 2% cholesterol) + CCl4 | 8 wk | Dangyao ( | Ameliorated hepatosteatosis lobules ballooning degeneration and inflammatory infiltration as observed in model group. Reduced ALT, AST, TAG, and MDA. Increased UCP2. | [ |
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| High fat diet (88% normal chow + 10% lard + 2% cholesterol) + CCl4 | 8 wk | Dangfei Liganning capsules | Improved steatosis, hepatocyte ballooning, and inflammatory infiltration as observed in model group. Improved MDA and ALT. | [ |
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| 10% lard + 2% cholesterol + CCl4 | 8 wk | Soothing liver and invigorating spleen recipes | Reduced SREBP-1 and SCD-1. | [ |
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| High cholesterol | 10 wk | Corosolic acid | Reduced blood cholesterol and liver cholesterol content. Inhibited activity of cholesterol acyltransferase. | [ |
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| High fat diet (640 kcal/100 g) + gold-thioglucose | 12 wk | Bofutsushosan | Blocked hepatic steatosis, inflammation, hepatocyte ballooning, and Mallory-Denk bodies. Reduced ALT, AST, and TG levels. Induced adiponectin and its receptors, increased PPAR- | [ |
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| HF diet (19.6% carbohydrates, 18.2% proteins, and 62.2% lipids; total energy, 506 kcal/100) and 30% sucrose in drinks | 12 wk | Goshajinkigan | Reduced AST. Increased body and adipose tissue weight and reduced elevated liver weight. | [ |
Content not specified in the paper.
Animal models of liver fibrosis/cirrhosis used to investigate the effect of herbal medicines.
| Model | Experiment durations | Herbal medicine | Pathological and biochemical changes; mechanism involved | Reference |
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| Thioacetamide induced | 6 wks | Kaerophyllin | Reduced collagen accumulation and fibrosis score. Reduced ALT, AST, and | [ |
| 7 wks | Silybin | Reduced Tbil, ALT, and AST levels and necrotic zones and steatosis. Reversed loss of CYP3A and PXR; reduced | [ | |
| 8 wks | Ethanolic extract of rhizomes of | [ | ||
| 8/12 wks | Magnesium lithospermate B | Reduced ALT, AST and | [ | |
| 12 wks | Chunggan extract | Reduced inflammation, collagen deposition, and large septa formation. Reduced ALP, AST and Bil, MDA, iNOS, and TNF | [ | |
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| DEN/DMN induced | 3 wks | Jia-wei-xiao-yao-san | Reduced SOD, lipid peroxidation, and xanthine oxidase activity. | [ |
| 4 wks | Yinchenhao decoction (YCHD group) and Yiguanjian (YGJ group) | Reduced Hyp and | [ | |
| 4 wks | Huangqi decoction | Reduced hepatocyte apoptosis. Decreased apoptotic effectors, cleaved-caspase-3, | [ | |
| 4 wks | Yinchenhao decoction, Yinchen Wuling San, and Zhizi Baipi decoction | Reduced Hyp content and Tbil level. | [ | |
| 4 wks | Anluohuaxianwan | Reduced ALT, AST, and contents of HA. Increased MMP-2. | [ | |
| 4 wks | Huangqi decoction |
| [ | |
| 4 wks | Fuzheng Huayu and Huangqi decoction |
| [ | |
| 4 wks | Fuzheng Huayu recipe | Reduced Hyp content. Reduced TGF- | [ | |
| 4 wks | Xiaopi pill | Decreased ALT, AST, ALP and Tbil, and | [ | |
| 4 wks | Modified Sinisan | Reduced liver injury biomarkers. | [ | |
| 4 wks | Yi Guan Jian | Reduced fibrotic septa, degenerated hepatocytes, and collagen deposition. Reduced collagen | [ | |
