1.Advancements in herbal medicine-based nanozymes for biomedical applications.
Mei YANG ; Zhichao DENG ; Yuanyuan ZHU ; Chenxi XU ; Chenguang DING ; Yujie ZHANG ; Mingxin ZHANG ; Mingzhen ZHANG
Chinese Medical Journal 2025;138(9):1037-1049
Nanozymes are a distinct category of nanomaterials that exhibit catalytic properties resembling those of enzymes such as peroxidase (POD), superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GPx). Nanozymes derived from Chinese herbal medicines exhibit the catalytic functions of their enzyme mimics, while retaining the specific medicinal properties of the herb (termed "herbzymes"). These nanozymes can be categorized into three main groups based on their method of synthesis: herb carbon dot nanozymes, polyphenol-metal nanozymes, and herb extract nanozymes. The reported catalytic activities of herbzymes include POD, SOD, CAT, and GPx. This review presents an overview of the catalytic activities and potential applications of nanozymes, introduces the novel concept of herbzymes, provides a comprehensive review of their classification and synthesis, and discusses recent advances in their biomedical applications. Furthermore, we also discuss the significance of research into herbzymes, including the primary challenges faced and future development directions.
Nanostructures/chemistry*
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Humans
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Herbal Medicine/methods*
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Superoxide Dismutase/chemistry*
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Catalase/chemistry*
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Drugs, Chinese Herbal/chemistry*
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Catalysis
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Glutathione Peroxidase/chemistry*
2.Preparation and catalytic properties of catalase-inorganic hybrid nanoflowers.
Jiao PANG ; Mengtong JIANG ; Yuxin LIU ; Mingyu LI ; Jiaming SUN ; Conggang WANG ; Xianzhen LI
Chinese Journal of Biotechnology 2022;38(12):4705-4718
Catalase is widely used in the food, medical, and textile industries. It possesses exceptional properties including high catalytic efficiency, high specificity, and environmental friendliness. Free catalase cannot be recycled and reused in industry, resulting in a costly industrial biotransformation process if catalase is used as a core ingredient. Developing a simple, mild, cost-effective, and environmentally friendly approach to immobilize catalase is anticipated to improve its utilization efficiency and enzymatic performance. In this study, the catalase KatA derived from Bacillus subtilis 168 was expressed in Escherichia coli. Following separation and purification, the purified enzyme was prepared as an immobilized enzyme in the form of enzyme-inorganic hybrid nanoflowers, and the enzymatic properties were investigated. The results indicated that the purified KatA was obtained through a three-step procedure that included ethanol precipitation, DEAE anion exchange chromatography, and hydrophobic chromatography. Then, by optimizing the process parameters, a novel KatA/Ca3(PO4)2 hybrid nanoflower was developed. The optimum reaction temperature of the free KatA was determined to be 35 ℃, the optimum reaction temperature of KatA/Ca3(PO4)2 hybrid nanoflowers was 30-35 ℃, and the optimum reaction pH of both was 11.0. The free KatA and KatA/Ca3(PO4)2 hybrid nanoflowers exhibited excellent stability at pH 4.0-11.0 and 25-50 ℃. The KatA/Ca3(PO4)2 hybrid nanoflowers demonstrated increased storage stability than that of the free KatA, maintaining 82% of the original enzymatic activity after 14 d of storage at 4 ℃, whereas the free KatA has only 50% of the original enzymatic activity. In addition, after 5 catalytic reactions, the nanoflower still maintained 55% of its initial enzymatic activity, indicating that it has good operational stability. The Km of the free KatA to the substrate hydrogen peroxide was (8.80±0.42) mmol/L, and the kcat/Km was (13 151.53± 299.19) L/(mmol·s). The Km of the KatA/Ca3(PO4)2 hybrid nanoflowers was (32.75±2.96) mmol/L, and the kcat/Km was (4 550.67±107.51) L/(mmol·s). Compared to the free KatA, the affinity of KatA/Ca3(PO4)2 hybrid nanoflowers to the substrate hydrogen peroxide was decreased, and the catalytic efficiency was also decreased. In summary, this study developed KatA/Ca3(PO4)2 hybrid nanoflowers using Ca2+ as a self-assembly inducer, which enhanced the enzymatic properties and will facilitate the environmentally friendly preparation and widespread application of immobilized catalase.
Catalase
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Nanostructures/chemistry*
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Hydrogen Peroxide/metabolism*
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Enzymes, Immobilized/chemistry*
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Catalysis
3.Drying temperature affects rice seed vigor via gibberellin, abscisic acid, and antioxidant enzyme metabolism.
