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j.kint.2024.05.028.pdf | 9.86 MB | Adobe PDF | 見る/開く |
タイトル: | Visualization of intracellular ATP dynamics in different nephron segments under pathophysiological conditions using the kidney slice culture system |
著者: | Yamamoto, Shigenori Yamamoto, Shinya ![]() ![]() Takahashi, Masahiro Mii, Akiko Okubo, Akihiro Toriu, Naoya Nakagawa, Shunsaku Abe, Takaaki Fukuma, Shingo Imamura, Hiromi ![]() ![]() Yamamoto, Masamichi Yanagita, Motoko ![]() ![]() ![]() |
著者名の別形: | 山本, 恵則 山本, 伸也 高橋, 昌宏 三井, 亜希子 鳥生, 直哉 中川, 俊作 阿部, 高明 福間, 真悟 今村, 博臣 山本, 正道 柳田, 素子 |
キーワード: | AKI ATP cisplatin nephropathy energy dynamics imaging mitochondria |
発行日: | Sep-2024 |
出版者: | Elsevier BV International Society of Nephrology |
誌名: | Kidney International |
巻: | 106 |
号: | 3 |
開始ページ: | 470 |
終了ページ: | 481 |
抄録: | ATP depletion plays a central role in the pathogenesis of kidney diseases. Recently, we reported spatiotemporal intracellular ATP dynamics during ischemia reperfusion (IR) using GO-ATeam2 mice systemically expressing an ATP biosensor. However, observation from the kidney surface did not allow visualization of deeper nephrons or accurate evaluation of ATP synthesis pathways. Here, we established a novel ATP imaging system using slice culture of GO-ATeam2 mouse kidneys, evaluated the ATP synthesis pathway, and analyzed intracellular ATP dynamics using an ex vivo IR-mimicking model and a cisplatin nephropathy model. Proximal tubules (PTs) were found to be strongly dependent on oxidative phosphorylation (OXPHOS) using the inhibitor oligomycin A, whereas podocytes relied on both OXPHOS and glycolysis using phloretin an active transport inhibitor of glucose. We also confirmed that an ex vivo IR-mimicking model could recapitulate ATP dynamics in vivo; ATP recovery in PTs after reoxygenation varied depending on anoxic time length, whereas ATP in distal tubules (DTs) recovered well even after long-term anoxia. After cisplatin administration, ATP levels in PTs decreased first, followed by a decrease in DTs. An organic cation transporter 2 inhibitor, cimetidine, suppressed cisplatin uptake in kidney slices, leading to better ATP recovery in PTs, but not in DTs. Finally, we confirmed that a mitochondria protection reagent (Mitochonic Acid 5) delayed the cisplatin-induced ATP decrease in PTs. Thus, our novel system may provide new insights into the energy dynamics and pathogenesis of kidney disease. |
記述: | 腎臓全領域におけるエネルギー動態の可視化 --腎臓病の病態解明や薬剤開発に役立つ新技術-- .京都大学プレスリリース. 2024-07-09. |
著作権等: | © 2024 International Society of Nephrology. Published by Elsevier Inc. This is an open access article under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International license. |
URI: | http://hdl.handle.net/2433/289722 |
DOI(出版社版): | 10.1016/j.kint.2024.05.028 |
PubMed ID: | 38996810 |
関連リンク: | https://www.kyoto-u.ac.jp/ja/research-news/2024-07-09 |
出現コレクション: | 学術雑誌掲載論文等 |

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