| 6 wks |
| Decreased liver apoptosis, necrosis, and proliferation. Reduced hepatic lipid peroxidation, protein oxidation, and nitrotyrosine levels; increased GST activity. | [ | |
| 6 wks |
| Showed normal liver parenchymal architecture and only mild fibrosis. | [ | |
| 15 wks | Gexiazhuyu decoction | Decreased GOT and GPT. Reduced collagen | [ | |
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| Corbrin Shugan capsule |
| [ | |
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| CCl4
| 4 wks | Biejiayinzi, Gexiazhuyu Tang, and Fugan Wan | Gexiazhuyu Tang and Fugan Wan treatment improved inflammatory necrosis and fat degeneration. Reduced collagen accumulation. | [ |
| 6 wks | Fuzhenghuayu decoction | Decreased ALT, AST, and Tbil. Reduced area ratio of liver fibrosis and | [ | |
| 6 wks | Xiayuxue decoction | Decreased Sirius red positive area. Reduced | [ | |
| 6 wks | Diwu Yanggan | Reduced ALT, AST, Hyp, and collagen deposition and tissue damage. Increased E-cadherin, TGF-nc; reduced vimentin, BMP-7, Hh ligand Shh, receptor Smo and Ptc, and Gli1. | [ | |
| 6 wks | Xuefuzhuyu decoction | Reduced ALT, AST, Tbil, and Hyp. No ECM deposition and reduced necroinflammatory foci. Decreased | [ | |
| 7 wks | Ethanol extract of Cortex Dictamni | Improved pathological grading. Reduced collagen deposition and Hyp content. Increased pY-STAT1. | [ | |
| 8 wks | Baicalin | Decreased Hy, steatosis, liver necrosis, and fibrotic septa formation. Reduced TGF- | [ | |
| 8 wks |
| Reduced Tbil and AST. Improved histological changes. Reduced SOD and Erk1/2 inhibition | [ | |
| 8 wks |
| Reduced ALT, AST, Hyp, and histopathological changes. Increased GSH, SOD; reduced MDA. Reduced TGF- | [ | |
| 8 wks | Fuzhenghuayu decoction | Reduced ALT, AST, and hepatocyte apoptosis. Decreased collagen deposition and inflammatory cell infiltration. Reduced | [ | |
| 8 wks | Acremoniumterricola milleretal mycelium | Decreased HA, laminin, and procollagen type III levels, Hyp. Improved pathological changes. Restored SOD and GSH-Px, inhibited lipid peroxidation. Decreased TGF- | [ | |
| 8 wks | Rougan Huaqian granules | Decreased AST and HA. Reduced | [ | |
| 8 wks | Fufang Biejia Ruangan pills | Decreased ALT, AST. Reduced collagen deposition and improved hepatic lesion. Reduced hyaluronic acid Col IV, type III procollagen laminin, TGF- | [ | |
| 8 wks | Ganfukang | Decreased ALT and AST. Ameriolated ductular proliferation. Reduced | [ | |
| 8 wks | Huisheng oral solution | Inhibited collagen formation and improved liver function. Reduced Smad3, TGF- | [ | |
| 8 wks | Methanol extracts of | Reduced ALT, AST and ALP, and total bilirubin. Improved hepatocellular architecture. Restored antioxidant related content. | [ | |
| 9 wks | Dahuangzhechong pill | Decreased ALT, AST, HA, laminin, type IV collagen, and procollagen III and reverses hepatic fibrosis. Reduced | [ | |
| 9 wks | Xiayuxue decoction | Inhibited liver injury, fatty degeneration, and collagen deposition. Blocked CD31, vWF, VEGF, VEGFR2, DAF, | [ | |
| 9 wks | Yiguanjian decoction | Increased Cu/Zn SOD, DJ-1, glutathione S-transferase Yb-1 subunit, and aldo-keto reductase family 7, A2. | [ | |
| 9 wks | Yiguanjian | Increased SOD, Prxd6, transferrin, and L-FABP; decreased MDA, HSP70, and HO-1. | [ | |