Yu-Tao HUANG ; Wei WU ; Wen-Xiong ZOU ; Hua-Ping WU ; Dong-Dong CAO
Journal of Zhejiang University. Science. B 2020;21(10):796-810
Seed vigor is a key factor affecting seed quality. The mechanical drying process exerts a significant influence on rice seed vigor. The initial moisture content (IMC) and drying temperature are considered the main factors affecting rice seed vigor through mechanical drying. This study aimed to determine the optimum drying temperature for rice seeds according to the IMC, and elucidate the mechanisms mediating the effects of drying temperature and IMC on seed vigor. Rice seeds with three different IMCs (20%, 25%, and 30%) were dried to the target moisture content (14%) at four different drying temperatures. The results showed that the drying temperature and IMC had significant effects on the drying performance and vigor of the rice seeds. The upper limits of drying temperature for rice seeds with 20%, 25%, and 30% IMCs were 45, 42, and 38 °C, respectively. The drying rate and seed temperature increased significantly with increasing drying temperature. The drying temperature, drying rate, and seed temperature showed extremely significant negative correlations with germination energy (GE), germination rate, germination index (GI), and vigor index (VI). A high IMC and drying temperature probably induced a massive accumulation of hydrogen peroxide (H2O2) and superoxide anions in the seeds, enhanced superoxide dismutase (SOD) and catalase (CAT) activity, and increased the abscisic acid (ABA) content. In the early stage of seed germination, the IMC and drying temperature regulated seed germination through the metabolism of H2O2, gibberellin acid (GA), ABA, and α-amylase. These results indicate that the metabolism of reactive oxygen species (ROS), antioxidant enzymes, GA, ABA, and α-amylase might be involved in the mediation of the effects of drying temperature on seed vigor. The results of this study provide a theoretical basis and technical guidance for the mechanical drying of rice seeds.
Abscisic Acid/metabolism*
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Antioxidants/pharmacology*
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Catalase/metabolism*
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Gene Expression Regulation, Plant/drug effects*
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Germination
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Gibberellins/metabolism*
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Hydrogen Peroxide/chemistry*
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Malondialdehyde/chemistry*
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Oryza/metabolism*
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Oxygen/chemistry*
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Plant Proteins/genetics*
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Reactive Oxygen Species
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Seeds/metabolism*
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Superoxide Dismutase/metabolism*
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Superoxides/chemistry*
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Temperature
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Weather
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alpha-Amylases/metabolism*
4.Exogenous H₂O₂ regulated secondary metabolism of Scutellaria baicalensis and enhanced drug quality.
Xiao-Ying FU ; Hui-Min GUO ; Wei CONG ; Xiang-Cai MENG
China Journal of Chinese Materia Medica 2018;43(2):271-287
The increasing demand of Chinese materia medica could not be supplied by wild resource, and the cultivated medicinal materials become popular, which led to decreased quality of many medicinal materials due to the difference of the circumstance between the wild and the cultivated. How to improve quality becomes key points of Chinese medicine resource. The leaves of Scutellaria baicalensis were sprayed with H₂O₂, the activities of superoxide dismutase (SOD) and catalase (CAT) changed little, but there had been a marked decrease of peroxidase (POD) and ascorbic oxidase (APX), which showed that the antioxidase system declined. Meanwhile, H₂O₂, as enhanced the expression of phenylalnine ammonialyase (PAL) and β-glucuronidase (GUS) as well as activity of PAL, promoted the biosynthesis and biotransformation of flavonoids. At the day 2 after treated, H₂O₂ of 0.004 μmol·L⁻¹ the contents of the baicalin and the wogonoside decreased slightly, but the contents of the baicalein and the wogonin increased significantly, the baicalein from 0.094% to 0.324%, the wogonin from 0.060% to 0.110%, i. e. increased 246% and 83.3%, respectively.
Ascorbate Oxidase
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metabolism
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Catalase
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metabolism
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Drugs, Chinese Herbal
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chemistry
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Flavanones
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analysis
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Flavonoids
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analysis
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Glucosides
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analysis
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Glucuronidase
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metabolism
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Hydrogen Peroxide
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Peroxidase
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metabolism
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Phenylalanine Ammonia-Lyase
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metabolism
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Scutellaria baicalensis
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metabolism
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Secondary Metabolism
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Superoxide Dismutase
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metabolism
5.Tongjingling improves sperm DNA integrity and reduces oxidative stress in the testis of experimental varicocele rats.
