• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    Treating Alzheimer’s disease with Yizhijiannao granules by regulating expression of multiple proteins in temporal lobe

    2014-06-01 09:56:34HongZhuLiuyangLuoSihangHuKeliDongGuangchengLiTingZhang

    Hong Zhu, Liuyang Luo, Sihang Hu, Keli Dong, Guangcheng Li, Ting Zhang

    1 Department of Traditional Chinese Medicine, Third Xiangya Hospital of Central South University, Changsha, Hunan Province, China

    2 Department of Emergency, Bao-an District Hospital of Traditional Chinese Medicine, Shenzhen, Guangdong Province, China

    Treating Alzheimer’s disease with Yizhijiannao granules by regulating expression of multiple proteins in temporal lobe

    Hong Zhu1, Liuyang Luo2, Sihang Hu1, Keli Dong1, Guangcheng Li1, Ting Zhang1

    1 Department of Traditional Chinese Medicine, Third Xiangya Hospital of Central South University, Changsha, Hunan Province, China

    2 Department of Emergency, Bao-an District Hospital of Traditional Chinese Medicine, Shenzhen, Guangdong Province, China

    Yizhijiannao granules have been shown to improve cognitive function in Alzheimer’s disease patients. The present study sought to explore the mechanisms involved in the cognitive enhancing effects of Yizhijiannao granule. Senescence-accelerated mouse prone 8 mice with learning and memory disorders were intragastrically treated with Yizhijiannao granule for 8 weeks. Mice intragastrically treated with double distilled water for 8 weeks were considered as the control group. 2D gel electrophoresis was used to isolate total protein from the temporal lobe of senescence-accelerated mouse prone 8 mice, and differential protein spots were obtained by mass spectrometry. Thirty-seven differential protein spots were found in the temporal lobe area of both groups. Ten protein spots were identi fi ed: high mobility group box 1, dimethylarginine dimethylaminohydrolase-1, neuroglobin, hemoglobin beta adult major chain, peroxiredoxin-6, co fi lin-1, fl otillin 1, peptidylprolyl isomerase A, voltage-dependent anion channel-2 and chaperonin containing TCP1, and subunit 2. Among other functions, these proteins are separately involved in the regulation of amyloid beta production, oxidative stress, neuroinflammation, regulation of tau phosphorylation, and regulation of neuronal apoptosis. Our results revealed that Yizhijiannao granule can regulate the expression of various proteins in the temporal lobe of senescence-accelerated mouse prone 8 mice, and may be therapeutically bene fi cial for the treatment of Alzheimer’s disease.

    nerve regeneration; traditional Chinese medicine; neurodegeneration; Alzheimer’s disease; Yizhijiannao granule; mass spectrometry; cognition; neural regeneration

    Funding: This study was supported by Startup Fund for 125 Scholars of Third Xiangya Hospital; and the Natural Science Foundation of Hunan Province, No. 07JJ5017.

    Zhu H, Luo LY, Hu SH, Dong KL, Li GC, Zhang T. Treating Alzheimer’s disease with Yizhijiannao granules by regulating expression of multiple proteins in temporal lobe. Neural Regen Res. 2014;9(13):1283-1287.

    Introduction

    Alzheimer’s disease is a complex disease that is associated with many dysfunctional processes (Huang and Mucke, 2012; Reiman, 2014). Modern medicines that target speci fi c dysfunctional processes will have limited effect in the treatment of Alzheimer’s disease. However, therapeutic methods and drugs that have broad-spectrum applications will provide greater outcomes (Huang and Mucke, 2012; Reiman, 2014). Traditional Chinese medicines, which are natural drugs with multiple components and functions, may be possible candidates for the treatment of Alzheimer’s disease.

    More and more evidence has shown that the temporal lobe plays an important role in Alzheimer’s disease (Scheff and Price, 1993; Frisoni et al., 2010; Oosterman et al., 2012). Postmortem ultrastructural examination of the temporal lobe in Alzheimer’s disease patients has revealed signi fi cant synapse loss. In addition, atrophy of medial temporal structures has been considered to be a valid diagnostic marker at the mild cognitive impairment stage. Temporal lobe atrophy was closely related to lower executive function, general cognitive function, and episodic memory performance in Alzheimer’s disease.

    The senescence accelerate mouse prone 8 is a typical senile mouse model with learning and memory impairments (Wang et al., 2014). The brains of the senescence-accelerated mouse prone 8 have some neuropathologic characteristics such as hyperphosphorylation of tau, and the overproduction of amyloid precursor protein and amyloid-beta protein, which are similar to those seen in Alzheimer’s disease. Other characteristics of Alzheimer’s disease shared by senescence-accelerated mouse prone 8 mice include increased oxidative damage, decreased choline acetyltransferase activity, and increased alpha synuclein. With respect to the behavioral and histopathological signatures of Alzheimer’s disease, senescence-accelerated mouse prone 8 mice are currently considered to be an ideal model of Alzheimer’s disease (Morley et al., 2012).

    Yizhijiannao granule is a cipher prescription that has beenused for treating senile dementia for more than 13 years in our hospital. Previous studies have shown that Yizhijiannao granule can enhance cognitive performance in Alzheimer’s disease patients and Alzheimer’s disease-model mice (Yang et al., 2005; Yang and Dong, 2013). Further studies revealed that Yizhijiannao granule may exert its therapeutic effect by inhibiting neural cell apoptosis, reducing tau phosphorylation and relieving neuroinflammation (Yang et al., 2006; Wang et al., 2009). In addition, Yizhijiannao granule can inhibit early beta-amyloid (25-35)-induced PC12 cell apoptosis (Zhang et al., 2012) . Taken together, these studies suggest that the bene fi cial effect of Yizhijiannao granule involves multiple targets and pathways. Therefore, we aimed to identify target-proteins of Yizhijiannao granule that were particularly related to the treatment of Alzheimer’s disease.