| 9 wks | Yiguanjian decoction | Reduced collagen deposition. Suppressed | [ | |
| 12 wks | Huganjiexian decoction | Inhibited collagen type I, collagen type III, TGF- | [ | |
| 12 wks | Xiaozheng Rongmu powder | Changes in ALT, AST, and Tbil are milder and with hepatocytes mitosis. | [ | |
| 12 wks | Shuganjianpifang | Decreased steatosis, collagen accumulation, ALT, AST, and Tbil. Increased Alb. Reduced BAX and increased Bcl-2. | [ | |
| 13 wks | Yiguanjian decoction | Reduced ALT, | [ | |
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| Ovariectomized rats | 8 wks |
| Decreased hepatic lipid contents, AST, and ALT. Reduced hepatic lipid deposition. | [ |
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| Porcine serum induced | 16 wks | Roots of | Reduced liver damage and symptoms of liver fibrosis. Decreased HA, PC III, and Hyp. Restored SOD and GSH and inhibited lipid peroxidation. | [ |
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| Schistosomiasis induced | 18 wks | Radix Astragali, | Some groups showed small reticulation and spot thickening in liver. Reduced ALT, albumin, and TBil. | [ |
| 18 wks | Danggui Buxue decoction | Reversed fibrosis. | [ | |
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| CCl4 + high lipid low protein diet | 6 wks | Danggui Buxue decoction | Reduced hepatic fatty degeneration and collagen accumulation. Decreased ALT, AST, and TBil. Reduced MDA, TG, Hyp content, and MMP-2/9 activities; increased SOD. | [ |
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| CCl4, bile duct ligation, alcohol fed | 7 wks |
| Reduced AST, Hyp, and Tbil. Decreased hepatic damage and fibrosis. Reduced peroxidative stress; increased SOD. | [ |
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| CCl4 + high fat emulsion | 8 wks | flavonoids from Litsea coreana Levl | Reduced ALT, AST, HA, laminin, procollagen III N-terminal peptide, procollagenase IV, and Hyp. Reduced hepatocyte degeneration, inflammatory cell infiltration, and collagen deposition. Suppressed | [ |
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| DMN and CCl4 induced | 8 wks (DMN) + 10 wks (CCl4) |
| Reduced ALT, AST, and Tbil. Suppressed collagen deposition. | [ |
Content not specified in the paper.
Animal models of biliary fibrosis used to investigate the effect of herbal medicines.
| Model | Experiment durations | Herbal medicine | Pathological and biochemical changes; mechanism involved | Reference |
|---|---|---|---|---|
| Bile duct ligation | 3 days | Aqueous extract from the root of | Blocked ALT and AST. Restored antioxidant enzymes. High dose showed lesser hepatocyte necrosis and inflammatory cell infiltration. | [ |
| 2 weeks | Yang-Gan-wan | Reduced | [ | |
| 2 weeks |
| Reduced cholestatic markers and Hyp. Blocked liver injury and collagen deposition. Reduced | [ | |
| 28 days | Green tea polyphenol | Reduced portosystemic shunting, fibrosis, intrahepatic angiogenesis, and mesenteric window vascular density. Decreased HIF-1 | [ | |
| 4 weeks | Huangqi decoction | Reduced fibrosis degree. Increased Hyp content, CK7, and | [ | |
| 4 weeks | Huangqi decoction | Blocked collagen deposition. Reduced ALT, Tbil, and Hyp. Inhibited TGF- | [ | |
| 7 weeks | Inchinko-to | Decreased ALT and AST. Reduced TGF- | [ |
Animal models of liver cancers used to investigate the effect of herbal medicines.
