β-amyloid infusion into lateral ventricle alters behavioral thermoregulation and attenuates acquired heat tolerance in rats.

Temperature 2 巻 3 号 418-424 頁 2015 発行
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タイトル
β-amyloid infusion into lateral ventricle alters behavioral thermoregulation and attenuates acquired heat tolerance in rats.
著者
Sugimoto Naotoshi
収録物名
Temperature
2
3
開始ページ 418
終了ページ 424
収録物識別子
ISSN 2332-8940
EISSN 2332-8959
内容記述
その他
We investigated behavioral thermoregulatory function and acquired heat tolerance of β-amyloid (Aβ)-infused rats. Male Wistar rats were anesthetized and implanted in the intraperitoneal cavity with a temperature transmitter. Aβ peptide (4.9–5.5 nmol) was dissolved in a solvent of 35% acetonitrile and 0.1% trifluoroacetic acid (pH 2.0). The solvent was used as the vehicle. An osmotic pump contained 234 ± 13.9 μl of Aβ solution was subcutaneously implanted in the back and was cannulated into the left cerebral ventricle. Moreover, 0.5 µg of AlCl3 was injected into the right cerebral ventricle with a micro syringe pump (Aβ-infused rats). The solvent-infused rats were used as control rats (CN rats). After 2 weeks, rats were placed in a thermal gradient and their intra-abdominal temperature (Tab) and their ambient temperatures (Ta) selected (Ts) were measured for 3 consecutive days. In an additional study, rats were kept at a Ta of 32°C for 4 weeks to attain heat acclimation. Then, rats were subjected to a heat tolerance test, i.e. they were exposed to a Ta of 36°C for 160 min. Although there were clear day-night variations of Ts and Tab in CN rats, patterns were significantly abolished in Aβ-infused rats. Moreover, heat tolerance obtained by heat acclimation was attenuated in Aβ-infused rats. These results suggest that Aβ-infusion in the lateral ventricle modifies behavioral thermoregulation and lowers an ability to acclimate to heat in rats.
主題
β-amyloid ( その他)
behavioral thermoregulation ( その他)
heat acclimation ( その他)
hypothalamus ( その他)
rats ( その他)
言語
英語
資源タイプ 学術雑誌論文
出版者
Landes Bioscience
発行日 2015
アクセス権 メタデータのみ
関連情報
[DOI] 10.1080/23328940.2015.1044635
[PMID] 27227055