    In the present study, senescence-accelerated mouse prone 8 mice were administered Yizhijiannao granule, and differential protein expression in the temporal lobe was identi fi ed to elucidate the multi-targeted effects of Yizhijiannao granule in the treatment of Alzheimer’s disease.

    Materials and Methods

    Animals

    Twenty 6-month-old male senescence-accelerated mouse prone 8 mice were obtained from the Experimental Animal Center, First Affiliated Hospital of Tianjin University of Traditional Chinese Medicine (Tianjin, China; license No. 0003740). Mice were housed in separate cages under conditions free of speci fi c pathogens at 21 ± 3°C with a relative humidity of 55-58%, exposed to a daily 12-hour light/dark cycle. Mice were given free access to food and water. This study was approved by the Animal Ethics Committee of Central South University, China.

    Yizhijiannaogranule preparation

    Yizhijiannao granule was composed of seven commonly used herbs: Herba Epimedii, Herba Cynomorii, Radix Notoginseng, Radix Acanthopanacis Senticosi, Radix Dipsaci, Semen Platycladi, Hirudo. These herbs were mixed in the ratio of 3:3:2:2:2:2:1 (dry weight). The raw herbs for Yizhijiannao granule were purchased from the Dispensary of traditional Chinese medicine, Xiangya Third Hospital of Central South University, China. All of the herbs are regionally famous drugs and were authenticated by the herbalists of Xiangya Third Hospital. Yizhijiannao granule was extracted as previously described by Hangzhou Dekang Pharmaceutical Co., Ltd (Hangzhou, Zhejiang Province, China) (Zhang et al., 2012). Yizhijiannao granule was dissolved in distilled water for administration to mice. The dose of administration used in this study was based on our previous study (Yang et al., 2006; Wang et al., 2009).

    Experimental groups

    A total of 20 adult male senescence-accelerated mouse prone 8 mice were equally and randomly divided into two groups: (1) treatment group, intragastrically administrated Yizhijiannao granule 1 mL/d for 8 weeks; (2) control group: intragastrically administrated the same volume of double distilled water for 8 weeks. No death or infection occurred in both groups. All 20 mice were included in the fi nal analysis without deletion.

    Sample collection of brain tissue

    Eight weeks following treatment, all mice were decapitated. Brain tissues were quickly segregated from the temporal lobe at near-freezing temperature, and each tissue was stored in Eppendorf tubes at -80°C in liquid nitrogen.

    Total protein extraction and concentration determinationEach tissue (50 mg in average wet weight) was homogenized with 400 μL lysis solution, comprising 2 mmol/L thiourea, 7 mmol/L Urea, 100 mmol/L dithiothreitol, 5 mmol/L phenylmethyl sulfonyl fl uoride, 4% (v/v) 3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonate, 0.5 mmol/L ethylenediamine tetraacetic acid, 40 mmol/L Tris, 2% (v/v) NP-40, 1% (v/v) Triton X-100, and 2% pharmalyte). After incubation at 37°C for 1 hour, the homogenate was then centrifuged at 12,000 r/min for 1 hour to obtain the supernatant. The protein concentration of the supernatant was determined using the 2D Quant Kit (Amersham Bioscience, Buckinghamshire, UK.

    2D gel electrophoresis

    2D gel electrophoresis was performed according to a previous method (Gorg et al., 1995), in a horizontal electrophoresis system, IPGphorTMfor the fi rst-dimensional isoelectric focusing on IPG strips (24 cm long, linear gradient 3-10). In the second dimension of 2D-polyacrylamide gel electrophoresis, proteins with similar isoelectric points were further separated according to their molecular weight on a sodium dodecyl sulfate polyacrylamide gel.

    Staining and computer analysis of the 2D gel

    According to the previous blue silver staining method (Gorg et al., 2000), the gels were stained using Coomassie blue-G250. The Coomassie blue-stained gels were then scanned with an Image scanner (Bio-Rad, Hercules, CA, USA) and analyzed by LabScan software to get the gel image. The gel image was then analyzed qualitatively and quantitatively using PD Quest software (Bio-Rad). Only spots showing a difference in the integrated intensity larger than twofold between the control group and the treated group were further studied.

    Mass spectrometric analysis

    The protein spots of interest were cut off the 2D gels and enzymatically degraded with modi fi ed trypsin in accordance with a previous method (Hubbard, 2006). The spots were then analyzed using the MALDI-TOF-MS (Applied Biosystems, Carlsbad, CA, USA) to get the peptide mass fi ngerprint. The peptide mass fingerprint data were submitted to the MASCOT software (http://www. Matrix-science.com/cgi/ search_form.pl?FORMVER=2&SEARCH=PMF) search engine to identify the proteins.

    Table 1 Differential protein spots identi fi ed in mass spectrometry protein sequence database

    Figure 1 Two-dimensional gel electrophoresis maps in senescence-accelerated mouse prone 8 from the treatment group and the control group.

    Figure 2 Database search results of No. 10 protein spot.

    Results

    Temporal 2D gel electrophoresis maps and differential protein spot identi fi cation

    To ensure maximal reproducibility of the 2D gel electrophoresis experiment, we compared three samples from the treatment group and three samples from the control group in the studied brain regions. We obtained three 2D gel electrophoresis maps in each group. Approximately 900 spots per gel were detected using the PD Quest software. For the mass spectrometric analysis of the spots on the 2D gel electrophoresis maps, a threshold minimum of a two-fold up- or down-regulation in the integrated intensity between the control group and the treatment group was used to exclude proteins that differed in integrated intensity owing to small variationsoccurring randomly during the experimental process. Finally, 10 differentially expressed protein spots were identified, of which 5 protein spots were up-regulated and 5 protein spots were down-regulated (Figure 1). The database search result of protein No. 10 is shown inFigure 2. The differentially expressed protein spots identi fi ed are listed inTable 1.

    Discussion

    Although the fi rst presentation of Alzheimer’s disease dates back to 1906, the pathogenic mechanisms of the disease remain inadequately understood and fragmentary, some of which are in a state of serious controversy. Thus, we tend to deem that Alzheimer’s disease is a complex disease consisting of multipathogenic mechanisms that have multifactorial involvement. In our present study, the identified proteins could be assigned to several categories related to amyloid beta production, oxidative stress, neuroinflammation, cell apoptosis, and tau phosphorylation.