Bao-Xin DU ; Jun-Zhuang ZHENG ; Bing LIU ; Fang-Ze TAO ; Yue-Kun FANG ; Wen-Li XU ; Yun CUI
National Journal of Andrology 2017;23(11):1025-1031
Objective:
To explore the protective effect of Tongjingling (TJL) against sperm DNA damage and oxidative stress in the rat model of experimental varicocele (EVC).
METHODS:
We randomly divided 75 Wistar male rats into five groups of equal number: sham operation, EVC model, high-dose TJL, mid-dose TJL, and low-dose TJL. The EVC model was established in the rats by partial ligation of the left renal vein, followed by 8 weeks of medication from the 4th week after modeling. Then we observed the general status of the rats, detected the sperm DNA fragmentation index (DFI) in the epididymis by sperm chromatin structure assay (SCSA), and measured the content of hydroperoxide (H2O2) and the activities of catalase (CAT) and superoxide dismutase (SOD) in the testis by colorimetry.
RESULTS:
Compared with the sham operation group, the EVC models showed significantly increased sperm DFI in the epididymis (P <0.01) and elevated level of H2O2 and activities of CAT and SOD in the testis (P <0.01). In comparison with the EVC models, the rats of the TJL groups exhibited remarkably reduced sperm DFI and H2O2 content, but increased activities of SOD and CAT.
CONCLUSIONS
TJL can improve sperm DNA integrity by increasing the activities of SOD and CAT and reducing the H2O2 level and hence oxidative stress in the testis tissue.
Animals
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Catalase
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analysis
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DNA
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drug effects
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DNA Fragmentation
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Drugs, Chinese Herbal
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pharmacology
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Epididymis
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chemistry
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Humans
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Hydrogen Peroxide
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analysis
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Ligation
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Male
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Oxidative Stress
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Random Allocation
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Rats
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Rats, Wistar
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Spermatozoa
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Superoxide Dismutase
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analysis
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Testis
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chemistry
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drug effects
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Varicocele
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etiology
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genetics
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metabolism
6.Effect of salicylic acid on photosynthesis, physio-biochemistry and quality of Panax ginseng under full sun shine in spring.
Wu-lin CAO ; Xiang-cai MENG ; Wei MA
China Journal of Chinese Materia Medica 2015;40(18):3553-3559
In order to search for a new pathway to improve the yield of ginseng through growing at the full sun shine accompanied by salicylic acid (SA), the net photosynthetic rate (P(n)), superoxide dismutase (SOD), catalase (CAT), peroxidase (POD), malondialdehyde (MDA) in Panax ginseng leaves, and the content of ginsenosides in roots were compared under various concentrations of SA and full sun shine with the traditional shade shed. Under the full sun shine, 0.05, 0.2 mmol x L(-1) SA increased net photosynthetic rate to a great extent. Under the cloudy day, the average net photosynthetic rate increased by 127.8% and 155.0% over the traditional shade shed, 13.9% and 27.5% over the treatment without SA respectively; under the clear day, 23.5% and 30.4% over the traditional shade shed, 8.6% and 14.6% over the treatment without SA, particularly obvious in the morning and late afternoon. With such concentration, SA increased activities of SOD, CAT, POD, and decreased the contents of the MDA. This difference resulted from different light intensity, rise of light saturation point, and fall of compensation point. Full sun shine decreased ginsenosides contents, but with SA, the ginsenosides regained, the content of Rg1 and Re, Rb1, total six types of ginsenosides in SA 0.2 mmol x L(-1) group were higher than those in the control group (P < 0.05) and other groups. The application of 0.2 mmol x L(-1) SA under full sun shine during a short time has little threat to the P. ginseng in spring, and could enhance the resistance to the adversity, which would improve the yield of ginseng heavily.
Catalase
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analysis
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metabolism
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Ginsenosides
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analysis
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metabolism
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Light
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Malondialdehyde
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analysis
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metabolism
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Panax
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chemistry
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drug effects
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metabolism
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radiation effects
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Peroxidases
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analysis
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metabolism
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Photosynthesis
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drug effects
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Plant Proteins
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analysis
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metabolism
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Salicylic Acid
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pharmacology
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Seasons
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Superoxide Dismutase
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analysis
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metabolism
7.Preparation and characterization of uricase in uricase-catalase liposomes prepared using borate buffer.
Yunli ZHOU ; Lin YANG ; Zijun YAN ; Xue DENG ; Jingqing ZHANG
Journal of Southern Medical University 2015;35(2):268-271
OBJECTIVETo characterize the property of uricase loaded in uricase-catalase liposomes (BUCLPs) prepared using borate buffer.
