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BACE1 in the retina:a sensitive biomarker for monitoring early pathological changes in Alzheimer's disease 被引量:1

BACE1 in the retina:a sensitive biomarker for monitoring early pathological changes in Alzheimer's disease
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摘要 Because of a lack of sensitive biomarkers,the diagnosis of Alzheimer's disease(AD) cannot be made prior to symptom manifestation.Therefore,it is crucial to identify novel biomarkers for the presymptomatic diagnosis of AD.While brain lesions are a major feature of AD,retinal pathological changes also occur in patients.In this study,we investigated the temporal changes in β-site APP-cleaving enzyme 1(BACE1) expression in the retina and brain to determine whether it could serve as a suitable biomarker for early monitoring of AD.APP/PS-1 transgenic mice,3,6 and 8 months of age,were used as an experimental group,and age-matched C57/BL6 wild-type mice served as the control group.In the Morris water maze test,there were no significant differences in escape latency or in the number of crossings in the target area among mice of different ages.Compared with wild-type mice,no changes in learning or memory abilities were detected in transgenic mice at 3 months of age.However,compared with wild-type mice,the escape latency was significantly increased in transgenic mice at 6 months,starting on day 3,and at 8 months,starting on day 2,during Morris water maze training.In addition,the number of crossings of the target area was significantly decreased in transgenic mice.The learning and memory abilities of transgenic mice were further worsened at 8 months of age.Immunohistochemical staining revealed no BACE1 plaques in wild-type mice at 3,6 or 8 months or in transgenic mice at 3 months,but they were clearly found in the entorhinal cortex,hippocampus and prefrontal cortex of transgenic mice at 6 and 8 months.BACE1 expression was not detected in the retina of wild-type mice at 3 months,but weak BACE1 expression was detected in the ganglion cell layer,inner plexiform layer and outer plexiform layer at 6 and 8 months.In transgenic mice,BACE1 expression in the ganglion cell layer was increased at 3 months,and BACE1 expression in the ganglion cell layer,inner plexiform layer and outer plexiform layer was significantly increased at 6 and 8 months,compared with age-matched wild-type mice.Taken together,these results indicate that changes in BACE1 expression appear earlier in the retina than in the brain and precede behavioral deficits.Our findings suggest that abnormal expression of BACE1 in the retina is an early pathological change in APP/PS-1 transgenic mice,and that BACE1 might have potential as a biomarker for the early diagnosis of AD in humans. Because of a lack of sensitive biomarkers,the diagnosis of Alzheimer's disease(AD) cannot be made prior to symptom manifestation.Therefore,it is crucial to identify novel biomarkers for the presymptomatic diagnosis of AD.While brain lesions are a major feature of AD,retinal pathological changes also occur in patients.In this study,we investigated the temporal changes in β-site APP-cleaving enzyme 1(BACE1) expression in the retina and brain to determine whether it could serve as a suitable biomarker for early monitoring of AD.APP/PS-1 transgenic mice,3,6 and 8 months of age,were used as an experimental group,and age-matched C57/BL6 wild-type mice served as the control group.In the Morris water maze test,there were no significant differences in escape latency or in the number of crossings in the target area among mice of different ages.Compared with wild-type mice,no changes in learning or memory abilities were detected in transgenic mice at 3 months of age.However,compared with wild-type mice,the escape latency was significantly increased in transgenic mice at 6 months,starting on day 3,and at 8 months,starting on day 2,during Morris water maze training.In addition,the number of crossings of the target area was significantly decreased in transgenic mice.The learning and memory abilities of transgenic mice were further worsened at 8 months of age.Immunohistochemical staining revealed no BACE1 plaques in wild-type mice at 3,6 or 8 months or in transgenic mice at 3 months,but they were clearly found in