    One of the pathologic hallmarks of Alzheimer’s disease is the extracellular aberrant accumulation of amyloid beta in senile plaques. Recently, it was shown that lipid rafts played an important role in the amyloidogenic processing of the amyloid precursor protein; lipid rafts could function as platforms for amyloid beta production (Vetrivel and Thinakaran, 2010). The identified protein flotillin-1 has been used as a biochemical marker of lipid rafts in neural tissue (Girardot et al., 2003; Kokubo et al., 2003), and its expression is increased in the brains of Alzheimer’s disease subjects and increases in parallel to increasing stages of amyloid beta deposition (Kania et al., 2012). In our study, fl otillin-1 was down-regulated in the treatment group, thus affording fewer platforms for amyloid beta production. Therefore, it is tempting to speculate that Yizhijiannao granule may derive therapeutic effect by decreasing amyloid beta production in a platform-dismantling mechanism, which may be a new direction for the treatment of Alzheimer’s disease. However, further research is needed.

    Numerous studies on Alzheimer’s disease during the past decade have consistently confirmed the involvement of oxidative stress in disease pathogenesis (Padurariu et al., 2013; Kosenko et al., 2014). Recently, more and more evidence shows that neuroglobin may act as an intracellular reactive oxidative species and a reactive nitrogen species scavenger to play a role in neuron protection (Jin et al., 2008; Li et al., 2008). Being a reactive oxidative species scavenger, it could attenuate amyloid beta neurotoxicity in vitro, the transgenic Alzheimer phenotype in vivo, and protect PC12 cells against amyloid beta-induced cell injury (Khan et al., 2007; Liu and Chan, 2014). Taken together, these evidences indicate that increasing neuroglobin expression may have a therapeutic effect in Alzheimer’s disease. With neuroglobin up-regulated, our research shows that Yizhijiannao granule may use the antioxidant properties of neuroglobin to obtain a therapeutic effect.

    There is a consensus that chronic in fl ammatory processes are involved in the pathogenesis of Alzheimer’s disease (Liu and Chan, 2014; Serpente et al., 2014). When glial cells are activated, they release proin fl ammatory factors to initiate the neuroinflammatory process. High mobility group box 1, a mediator of acute and chronic in fl ammatory diseases (Asavarut et al., 2013), was previously reported to be signi fi cantly upregulated in Alzheimer’s disease brains and colocalize with senile plaques (Takata et al., 2003). Based on the above research, we may assume that high mobility group box 1 probably plays a role in the chronic in fl ammatory process in Alzheimer’s disease brains as a proin fl ammatory factor. In our study, Yizhijiannao granule may down-regulate high mobility group box 1 to accomplish an anti-in fl ammatory effect.

    Another major pathologic characteristic of Alzheimer’s disease is the accumulation of intra-cellular neuro fi brillary tangles, which contains paired helical filaments composed of the microtubule-associated protein tau. Peptidyl-prolyl-cis-trans isomerase A (PPIase A, pin1) was shown to be involved in tauopathies in Alzheimer’s disease, and the levels of soluble pin1 are decreased in the brains of Alzheimer’s disease patients (Lu et al., 1999a, b). Pin1 can bind to phosphorylated tau at Thr-231, dephosphorylating the phosphorylated tau and facilitating conformational changes (Kimura et al., 2013), thereby restoring its biological function of binding microtubules and enhancing microtubule assembly. The decrease of pin1 in brains of Alzheimer’s disease patients may break the balanced phosphorylation state of tau proteins, leading to tau hyperphosphorylation and neuro fi brillary tangle formation. In view of the evidence presented above, we presume that pin1 could protect against tau hyperphosphorylation and thus inhibit the formation of neuro fi brillary tangles. In our study, pin1 was up-regulated in the treated group, so Yizhijiannao granule may play a part in the regulation of tau phosphorylation to produce a therapeutic effect.

    Voltage-dependent anion channel is considered to be a global regulator, or governor, of mitochondrial function (Lemasters and Holmuhamedov, 2006; Colombini, 2012), participating in many cellular processes, especially in cell apoptosis (Shoshan-Barmatz et al., 2010). Voltage-dependent anion channel-2, up-regulated in our study, was reported to be capable of inhibiting BAK activation and mitochondrial apoptosis, with cells deficient in voltage-dependent anion channel-2 exhibiting enhanced BAK oligomerization and being more susceptible to apoptotic death (Cheng et al., 2003). Conversely, overexpression of voltage-dependent anion channel-2 selectively prevented BAK activation and inhibited the mitochondrial apoptotic pathway (Cheng et al., 2003). Therefore, voltage-dependent anion channel-2 may facilitate a neuroprotective function in Alzheimer’s disease based on its anti-apoptotic property. By up-regulating voltage-dependent anion channel-2, Yizhijiannao granule may be involved in this anti-apoptotic process.

    Proteomics has been considered to be a useful tool to analyze protein changes in complex diseases such as Alzheimer’s disease, but there are also some shortcomings for this analytical tool that should be taken into consideration; the main problem is that proteomics cannot isolate all the low-abundance proteins, some of which may own strong bioactivities and play important roles in Alzheimer’s disease onset andtreatment. Therefore, further research is needed to verify the results of proteomics studies. Collectively, in the present study, we have identi fi ed some proteins which could be potential therapeutic targets for Alzheimer’s disease treatment. Yizhijiannao granule could induce a remedial effect on Alzheimer’s disease owing to its targeting of multiple pathways, which include reducing amyloid beta production, anti-oxidant, anti-in fl ammatory and anti-apoptotic properties, and dephosphorylation of tau proteins.

    Acknowledgments:We thank Xing XW from Central Laboratory of Third Xiangya Hospital, China for guidelines in proteomics.