| Model | Experiment durations | Herbal medicine | Mechanism involved | Reference |
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| H22 cells | 5 days | Fuzheng-Yiliu granule | Induced cell apoptosis. Antitumour effect after combined with 5-FU. Restored decreased level of WBC and lymphocytes. | [ |
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| H22 cells | 5 days | Fuzheng-Yiliu granule | Induced apoptosis and CD3, CD4, and NK cells in peripheral blood. Increased serum IL-2 and TNF | [ |
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| H22 cells | 5 days | Tagalsin | Upregulated wild type p53 and reduced Bcl-2. | [ |
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| H22 cells | 10 days | Glycyrrhiza polysaccharide | Induced apoptosis via P53/PI3K/AKT pathway. | [ |
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| H22 cells | 10 days |
| Inhibited expressions of VEGF and CD34. | [ |
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| Hepa 1–6 cells | 14 days | Yupingfeng powder | Reduced MDA, SOD activities in liver and lung. | [ |
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| H22 cells | 14 days |
| Increased TNF | [ |
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| H22 cells | 14 days | Radix Glycyrrhizae polysaccharide | Reduced Treg population and Foxp3. Increased serum Th1/Th2 cytokine. | [ |
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| H22 cells | 15 days | Toosendanin, from | Reduced Bcl-2; increased Bax and Fas. | [ |
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| Hep3B cells | 15 days | Andrographolide, from | Reduced GSH; increased p-JNK, ASK1, MKK4, and c-Jun. | [ |
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| S180 and H22 ascites cells | 15 days |
| [ | |
| 20 days | Jiedu Xiaozheng Yin | Increased expressions of cyclin D and cyclin E. | [ | |
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| Bel-7402 cells | 25 days | Sulfated glycopeptide from | Inhibited bFGF production. | [ |
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| HepG2 cells | 3 wks | pennogenyl saponins from rhizoma paridis | Decreased Bcl-2 and increased Bax, cleaved caspase-8, and cleaved caspase-3; decreased ERK1/2 and Akt phosphorylation and increased p38 and JNK phosphorylation. | [ |
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| SMMC-7721 cells | 4 wks | Luteoloside from | Decreased ROS and NLRP3 inflammasome. Inactivated caspase-1 and IL-1 | [ |
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| MHCC97L cells | 4 wks |
| Increased phosphorylation of eEF2. | [ |
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| MHCC97L cells | 4 wks | Huanglian Jiedu decoction | Inactivated eEF2, induced eEF2k and AMPK. | [ |
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| MHCC97-H cells | 5 wks | Corilagin | Activated p-p53-p21(Cip1) -cdc2/cyclin B1. | [ |
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| Downregulated expressions of CDK2, cyclin E, and E2F1. | [ | |
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| Jiedu Xiaozheng Yin | Inhibited expressions of expression of Bmi1 and Wnt/beta-catenin. | [ | |
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| Triptolide from | Increased ROS and caspase-3 activity; induced Bax and inhibit Bcl-2 after addition of 5-FU. | [ | |
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| Invigorating spleen and detoxification decoction | Increased MHC I/MHC II expression. | [ | |
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| Inhibited angiogenesis via reduction of VEGF-A and VEGFR-2 and inhibited Notch, Dll4, and Jagged1. | [ | |
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| H22 cells |
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| Induced apoptosis via caspase-dependent pathways. | [ |
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| Walker-256 cells |
| Aitongxiao recipe | Reduced Bcl-2, survivin. | [ |
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| H22 cells |
| Xiaoai Jiedu Recipe | Reduced CCL3, CXCL2. | [ |
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| Hep3B cells |
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| Induced MAPK-p73 pathway. | [ |
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| H22 cells |
| Ciji Hua'ai Baosheng granule formula | [ | |
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| H22 cells |
| Oxytropis falcata | [ | |
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| H22 cells |
| Corn silk polysaccharides | Improved serum IL-2, IL-6, and TNF | [ |
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| HepG2/EGFP cells |
| Chaiqiyigan granula | Increased Bax; reduced p53 and VEGF combined with taxol. | [ |
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| Primary hepatic carcinoma |
| Bushen jianpi decoction | Reduced VEGF expression. | [ |
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| HepG2 cells expressing red fluorescent protein | 25 days |
| Inhibited VEGF. | [ |
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| MHCC97H cells | 35 days | Baicalein | Reduced MMP-2, MMP-9, and u-PA; increased TIMP-1 and TIMP-2 expressions through ameliorated phosphorylation of ERK. | [ |
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| Bel-7402 cells | 10 wks | Jianpijiedu Fang | Increased PTEN, pFAK; and reduced PI3K. | [ |
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| MHCC97L cells |
| Songyou yin | Restored E-cadherin and reduced N-cadherin. | [ |
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| X15- | 12 mth | Thapring | Reduced Bcl2 and overexpression of p21Waf1. | [ |
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| 25% CCl4 injection, 8% ethanol solution as drinking fluid for 4 weeks, and 20 weeks of 0.5% CCl4-8% ethanol solution as drinking fluid | 8 wks | Xiaochaihu decoction | Reduced ONOO−, MDA, VMA, LPS-P, and ALP-C; increased ALP-A. | [ |
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| 28 wks |
| Decreased IL-1 | [ |
Content not specified in the paper.