METHODSBUCLPs were prepared using reverse-phase evaporation, and the physicochemical properties of uricase in the prepared BUCLPs were examined.
RESULTSThe optimal temperature of BUCLP and URI was 40 degrees celsius, their optimal pH values were 8.0 and 8.5, and their Michaelis-Menten constants were 14.207 µmol/L and 13.623 µmol/L, respectively. Fluorescence intensity of nanoliposome-loaded uricase-catalase that bound to FITC was higher than that of uricase-catalase binding directly with FITC; the fluorescence intensity of BUCLP was higher than that of free uricase-catalase at 280 nm.
CONCLUSIONUricase activity is enhanced after loading in uricase and catalase liposomes.
Borates ; Catalase ; Liposomes ; Nanoparticles ; chemistry ; Temperature ; Urate Oxidase ; chemistry
8.Effect of Oenanthe Javanica Extract on Antioxidant Enzyme in the Rat Liver.
Choong-Hyun LEE ; Joon-Ha PARK ; Jeong-Hwi CHO ; In-Hye KIM ; Ji-Hyeon AHN ; Jae-Chul LEE ; Bai Hui CHEN ; Bich-Na SHIN ; Hyun-Jin TAE ; Eun Joo BAE ; Il-Jun KANG ; Moo-Ho WON ; Jong-Dai KIM
Chinese Medical Journal 2015;128(12):1649-1654
BACKGROUNDOenanthe javanica (O. javanica) has been known to have high antioxidant properties via scavenging reactive oxygen species. We examined the effect of O. javanica extract (OJE) on antioxidant enzymes in the rat liver.
METHODSWe examined the effect of the OJE on copper, zinc-superoxide dismutase (SOD1), manganese superoxide dismutase (SOD2), catalase (CAT), and glutathione peroxidase (GPx) in the rat liver using immunohistochemistry and western blot analysis. Sprague-Dawley rats were randomly assigned to three groups; (1) normal diet fed group (normal-group), (2) diet containing ascorbic acid (AA)-fed group (AA-group) as a positive control, (3) diet containing OJE-fed group (OJE-group).
RESULTSIn this study, no histopathological finding in the rat liver was found in all the experimental groups. Numbers of SOD1, SOD2, CAT, and GPx immunoreactive cells and their protein levels were significantly increased in the AA-fed group compared with those in the normal-group. On the other hand, in the OJE-group, numbers of SOD1, SOD2, CAT, and GPx immunoreactive cells in the liver were significantly increased by about 190%, 478%, 685%, and 346%, respectively, compared with those in the AA-group. In addition, protein levels of SOD1, SOD2, CAT, and GPx in the OJE-group were also significantly much higher than those in the AA-group.
CONCLUSIONOJE significantly increased expressions of SOD1 and SOD2, CAT, and GPx in the liver cells of the rat, and these suggests that significant enhancements of endogenous enzymatic antioxidants by OJE might be a legitimate strategy for decreasing oxidative stresses in the liver.
Animals ; Antioxidants ; metabolism ; Ascorbic Acid ; pharmacology ; Catalase ; metabolism ; Glutathione Peroxidase ; metabolism ; Immunohistochemistry ; Liver ; drug effects ; enzymology ; metabolism ; Male ; Oenanthe ; chemistry ; Oxidative Stress ; drug effects ; Plant Extracts ; pharmacology ; Rats ; Rats, Sprague-Dawley ; Superoxide Dismutase ; metabolism
9.The influences of ultrafiltration and alcohol sedimentation on protective effects of Radix Astragali and Radix Hedyseri against rat's cerebral ischemia.
Yong-qi LIU ; Zhi-wang WANG ; Shu-chang WEI ; Chun-lu YAN ; Rui-qiong WANG ; Ying-dong LI
Chinese Journal of Applied Physiology 2015;31(2):132-135
OBJECTIVETo investigate the influences of ultrafiltration and alcohol sedimentation on protective effects of Radix Astragali and Radix Hedyseri against rat's cerebral ischemia.
METHODSUsing dexamethasone (im.) and ligating common carotid artery, the rat stasis model combined transient cerebral ischemia was established to evaluate the effects of the ultrafiltration and alcohol sedimentation through detecting antioxidant system and other indexes in brain tissue.