    Author contributions:Zhu H designed this study, analyzed data and wrote the draft of the manuscript. Luo LY and Hu SH were responsible for data integration. Li GC authorized the manuscript and guided the study. Dong KL provided technical suggestions. Zhang T was in charge of animal preparations. All authors approved the final version of the paper.

    Con fl icts of interest:None declared.

    Asavarut P, Zhao H, Gu J, Ma D (2013) The role of HMGB1 in in fl ammation-mediated organ injury. Acta Anaesthesiol Taiwan 51:28-33.

    Cheng EH, Sheiko TV, Fisher JK, Craigen WJ, Korsmeyer SJ (2003) VDAC2 inhibits BAK activation and mitochondrial apoptosis. Science 301:513-517.

    Colombini M (2012) VDAC structure, selectivity, and dynamics. Biochim Biophys Acta 1818:1457-1465.

    Frisoni GB, Fox NC, Jack CRJ, Scheltens P, Thompson PM (2010) The clinical use of structural MRI in Alzheimer disease. Nat Rev Neurol 6:67-77.

    Girardot N, Allinquant B, Langui D, Laquerriere A, Dubois B, Hauw JJ, Duyckaerts C (2003) Accumulation of fl otillin-1 in tangle-bearing neurones of Alzheimer’s disease. Neuropathol Appl Neurobiol 29:451-461.

    Gorg A, Boguth G, Obermaier C, Posch A, Weiss W (1995) Two-dimensional polyacrylamide gel electrophoresis with immobilized pH gradients in the fi rst dimension (IPG-Dalt): the state of the art and the controversy of vertical versus horizontal systems. Electrophoresis 16:1079-1086.

    Gorg A, Obermaier C, Boguth G, Harder A, Scheibe B, Wildgruber R, Weiss W (2000) The current state of two-dimensional electrophoresis with immobilized pH gradients. Electrophoresis 21:1037-1053.

    Huang Y, Mucke L (2012) Alzheimer mechanisms and therapeutic strategies. Cell 148:1204-1222.

    Hubbard MJ (2006) Hierarchical protein identifications and assignments. J Proteome Res 5:733.

    Jin K, Mao XO, Xie L, Khan AA, Greenberg DA (2008) Neuroglobin protects against nitric oxide toxicity. Neurosci Lett 430:135-137.

    Kania E, Pajak B, Gajkowska B, Orzechowski A (2012) Lipid rafts in Alzheimer’s disease. Postepy Biochem 58:209-216.

    Khan AA, Mao XO, Banwait S, Jin K, Greenberg DA (2007) Neuroglobin attenuates beta-amyloid neurotoxicity in vitro and transgenic Alzheimer phenotype in vivo. Proc Natl Acad Sci U S A 104:19114-19119.

    Kimura T, Tsutsumi K, Taoka M, Saito T, Masuda-Suzukake M, Ishiguro K, Plattner F, Uchida T, Isobe T, Hasegawa M, Hisanaga S (2013) Isomerase Pin1 stimulates dephosphorylation of tau protein at cyclin-dependent kinase (Cdk5)-dependent Alzheimer phosphorylation sites. J Biol Chem 288:7968-7977.

    Kokubo H, Helms JB, Ohno-Iwashita Y, Shimada Y, Horikoshi Y, Yamaguchi H (2003) Ultrastructural localization of fl otillin-1 to cholesterol-rich membrane microdomains, rafts, in rat brain tissue. Brain Res 965:83-90.

    Kosenko EA, Solomadin IN, Tikhonova LA, Reddy VP, Aliev G, Kaminsky YG (2014) Pathogenesis of Alzheimer disease: role of oxidative stress, amyloid-beta peptides, systemic ammonia and erythrocyte energy metabolism. CNS Neurol Disord Drug Targets 13:112-119.

    Lemasters JJ, Holmuhamedov E (2006) Voltage-dependent anion channel (VDAC) as mitochondrial governator--thinking outside the box. Biochim Biophys Acta 1762:181-190.

    Li RC, Morris MW, Lee SK, Pouranfar F, Wang Y, Gozal D (2008) Neuroglobin protects PC12 cells against oxidative stress. Brain Res 1190:159-166.

    Liu L, Chan C (2014) The role of in fl ammasome in Alzheimer’s disease. Ageing Res Rev 15C:6-15.

    Lu PJ, Zhou XZ, Shen M, Lu KP (1999a) Function of WW domains as phosphoserine- or phosphothreonine-binding modules. Science 283:1325-1328.

    Lu PJ, Wulf G, Zhou XZ, Davies P, Lu KP (1999b) The prolyl isomerase Pin1 restores the function of Alzheimer-associated phosphorylated tau protein. Nature 399:784-788.

    Morley JE, Farr SA, Kumar VB, Armbrecht HJ (2012) The SAMP8 mouse: a model to develop therapeutic interventions for Alzheimer’s disease. Curr Pharm Des 18:1123-1130.

    Oosterman JM, Oosterveld S, Rikkert MG, Claassen JA, Kessels RP (2012) Medial temporal lobe atrophy relates to executive dysfunction in Alzheimer’s disease. Int Psychogeriatr 24:1474-1482.

    Padurariu M, Ciobica A, Lefter R, Serban IL, Stefanescu C, Chirita R (2013) The oxidative stress hypothesis in Alzheimer’s disease. Psychiatr Danub 25:401-409.

    Reiman EM (2014) Alzheimer’s disease and other dementias: advances in 2013. Lancet Neurol 13:3-5.

    Scheff SW, Price DA (1993) Synapse loss in the temporal lobe in Alzheimer’s disease. Ann Neurol 33:190-199.

    Serpente M, Bonsi R, Scarpini E, Galimberti D (2014) Innate immune system and in fl ammation in Alzheimer’s disease: from pathogenesis to treatment. Neuroimmunomodulat 21:79-87.

    Shoshan-Barmatz V, De Pinto V, Zweckstetter M, Raviv Z, Keinan N, Arbel N (2010) VDAC, a multi-functional mitochondrial protein regulating cell life and death. Mol Aspects Med 31:227-285.

