Impact of L-arginine and L-citrulline supplementation on macrophage responses to <i>Mycobacterium tuberculosis</i>.
L-アルギニンおよびL-シトルリン補充がマクロファージの結核菌応答に及ぼす影響 (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- ヒト・動物 併記
- 出版年
- 2026
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
本研究は、L-アルギニン(ARG)とL-シトルリン(CIT)の補充が、ヒトおよびマウスの初代マクロファージと細胞株における結核菌(Mtb)の細胞内生存に及ぼす影響を、未刺激およびIFNγ活性化状態で検討した。5日間の感染過程で、ARGとCITはともに細胞内Mtb量を有意に減少させ、高用量ではより早期かつ持続的な抑制が認められた。IFNγ刺激下では効果が増強され、用量差が縮小した。中間用量でのARGとCITの併用は、特にマウスマクロファージで相乗効果を示した。また、ARGまたはCITの併用はイソニアジドとリファンピシンの初期抗菌効果を向上させた。遺伝子発現解析では、TNF発現低下、IL6発現上昇、IFNγ刺激下でのNOS2上昇、ARG1抑制など、代謝および炎症関連遺伝子の再プログラミングが示された。これらの結果は、ARGとCITがマクロファージの抗菌応答を補完的に再構築し、自然免疫および薬剤増強によるMtb制御を強化することを示す。
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抄録
L-arginine (ARG) availability is a critical determinant of macrophage antimicrobial capacity, as it fuels nitric oxide production and other immune effector pathways essential for restricting Mycobacterium tuberculosis (Mtb), the causative agent of tuberculosis (TB). L-citrulline (CIT), a precursor in the ARG regeneration cycle, can replenish intracellular ARG pools when transport is limited. However, the comparative and combined effects of exogenous ARG and/or CIT on intracellular Mtb control across macrophage lineages and activation states remain insufficiently defined. This study investigated how supplementation with ARG, CIT or their combination influences Mtb survival in human and murine, primary macrophages and cell line, both in naïve and IFNγ-activated states, and evaluated whether these amino acids can enhance the activity of anti-TB drugs, isoniazid (INH) and rifampicin (RIF). Across a 5-day infection course, both ARG and CIT significantly reduced intracellular Mtb loads relative to untreated cells, with high-dose supplementation eliciting earlier and more sustained inhibition. These effects were amplified in IFNγ-stimulated macrophages, accelerating Mtb control and minimizing dose-dependent differences. Combination of ARG plus CIT at intermediate doses produced additive benefits, most notably in murine macrophages where single-agent effects were limited. Co-supplementation with ARG or CIT improved early antimicrobial effects of INH and RIF in all macrophage types, particularly under IFNγ stimulation. Gene expression analyses revealed coordinated metabolic and inflammatory reprogramming. For example, TNF expression was reduced by amino acid supplementation, while IL6 expression was increased, and NOS2 was significantly upregulated by ARG in IFNγ-stimulated cells, and ARG1 expression was broadly suppressed in these cells. These findings demonstrate that ARG and CIT reshape macrophage antimicrobial response in a complementary manner, augmenting innate and drug-enhanced control of Mtb. The results support metabolic supplementation with ARG and CIT as a promising host-directed therapeutic approach to improve macrophage-mediated restriction of Mtb infection.
MeSH
DOI 10.3389/fimmu.2026.1810985
PMID 42164505
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