Animal models of acute liver injury used to investigate the effect of herbal medicines.
| Model | Experiment durations | Herbal medicine | Pathological and biochemical changes; mechanism involved | Reference |
|---|---|---|---|---|
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| CCl4
| 6 hrs | Tanreqing injection | Reduced serum liver markers and inflammation. | [ |
| 10 hrs |
| Reduced centrilobular necrosis and ALT level. Restored antioxidant enzymes, decreased NO and lipid peroxidation, attenuated hepatic inflammation, and reduced NF- | [ | |
| 24 hrs | Taohe Chengqi Tang | Reduced ALT and AST. Showed normal lobular pattern with mild degree of fat deposition, necrosis, and inflammatory cell infiltrations. | [ | |
| 2 days | Punarnavashtak kwath | Showed mild inflammation. Reduced ALT, AST, ALP, and SBRN. Increased glutathione, SOD, and catalase; decreased TBARS. | [ | |
| 2 days | Sharbat-e-Deenar | Restored glutathione, adenosine triphosphate, and G-6-Pase. | [ | |
| 2 days | Majoon-e-Dabeed-ul-ward | Decreased serum enzymes, albumin, and urea. Reduced necrosis, hepatocyte regeneration, and inflammation. Reduced TBARS; restored glutathione, adenosine triphosphatase, and G-6-Pase in liver. | [ | |
| 5 days |
| Showed lesser injury and necrosis. Reduced ALT, AST, and ASP levels. | [ | |
| 5 days | Polydatin | Decreased ALT and AST. Blocked degeneration, necrosis, and inflammatory cell infiltration. Reduced MDA, hepatic TNF | [ | |
| 5 days |
| Reduced ALT, AST, ALP, and TB. Demonstrated | [ | |
| 7 days | Flowers of | Decreased vacuole formation and hepatocellular necrosis. Reduced MDA, TNF | [ | |
| 7 days | Radix Tetrastigma | Decreased ALT and AST. Improved hepatic lesion. Reduced MDA, Bax, and caspase-3; increased SOD. | [ | |
| 7 days | Naringenin | Blocked necrosis and restored cellular arrangement. Decreased ALT, AST, and ALP. Reduced TNF | [ | |
| 7 days |
| Reduced hepatic serum markers and total protein. | [ | |
| 8 days |
| Restored SGPT, SGOT, ALP, and total bilirubin. | [ | |
| 8 days | Heptapeptide from | Decreased ALT and AST. Reduced injury, necrosis, and ballooning degeneration. Showed moderate hypertrophy. Reduced MDA and increased GSH-Px. | [ | |
| 10 days | Ethanolic extract of | Showed reduced inflammation. Reduced MDA. | [ | |
| 10 days | Fruit of | Decreased total bilirubin. Restored total protein, albumin, and globulin. Increased GSH and reduced MDA and H2O2. | [ | |
| 14 days | Dendrobium huoshanense | Reduced MDA; restored SOD, CAT, GPx, and GSH. | [ | |
| 15 days | Saponins in Radix Trichosanthis | Increased SOD and T-AOC; decreased MDA and LDH levels. | [ | |
| 15 days | Licorice aqueous extract | Reduced ALT, AST, and ALP. Increased total protein, albumin, and globulin. Improved liver SOD, CAT, GSH-Px, GR, GST activities, and GSH level; reduced MDA, liver hydroxyproline, and serum TNF | [ | |
| 3 wks | Ethanol extract of | Improved hepatic necrosis. Reduced MDA. | [ | |
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| Decreased serum enzyme markers. Reduced GSH and liver MDA. | [ | |
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| Improved oxidative stress markers. | [ | |
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| Shaoganduogan | Reduced transaminase; blocked degeneration and necrosis. Enhanced activity of Na+ -K+ ATPase, Ca2+ ATPase, and SOD; reduced MDA. | [ | |
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| D-galactosamine induced | 14 days | Xiao-Chai-Hu Tang | Decreased serum IL-6 and TNF | [ |
| 22 days |
| Showed reduced hepatocellular necrosis. Decreased ASAT, ALAT, ALP, TGL, TC, and TB. Elevated superoxide dismutase, catalase, glutathione peroxidase, and decreased lipid peroxidation levels in liver. | [ | |
| 22 days |
| Decreased SGOT, SGPT, ALP, LDH, and | [ | |
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| Extracts from processed | Decreased ALT and AST. Improved liver damage. Increased SOD and reduced MDA. | [ | |