    Takata K, Kitamura Y, Kakimura J, Shibagaki K, Tsuchiya D, Taniguchi T, Smith MA, Perry G, Shimohama S (2003) Role of high mobility group protein-1 (HMG1) in amyloid-beta homeostasis. Biochem Biophys Res Commun 301:699-703.

    Vetrivel KS, Thinakaran G (2010) Membrane rafts in Alzheimer’s disease beta-amyloid production. Biochim Biophys Acta 1801:860-867.

    Wang H, Dong K, Li G (2009) Effect of yizhi jiannao granules on the expression of Pin1 and HMGB1mRNA in the hippocampus of SAMP8 mice. Zhongnan Daxue Xuebao: Yixue Ban 34:63-66.

    Wang H, Lian K, Han B, Wang Y, Kuo SH, Geng Y, Qiang J, Sun M, Wang M (2014) Age-related alterations in the metabolic profile in the hippocampus of the senescence-accelerated mouse prone 8: a spontaneous Alzheimer’s disease mouse model. J Alzheimers Dis 39:841-848.

    Yang P, Dong K (2013) A Study of clinical observation on patients of Alzheimer Disease Treated by YizhiJiannao-Granule. Xin Zhong Yi 45:56-58.

    Yang P, Dong K, Zeng W (2005) Influences of traditional medicine Yizhijiannao keli on behavior of SAMP8. Zhongguo Xingwei Yixue Kexue 14:601-602.

    Yang P, Dong K, Zeng W (2006) Effect of yizhi jiannao granule on the behavior and neuron apoptosis in SAMP/8 mice. Zhongnan Daxue Xuebao: Yixue Ban 31:56-59.

    Zhang T, Zhang Z, Dong K (2012) Yizhijiannao Granule and a combination of its effective monomers,icariin and Panax notoginseng saponins,inhibit early PC12 cell apoptosis induced by beta-amyloid(25-35). Neural Regen Res 7:1845-1850.

    Copyedited by Diwakarla S, Pack M, Wang J, Qiu Y, Li CH, Song LP, Zhao M

    10.4103/1673-5374.137575

    Guangcheng Li, Ph.D., Department of Traditional Chinese Medicine, Third Xiangya Hospital of Central South

    University, Changsha 410013, Hunan Province, China, yellingu@163.com.

