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体内多光子成像揭示了新生淀粉样斑块在数周内逐渐生长。

In vivo multiphoton imaging reveals gradual growth of newborn amyloid plaques over weeks.

机构信息

Center of Neuropathology and Prion Research, Ludwig Maximilians Universität, Feodor-Lynen-Strasse 23, Munich, Germany.

出版信息

Acta Neuropathol. 2011 Mar;121(3):327-35. doi: 10.1007/s00401-010-0787-6. Epub 2010 Dec 7.

Abstract

The kinetics of amyloid plaque formation and growth as one of the characteristic hallmarks of Alzheimer's disease (AD) are fundamental issues in AD research. Especially the question how fast amyloid plaques grow to their final size after they are born remains controversial. By long-term two-photon in vivo imaging we monitored individual methoxy-X04-stained amyloid plaques over 6 weeks in 12 and 18 months old Tg2576 mice. We found that in 12 months old mice, newly appearing amyloid plaques were initially small in volume and subsequently grew over time. The growth rate of plaques was inversely proportional to their volume; thus amyloid plaques that were already present at the first imaging time point grew over time but slower compared to new plaques. Additionally, we analyzed 18 months old Tg2576 mice in which we neither found newly appearing plaques nor a significant growth of pre-existing plaques over 6 weeks of imaging. In conclusion, newly appearing amyloid plaques are initially small in size but grow over time until plaque growth can not be detected anymore in aged mice. These results suggest that drugs that target plaque formation should be most effective early in the disease, when plaques are growing.

摘要

淀粉样斑块形成和生长的动力学是阿尔茨海默病(AD)的特征标志之一,是 AD 研究的基础问题。特别是斑块形成后达到最终大小的速度问题仍存在争议。通过长期的双光子活体成像,我们在 12 个月和 18 个月大的 Tg2576 小鼠中监测了个体 methoxy-X04 染色的淀粉样斑块超过 6 周。我们发现,在 12 个月大的小鼠中,新出现的淀粉样斑块最初体积较小,随后随时间推移而生长。斑块的生长速度与其体积成反比;因此,最初存在的斑块随时间推移而生长,但速度比新斑块慢。此外,我们分析了 18 个月大的 Tg2576 小鼠,在这些小鼠中,我们在 6 周的成像过程中既没有发现新出现的斑块,也没有发现预先存在的斑块有明显的生长。总之,新出现的淀粉样斑块最初体积较小,但会随时间推移而生长,直到在老年小鼠中无法再检测到斑块生长。这些结果表明,针对斑块形成的药物在疾病早期,即斑块生长时最有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd19/3038220/6b5105d53450/401_2010_787_Fig1_HTML.jpg

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