RESULTSThe results showed that the 6 g/kg water extract(crude drug), ultrafiltration and alcohol sedimentation of Radix Astragali and Radix Hedyseri could upgrade adenosine-triphosphate (ATP), superoxide dismutase (SOD) and catalase (CAT), and degrade malondialdehyde(MDA) and water content of brain tissue in rat stasis model combined transient cerebral ischemia, the water extract and ultrafiltration of them could degrade lactic acid (LD) of brain tissue, and the effects of alcohol sedimentation of Radix Astragali and Radix Hedyseri become weaker than water extract of them.
CONCLUSIONThe water extract, ultrafiltration and alcohol sedimentation of Radix Astragali and Radix Hedyseri have some protective effects on cerebral ischemia in rats, the effective differences of the extract through the same extraction method are not remarkable, and alcohol precipitation method has obvious influences effect on Radix Astragali and Radix Hedyseri.
Alcohols ; chemistry ; Animals ; Antioxidants ; metabolism ; Astragalus Plant ; chemistry ; Brain ; drug effects ; Catalase ; metabolism ; Cerebral Infarction ; drug therapy ; Drugs, Chinese Herbal ; pharmacology ; Malondialdehyde ; metabolism ; Plant Roots ; chemistry ; Rats ; Superoxide Dismutase ; metabolism ; Ultrafiltration
10.Protective effect of alkaloids from Piper longum in rat dopaminergic neuron injury of 6-OHDA-induced Parkinson's disease.
Li ZHENG ; Hao WANG ; Yin-Ying BA ; Hao-Long LIU ; Meng WANG ; Wei-Wei GUO ; Xia WU ; Hui YANG
China Journal of Chinese Materia Medica 2014;39(9):1660-1665
OBJECTIVETo discuss the protective effect of alkaloids from Piper longum (PLA) in rat dopaminergic neuron injury of 6-OHDA-induced Parkinson's disease and its possible mechanism.
METHODThe rat PD model was established by injecting 6-OHDA into the unilateral striatum with a brain solid positioner. The PD rats were divided into the PLA group (50 mg x kg(-1) x d(-1)), the madorpa group (50 mg x kg(-1) x d(-1)) and the model group, with 15 rats in each group. All of the rats were orally given drugs once a day for 6 weeks. Meanwhile, other 15 rats were randomly selected as the sham operation group, and only injected with normal saline in the unilateral striatum. The behavioral changes were observed with the apomorphine (APO)-induced rotation and rotary rod tests. The number of tyrosine hydroxylase (TH)-positive cells in rat substantia nigra and the density of TH-positive fibers in striatum were detected by tyrosine hydroxylase immunohistochemistry. The content of superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), glutathione (GSH), catalase (CAT), malondialdehyde (MDA), nitric oxide (NO) and nitric oxide synthase (NOS) in rat substantia nigra and striatum were measured by the spectrophotometric method.
RESULTAfter being induced by APO, PD rats showed obvious rotation behaviors, with decreased time stay on rotary rod and significant reduction in the number of TH-positive cells in sustantia nigra and the density of TH-positive fibers in striatum. The activities of SOD, GSH-Px, CAT, the content of GSH and the total antioxidant capacity significantly decreased, whereas the activities of NOS and the content of MDA, NO significantly increased. PLA could significantly improve the behavioral abnormality of PD rats and increase the number of TH-positive cells in sustantia nigra and the density of TH-positive fibers in striatum. It could up-regulate the activities of SOD, GSH-Px, CAT, the content of GSH and the total antioxidant capacity, and decrease the content of NOS and the content of MDA, NO.
CONCLUSIONAlkaloids from P. longum shows the protective effect in substantia nigra cells of 6-OHDA-induced PD model rats. Its mechanism may be related with their antioxidant activity.
Administration, Oral ; Alkaloids ; administration & dosage ; pharmacology ; Animals ; Apomorphine ; pharmacology ; Catalase ; metabolism ; Dopamine Agonists ; pharmacology ; Dopaminergic Neurons ; drug effects ; metabolism ; pathology ; Glutathione ; metabolism ; Glutathione Peroxidase ; metabolism ; Male ; Malondialdehyde ; metabolism ; Motor Activity ; drug effects ; Neostriatum ; drug effects ; metabolism ; Nitric Oxide ; metabolism ; Nitric Oxide Synthase ; metabolism ; Oxidopamine ; Parkinson Disease, Secondary ; chemically induced ; physiopathology ; prevention & control ; Piper ; chemistry ; Random Allocation ; Rats ; Rats, Sprague-Dawley ; Substantia Nigra ; drug effects ; metabolism ; Superoxide Dismutase ; metabolism ; Tyrosine 3-Monooxygenase ; metabolism

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