    http://www.nrronline.org/

    Accepted: 2014-05-20

    成年人午夜在线观看视频| 90打野战视频偷拍视频| 咕卡用的链子| 一进一出抽搐gif免费好疼 | 最新美女视频免费是黄的| av天堂久久9| 久久久久久久久免费视频了| 大码成人一级视频| 精品国产乱子伦一区二区三区| 亚洲第一欧美日韩一区二区三区| 国产区一区二久久| av网站在线播放免费| 校园春色视频在线观看| 可以免费在线观看a视频的电影网站| 一级片'在线观看视频| 亚洲成人手机| 国产xxxxx性猛交| 欧美午夜高清在线| 成人免费观看视频高清| 18禁美女被吸乳视频| 亚洲国产精品一区二区三区在线| 亚洲aⅴ乱码一区二区在线播放 | 久久久久久久国产电影| 久热这里只有精品99| 免费高清在线观看日韩| 亚洲人成电影观看| 在线观看日韩欧美| 国产单亲对白刺激| 亚洲中文日韩欧美视频| 精品久久久精品久久久| 超碰成人久久| 两性午夜刺激爽爽歪歪视频在线观看 | 热re99久久精品国产66热6| 国产免费av片在线观看野外av| 亚洲一码二码三码区别大吗| 亚洲精品国产一区二区精华液| 亚洲自偷自拍图片 自拍| av天堂在线播放| 成人亚洲精品一区在线观看| 麻豆国产av国片精品| 亚洲情色 制服丝袜| 侵犯人妻中文字幕一二三四区| av在线播放免费不卡| 亚洲av第一区精品v没综合| 国产区一区二久久| 欧美国产精品va在线观看不卡| 国产亚洲精品第一综合不卡| 99精国产麻豆久久婷婷| 国产麻豆69| 成人精品一区二区免费| 亚洲少妇的诱惑av| 国内毛片毛片毛片毛片毛片| 久久草成人影院| 午夜福利影视在线免费观看| 国产在线一区二区三区精| 在线免费观看的www视频| 久久天躁狠狠躁夜夜2o2o| 欧美中文综合在线视频| 又紧又爽又黄一区二区| 国产一卡二卡三卡精品| 午夜精品在线福利| 啦啦啦视频在线资源免费观看| 一进一出抽搐gif免费好疼 | 夜夜夜夜夜久久久久| 精品国产国语对白av| 女人高潮潮喷娇喘18禁视频| 日本a在线网址| 免费不卡黄色视频| 超碰成人久久| 成年动漫av网址| 交换朋友夫妻互换小说| 免费av中文字幕在线| 亚洲专区国产一区二区| 国产一卡二卡三卡精品| 69精品国产乱码久久久| 亚洲欧美一区二区三区久久| 亚洲成人免费av在线播放| 精品免费久久久久久久清纯 | 欧美黑人欧美精品刺激| 色精品久久人妻99蜜桃| 久久久久久久久免费视频了| 男人舔女人的私密视频| 叶爱在线成人免费视频播放| 成人三级做爰电影| www日本在线高清视频| 99re在线观看精品视频| 国产精品久久视频播放| 黄色a级毛片大全视频| 老汉色∧v一级毛片| 成年人免费黄色播放视频| 亚洲一卡2卡3卡4卡5卡精品中文| 91精品国产国语对白视频| 中文字幕制服av| 一个人免费在线观看的高清视频| 18禁裸乳无遮挡动漫免费视频| 国产精品久久久久成人av| 巨乳人妻的诱惑在线观看| 精品国产一区二区三区久久久樱花| 成人国语在线视频| av免费在线观看网站| 国产精品久久久人人做人人爽| 色老头精品视频在线观看| 国产真人三级小视频在线观看| cao死你这个sao货| 成人影院久久| ponron亚洲| 老司机影院毛片| 久久久久视频综合| 黑人巨大精品欧美一区二区mp4| 欧美激情 高清一区二区三区| 久久午夜亚洲精品久久| 精品卡一卡二卡四卡免费| 无遮挡黄片免费观看| 18禁美女被吸乳视频| 欧洲精品卡2卡3卡4卡5卡区| 天堂俺去俺来也www色官网| 亚洲av成人av| 十分钟在线观看高清视频www| 日日摸夜夜添夜夜添小说| 国产精品综合久久久久久久免费 | 亚洲专区中文字幕在线| 免费观看人在逋| 欧美日韩亚洲国产一区二区在线观看 | 每晚都被弄得嗷嗷叫到高潮| 露出奶头的视频| 狂野欧美激情性xxxx| 免费日韩欧美在线观看| 国产免费av片在线观看野外av| 视频在线观看一区二区三区| av片东京热男人的天堂| 亚洲色图av天堂| 欧美黄色片欧美黄色片| 久久久精品国产亚洲av高清涩受| 老熟妇乱子伦视频在线观看| 国产欧美日韩精品亚洲av| 日本wwww免费看| 无限看片的www在线观看| 精品视频人人做人人爽| 波多野结衣一区麻豆| 正在播放国产对白刺激| 成年人午夜在线观看视频| 日韩 欧美 亚洲 中文字幕| 久久久久久久午夜电影 | 免费在线观看日本一区| 精品亚洲成a人片在线观看| 男女下面插进去视频免费观看| av天堂久久9| 国产欧美日韩一区二区三区在线| 男女免费视频国产| 人人妻人人添人人爽欧美一区卜| 亚洲av成人不卡在线观看播放网| 一夜夜www| 中文字幕最新亚洲高清| 日韩制服丝袜自拍偷拍| 亚洲aⅴ乱码一区二区在线播放 | 亚洲伊人色综图| 黄频高清免费视频| 成人18禁高潮啪啪吃奶动态图| 亚洲全国av大片| 国内毛片毛片毛片毛片毛片| 色尼玛亚洲综合影院| 黄色 视频免费看| 精品国产一区二区三区久久久樱花| 国产激情久久老熟女| 中文亚洲av片在线观看爽 | 人人澡人人妻人| 高清av免费在线| 久久99一区二区三区| 99热网站在线观看| 高潮久久久久久久久久久不卡| 激情视频va一区二区三区| 久久精品国产亚洲av香蕉五月 | 亚洲成人手机| 亚洲av成人不卡在线观看播放网| 欧美激情极品国产一区二区三区| 香蕉国产在线看| www.熟女人妻精品国产| 97人妻天天添夜夜摸| 国产又爽黄色视频| 午夜福利在线观看吧| 亚洲欧美激情综合另类| 国产精品电影一区二区三区 | 国产色视频综合| 国产精品免费大片| 国产在视频线精品| 亚洲 国产 在线| a级片在线免费高清观看视频| 午夜福利在线观看吧| 精品午夜福利视频在线观看一区| 午夜日韩欧美国产| 国产精品久久久久久精品古装| 精品一品国产午夜福利视频| 天堂中文最新版在线下载| 两人在一起打扑克的视频| 免费在线观看视频国产中文字幕亚洲| 日本精品一区二区三区蜜桃| 精品午夜福利视频在线观看一区| 久久久久久人人人人人| 麻豆av在线久日| 真人做人爱边吃奶动态| 少妇被粗大的猛进出69影院| 国产欧美日韩综合在线一区二区| 色老头精品视频在线观看| 捣出白浆h1v1| 欧美成人免费av一区二区三区 | 啪啪无遮挡十八禁网站| 色播在线永久视频| 国产精品二区激情视频| 欧美黄色淫秽网站| 飞空精品影院首页| 国产精品 国内视频| 真人做人爱边吃奶动态| 黄片小视频在线播放| 精品久久久久久电影网| 久久久精品区二区三区| 国产亚洲精品久久久久5区| 国产日韩一区二区三区精品不卡| 91成人精品电影| 国产成人影院久久av| 亚洲国产欧美网| 午夜福利一区二区在线看| 三级毛片av免费| 在线观看66精品国产| 色94色欧美一区二区| www.