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| LPS induced | 6 hours | Bai-Hu-Tang | No observable cellular necrosis and inflammatory cell infiltration. Prevents increase of IL10, TNF | [ |
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| D-galactosamine and LPS induced | 1 hr | Echinacoside, from | Decreased ALT. Blocked hepatocyte apoptosis and improved histopathological changes. Reduced inflammatory markers. | [ |
| 5 hrs | Xijiao Dihuang decoction | Reduced ALT and AST. Blocked liver injury. | [ | |
| 36 hrs | Sanhuangyinchi decoction | Decreased ALT, TBIL, and PT. Inhibits caspase-3 activity. | [ | |
| 3 d | Fuzheng Huayu recipe | Blocked hepatocyte apoptosis and reduced ALT and AST. Decreased MDA; improved SOD activity in liver. Decreased TNF | [ | |
| 7 days | Sanhuangyinchi decoction | Reduced ALT, AST, TBIL, TP, and INR; increased FIB. Blocked the pathological changes. Increased SOD; decreased MDA and caspase-3 in liver. | [ | |
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| Qingxia therapy | Decreased ALT, AST, and TBIL levels and hepatocyte necrosis and inflammatory cell infiltration. Reduced BAX, caspase-3 and increased Bcl-2. | [ | |
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| Paracetamol induced | 24 hrs |
| Reversed the elevated levels of GOT, GPT, ALP, and bilirubin. Restored liver architecture. Increased LPO; reduced SOD, catalase, GSH, and GPx. | [ |
| 7 d |
| Reduced liver enzymes and total bilirubin. Showed reduction of sinusoidal dilation, necrosis, and apoptosis. | [ | |
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| Acetaminophen induced | 24 hrs |
| Reduced SGPT, SGOT, ALP, and bilirubin. Showed minimal fibrosis and periportal inflammation. Reduced inflammatory markers, MDA, and antioxidant enzyme levels. | [ |
| 8 days |
| Reduced SGPT, SGOT, and ALP. | [ | |
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| Rifampicin induced in Wistar rat | 15 d |
| Reduced SGOT, SGPT, GGTP, ALP, and total bilirubin. Showed mild degeneration and necrosis. | [ |
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| Antitubercular drug induced | 45 d |
| Reduced AST, ALT, ALP, LDH, and total bilirubin and increased TC, TP, and albumin. Reduced necrosis and inflammatory cell infiltration. Increased catalase and SOD; reduced TARS. | [ |
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| Sodium arsenite induced in rats |
| Reduced ALT and AST. | [ | |
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| Restrained stress induced in mouse | 5 d | Myelophil, an ethanol extract of Radix Astragali and Salviae Radix | Reduced ALT and AST. Reduced ROS and lipid peroxidation; restored liver catalase, glutathione reduced, and peroxidase; normalised IL1 | [ |
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| Dimethoate induced (insecticides) in guinea pigs | 21 d |
| Reduced AST, ALT, and ALP. No observable pathological changes. | [ |
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| Pyrogallol induced | 12 hrs |
| Reversed AST, ALT, ALP, and total bilirubin. Reduced Akt and STAT3. | [ |
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| Concanavalin-A | 9 d |
| Reduced serum liver markers. Restored liver architecture and showed less visible changes. | [ |
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| Naphthalene induced | 30 d |
| Showed no necrosis and infiltration of inflammatory cells. Reduced AST, ALT, ACP, and ALP. | [ |
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| Alpha-naphthylisothiocyanate (ANIT) induced | 5 d |
| Decreased ALT, AST, ASP, and Tbil. Showed mild interlobular duct epithelial damages, lesser neutrophil cells infiltration, necrosis, and degeneration. Reduced MDA; increased hepatic SOD. | [ |
| 9 d | Danning tablet | Reduced ALT, AST, ALP, T-Bil, and D-Bil. Showed mild necrotic and degenerative changes with lesser neutrophil infiltration. Reduced hepatic MPO, GST, GSH, and LPO; increased SOD, Gpx, and CAT activities. | [ | |
Content not specified in the paper.