the entorhinal cortex,hippocampus and prefrontal cortex of transgenic mice at 6 and 8 months.BACE1 expression was not detected in the retina of wild-type mice at 3 months,but weak BACE1 expression was detected in the ganglion cell layer,inner plexiform layer and outer plexiform layer at 6 and 8 months.In transgenic mice,BACE1 expression in the ganglion cell layer was increased at 3 months,and BACE1 expression in the ganglion cell layer,inner plexiform layer and outer plexiform layer was significantly increased at 6 and 8 months,compared with age-matched wild-type mice.Taken together,these results indicate that changes in BACE1 expression appear earlier in the retina than in the brain and precede behavioral deficits.Our findings suggest that abnormal expression of BACE1 in the retina is an early pathological change in APP/PS-1 transgenic mice,and that BACE1 might have potential as a biomarker for the early diagnosis of AD in humans.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第3期447-453,共7页 中国神经再生研究(英文版)
基金 supported by the National Natural Science Foundation of China(to JFH,DC,JBT),No.81371011,81400399,81471107 a grant from the Project of Innovation-driven Plan of Central South University(to DC),No.2015CXS022 a grant from the National Key Technologies Research and Development Program of China(to JFH),No.2012BAK14B03 Fundamental Research Funds of Central South University of China(to HW),No.2010QZZD022 Graduate Thesis Innovation Foundation of Central South University of China(to LL),No.2011ssxt106
关键词 nerve regeneration neurodegenerative disease Alzheimer's disease retina amyloid-β β-site amyloid precursor protein cleaving enzyme 1 APP/PS-1 transgenic mouse neural regeneration nerve regeneration neurodegenerative disease Alzheimer's disease retina amyloid-β β-site amyloid precursor protein cleaving enzyme 1 APP/PS-1 transgenic mouse neural regeneration
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  • 1Bader Lange ML, St Clair D, Markesbery WR, Studzinski CM, Murphy MP, Butterfield DA (2010) Age-related loss of phospholipid asym- metry in APP(NLh)/APP(NLh) x PS- 1 (P264L)/PS- 1(P264L) human double mutant knock-in mice: relevance to Alzheimer disease. Neu- robiol Dis 38:104-115.
  • 2Billings LM, Oddo S, Green KN, McGaugh JL, LaFerla FM (2005) In- traneuronal Abeta causes the onset of early Alzheimer's disease-relat- ed cognitive deficits in transgenic mice. Neuron 45:675-688.
  • 3Bourgeat P, Villemagne VL, Dore V, Brown B, Macaulay SL, Martins R, Masters CL, Ames D, Ellis K, Rowe CC, Salvado O, Fripp J (2015) Comparison of MR-less PiB SUVR quantification methods. Neuro- biol Aging 36 Suppl 1:S159-166.
  • 4Fletcher LC, Burke KE, Caine PL, Rinne NL, Braniff CA, Davis HR, Miles KA, Packer C (2013) Diagnosing Alzheimer's disease: are we any nearer to useful biomarker-based, non-invasive tests? GMS Health Technol Assess 9:Doc01.
  • 5Gallagher lJ, Minogue AM, Lynch MA (2013) Impaired performance of female APP/PS1 mice in the Morris water maze is coupled with in- creased Abeta accumulation and microglial activation. Neurodegener Dis 11:33-41.
  • 6Graft J, Rei D, Guan IS, Wang WY, Seo J, Hennig KM, Nieland TJ, Fass DM, Kao PF, Kahn M, Su SC, Samiei A, Joseph N, Haggarty SJ, Delal- le I, Tsai LH (2012) An epigenetic blockade of cognitive functions in the neurodegenerating brain. Nature 483:222-226.
  • 7Guo L, Duggan J, Cordeiro MF (2010) Alzheimer's disease and retinal neurodegeneration. Curt Alzheimer Res 7:3-14.
  • 8Handels RL, Aalten P, Wolfs CA, OldeRikkert M, Scheltens P, Visser PJ, Joore MA, Severens JL, Verhey FR (2012) Diagnostic and economic evaluation of new biomarkers for Alzheimer's disease: the research protocol of a prospective cohort study. BMC Neurol 12:72.
  • 9Hooijmans CR, Van der Zee CE, Dederen PJ, Brouwer KM, Reijmer YD, van Groen T, Broersen LM, Lutjohann D, Heerschap A, Kiliaan AJ (2009) DHA and cholesterol containing diets influence Alzhei- mer-like pathology, cognition and cerebral vasculature in APPswe/ PSldE9 mice. Neurobiol Dis 33:482-498.
  • 10Huang JF, Shang L, Liu P, Zhang MQ, Chen S, Chen D, Fan CL, Wang H, Xiong K (2012) Timosaponin-BII inhibits the up-regulation of BACE1 induced by ferric chloride in rat retina. BMC Complement Altern Med 12:189.

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