熟女人妻精品国产| 丁香欧美五月| 日本一区二区免费在线视频| 亚洲欧美精品综合一区二区三区| 成在线人永久免费视频| 人人妻人人添人人爽欧美一区卜| 午夜福利一区二区在线看| 精品久久久久久电影网| 欧美亚洲日本最大视频资源| 中国美女看黄片| 黑人操中国人逼视频| 欧美午夜高清在线| 国产亚洲欧美精品永久| 精品一区二区三区av网在线观看| 国产精品香港三级国产av潘金莲| 夜夜夜夜夜久久久久| 亚洲中文字幕日韩| 亚洲九九香蕉| 人人妻人人添人人爽欧美一区卜| 国产淫语在线视频| 国产亚洲欧美98| 国产无遮挡羞羞视频在线观看| 满18在线观看网站| 韩国av一区二区三区四区| 午夜福利,免费看| 亚洲综合色网址| ponron亚洲| 在线观看午夜福利视频| 手机成人av网站| videosex国产| 午夜免费鲁丝| 在线永久观看黄色视频| 精品久久蜜臀av无| 99国产极品粉嫩在线观看| 最新的欧美精品一区二区| 国产精品久久久久成人av| 亚洲精品粉嫩美女一区| 午夜成年电影在线免费观看| 久久国产乱子伦精品免费另类| 一区在线观看完整版| 精品福利观看| 久久人妻福利社区极品人妻图片| 91精品国产国语对白视频| 18禁国产床啪视频网站| 老司机福利观看| 91字幕亚洲| 国产精品成人在线| 一边摸一边做爽爽视频免费| 亚洲aⅴ乱码一区二区在线播放 | 日韩精品免费视频一区二区三区| 少妇的丰满在线观看| 999久久久国产精品视频| 久久天躁狠狠躁夜夜2o2o| 又黄又粗又硬又大视频| 老司机影院毛片| 人妻丰满熟妇av一区二区三区 | av片东京热男人的天堂| 99久久人妻综合| 国产精品偷伦视频观看了| 高清欧美精品videossex| 岛国毛片在线播放| 亚洲欧美日韩高清在线视频| 国产不卡av网站在线观看| 自拍欧美九色日韩亚洲蝌蚪91| 大型黄色视频在线免费观看| 欧美日韩一级在线毛片| 每晚都被弄得嗷嗷叫到高潮| 欧美日韩视频精品一区| 热re99久久精品国产66热6| 国产精品 国内视频| 日韩免费高清中文字幕av| 91精品三级在线观看| 男女高潮啪啪啪动态图| 精品一品国产午夜福利视频| 校园春色视频在线观看| 国产在线观看jvid| 操美女的视频在线观看| 亚洲av成人不卡在线观看播放网| 香蕉国产在线看| 国产乱人伦免费视频| 国产精品.久久久| 在线播放国产精品三级| 国产在线观看jvid| 久久久久视频综合| 国产精品久久久av美女十八| 成年女人毛片免费观看观看9 | 后天国语完整版免费观看| 亚洲欧美日韩另类电影网站| 亚洲精华国产精华精| 欧美日韩瑟瑟在线播放| 51午夜福利影视在线观看| 美女福利国产在线| 欧美日韩中文字幕国产精品一区二区三区 | 欧美日本中文国产一区发布| xxxhd国产人妻xxx| 国产欧美亚洲国产| 亚洲 欧美一区二区三区| 人人妻人人爽人人添夜夜欢视频| 精品久久久久久久久久免费视频 | 亚洲av电影在线进入| 久久青草综合色| 99精品欧美一区二区三区四区| 久久久久精品国产欧美久久久| 日韩 欧美 亚洲 中文字幕| 十分钟在线观看高清视频www| 久久精品国产a三级三级三级| 99精品久久久久人妻精品| 国产无遮挡羞羞视频在线观看| 这个男人来自地球电影免费观看| 亚洲欧美激情在线| 18在线观看网站| 国产精品免费视频内射| 老鸭窝网址在线观看| 热99国产精品久久久久久7| 极品教师在线免费播放| 成人永久免费在线观看视频| 少妇裸体淫交视频免费看高清 | 女性被躁到高潮视频| 老司机影院毛片| 热re99久久国产66热| 亚洲精品美女久久av网站| 亚洲在线自拍视频| 亚洲av成人av| 91精品国产国语对白视频| 国产午夜精品久久久久久| 人妻丰满熟妇av一区二区三区 | 男女高潮啪啪啪动态图| 久久精品国产清高在天天线| 9色porny在线观看| 国产精品二区激情视频| 国产激情欧美一区二区| av有码第一页| 亚洲欧美日韩高清在线视频| 国产欧美日韩精品亚洲av| 正在播放国产对白刺激| 美女高潮喷水抽搐中文字幕| 人妻丰满熟妇av一区二区三区 | 正在播放国产对白刺激| 午夜福利,免费看| 9色porny在线观看| 亚洲熟妇熟女久久| 久久国产亚洲av麻豆专区| 岛国毛片在线播放| 99久久99久久久精品蜜桃| 91成年电影在线观看| 色综合婷婷激情| 一进一出好大好爽视频| 我的亚洲天堂| 99精品欧美一区二区三区四区| 精品一区二区三区av网在线观看| 欧美激情极品国产一区二区三区| 色播在线永久视频| 免费女性裸体啪啪无遮挡网站| 国产精品久久久久成人av| 免费女性裸体啪啪无遮挡网站| 欧美人与性动交α欧美软件| cao死你这个sao货| 变态另类成人亚洲欧美熟女 | 久久精品国产亚洲av高清一级| 国产免费男女视频| 黑丝袜美女国产一区| 黑人操中国人逼视频| 国产精品av久久久久免费| 午夜91福利影院| 露出奶头的视频| netflix在线观看网站| 国产精品av久久久久免费| 亚洲自偷自拍图片 自拍| 亚洲七黄色美女视频| 热99国产精品久久久久久7| 久久99一区二区三区| 看片在线看免费视频| 在线观看免费视频网站a站| 亚洲一卡2卡3卡4卡5卡精品中文| 黄色毛片三级朝国网站| 一级a爱片免费观看的视频| 日韩大码丰满熟妇| 亚洲av片天天在线观看| 国产不卡av网站在线观看| 老司机午夜福利在线观看视频| 纯流量卡能插随身wifi吗| 一边摸一边抽搐一进一小说 | 亚洲自偷自拍图片 自拍| 99在线人妻在线中文字幕 | 午夜福利一区二区在线看| 丰满人妻熟妇乱又伦精品不卡| 宅男免费午夜| 精品少妇久久久久久888优播| 亚洲精品国产精品久久久不卡| 人人妻人人添人人爽欧美一区卜| 亚洲第一av免费看| 国产成人av教育| 亚洲熟女毛片儿| 亚洲国产欧美一区二区综合| 免费日韩欧美在线观看| 久久中文字幕人妻熟女| 精品少妇久久久久久888优播| 国产免费av片在线观看野外av| 亚洲免费av在线视频| 丝瓜视频免费看黄片| 午夜精品在线福利| 在线十欧美十亚洲十日本专区| 亚洲人成77777在线视频| 搡老乐熟女国产| 日韩 欧美 亚洲 中文字幕| 精品无人区乱码1区二区| 国产无遮挡羞羞视频在线观看| av网站免费在线观看视频| 国产成+人综合+亚洲专区| 国产三级黄色录像| 夜夜躁狠狠躁天天躁| 国产精品免费一区二区三区在线 | 婷婷精品国产亚洲av在线 | 男女床上黄色一级片免费看| 美女福利国产在线| 最近最新中文字幕大全免费视频| 欧美成人午夜精品| 99香蕉大伊视频| 十八禁高潮呻吟视频| 色综合欧美亚洲国产小说| 一区二区日韩欧美中文字幕| 50天的宝宝边吃奶边哭怎么回事| 天天添夜夜摸| 又黄又爽又免费观看的视频| 91国产中文字幕| 亚洲 国产 在线| 少妇的丰满在线观看| 人妻 亚洲 视频| 久久国产精品人妻蜜桃| 91成年电影在线观看| 国产精品乱码一区二三区的特点 | 久久99一区二区三区| 麻豆成人av在线观看| 久久久国产成人免费| 亚洲伊人色综图| 亚洲综合色网址| 亚洲成人国产一区在线观看| 啦啦啦在线免费观看视频4| 久久中文字幕一级| 亚洲欧美日韩另类电影网站| 一进一出抽搐动态| 午夜福利欧美成人| xxx96com| 99精国产麻豆久久婷婷| 国产精品免费视频内射| 久99久视频精品免费| 欧美av亚洲av综合av国产av| 久久影院123| 国产一区二区激情短视频| 国产免费男女视频| 高清毛片免费观看视频网站 | 亚洲片人在线观看| 亚洲欧美日韩高清在线视频| 久久人妻福利社区极品人妻图片| 国产精品99久久99久久久不卡| 亚洲熟女精品中文字幕| 日韩成人在线观看一区二区三区| 制服人妻中文乱码| 大香蕉久久网| 欧美日韩瑟瑟在线播放| 欧美亚洲 丝袜 人妻 在线| 久久人人97超碰香蕉20202| 成年女人毛片免费观看观看9 | 99热网站在线观看| 另类亚洲欧美激情| 国产成人免费无遮挡视频| а√天堂www在线а√下载 | 欧美日韩福利视频一区二区| 欧美精品高潮呻吟av久久| 制服人妻中文乱码| 亚洲性夜色夜夜综合| 亚洲欧美精品综合一区二区三区| 国产精品美女特级片免费视频播放器 | 无限看片的www在线观看| 一边摸一边抽搐一进一小说 | 国产精品久久电影中文字幕 | 国产成人欧美在线观看 | 国产麻豆69| 午夜视频精品福利| 波多野结衣一区麻豆| 一二三四在线观看免费中文在| 国产成人精品在线电影| 少妇猛男粗大的猛烈进出视频| 日本黄色日本黄色录像| 正在播放国产对白刺激| 欧美午夜高清在线| 制服人妻中文乱码| 宅男免费午夜| 自拍欧美九色日韩亚洲蝌蚪91| 男女午夜视频在线观看| av片东京热男人的天堂| tube8黄色片| 国产麻豆69| 成人国产一区最新在线观看| 波多野结衣一区麻豆| 亚洲中文字幕日韩| 18在线观看网站| 麻豆成人av在线观看| 免费看十八禁软件| 国产视频一区二区在线看| 男人的好看免费观看在线视频 | 一级毛片高清免费大全| 夜夜爽天天搞| 成人国产一区最新在线观看| svipshipincom国产片| 成人免费观看视频高清| 看黄色毛片网站| 国产精品av久久久久免费| 午夜两性在线视频| 久久久国产成人精品二区 | 69精品国产乱码久久久| 国产又色又爽无遮挡免费看| 啦啦啦视频在线资源免费观看| 亚洲欧美一区二区三区黑人| 精品一区二区三区视频在线观看免费 | 91国产中文字幕| 免费黄频网站在线观看国产| 欧美久久黑人一区二区| 黄频高清免费视频| 少妇粗大呻吟视频| 欧美中文综合在线视频| 91成年电影在线观看| 亚洲五月色婷婷综合| 国产麻豆69| 18禁国产床啪视频网站| 中文字幕精品免费在线观看视频| tocl精华| 丁香欧美五月| 啦啦啦在线免费观看视频4| 国产精品久久久久久人妻精品电影| 国产精品免费视频内射| 香蕉国产在线看| 亚洲 国产 在线| 精品久久久久久电影网| 午夜免费成人在线视频| 99热国产这里只有精品6| 成人av一区二区三区在线看| 别揉我奶头~嗯~啊~动态视频| 身体一侧抽搐| 午夜老司机福利片| 无遮挡黄片免费观看| www.精华液| 午夜福利,免费看| 少妇猛男粗大的猛烈进出视频| 国产一区二区激情短视频| 咕卡用的链子| 欧美在线一区亚洲| 精品少妇一区二区三区视频日本电影| 黄色片一级片一级黄色片| 国产欧美日韩一区二区三| 国产成+人综合+亚洲专区| 国产黄色免费在线视频| 天天躁夜夜躁狠狠躁躁| 中文字幕最新亚洲高清| 精品免费久久久久久久清纯 | 精品久久蜜臀av无| 亚洲中文av在线| 亚洲精品一卡2卡三卡4卡5卡| 极品人妻少妇av视频| 人人妻人人爽人人添夜夜欢视频| 又黄又爽又免费观看的视频| 国产精品秋霞免费鲁丝片| 黄片小视频在线播放| 欧美日韩瑟瑟在线播放| 国产麻豆69| 亚洲男人天堂网一区| 欧美精品啪啪一区二区三区| 操出白浆在线播放| 日韩欧美一区二区三区在线观看 | 国产精品.久久久| 国产精品亚洲一级av第二区| 国产单亲对白刺激| 五月开心婷婷网| 久久国产精品影院| 少妇的丰满在线观看| 国产精品.久久久| 建设人人有责人人尽责人人享有的| 精品久久蜜臀av无| 久久精品人人爽人人爽视色| 日本黄色视频三级网站网址 | 在线天堂中文资源库| 亚洲五月色婷婷综合| 久久草成人影院| 成人亚洲精品一区在线观看| 精品一区二区三区视频在线观看免费 | 精品无人区乱码1区二区| 高清视频免费观看一区二区| 手机成人av网站| 欧美丝袜亚洲另类 | 精品乱码久久久久久99久播| 岛国在线观看网站|