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Updated: May 28, 2026

Isolation, Transfection, and Culture of Primary Human Monocytes
Published on: December 16, 2019
Mammalian target of rapamycin inhibition in macrophages of asymptomatic HIV+ persons reverses the decrease in
Xin Li1, Xinbing Han, Juliana Llano
1Division of Pulmonary, Critical Care, and Sleep Medicine, Department of Medicine, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, MA 02215, USA.
Abstract:
TLR-4-mediated signaling is significantly impaired in macrophages from HIV(+) persons, predominantly owing to altered MyD88-dependent pathway signaling caused in part by constitutive activation of PI3K. In this study we assessed in these macrophages if the blunted increase in TLR-4-mediated TNF-α release induced by lipid A (LA) is associated with PI3K-induced upregulation of mammalian target of rapamycin (mTOR) activity. mTOR inhibition with rapamycin enhanced TLR-4-mediated TNF-α release, but suppressed anti-inflammatory IL-10 release. Targeted gene silencing of mTOR in macrophages resulted in LA-induced TNF-α and IL-10 release patterns similar to those induced by rapamycin. Rapamycin restored MyD88/IL-1R-associated kinase interaction in a dose-dependent manner. Targeted gene silencing of MyD88 (short hairpin RNA) and mTOR (RNA interference) inhibition resulted in TLR-4-mediated 70-kDa ribosomal protein S6 kinase activation and enhanced TNF-α release, whereas IL-10 release was inhibited in both silenced and nonsilenced HIV(+) macrophages. Furthermore, mTOR inhibition augmented LA-induced TNF-α release through enhanced and prolonged phosphorylation of ERK1/2 and JNK1/2 MAPK, which was associated with time-dependent MKP-1 destabilization. Taken together, impaired TLR-4-mediated TNF-α release in HIV(+) macrophages is attributable in part to mTOR activation by constitutive PI3K expression in a MyD88-dependent signaling pathway. These changes result in MAPK phosphatase 1 stabilization, which shortens and blunts MAPK activation. mTOR inhibition may serve as a potential therapeutic target to upregulate macrophage innate immune host defense responsiveness in HIV(+) persons.
Insights
Impaired Toll-like receptor 4 (TLR-4) signaling in HIV(+) macrophages involves mammalian target of rapamycin (mTOR) activation. Inhibiting mTOR enhances TNF-α release, potentially restoring innate immune defense.
Area of Science:
- Immunology
- Molecular Biology
- Virology
Background:
- Toll-like receptor 4 (TLR-4) signaling is crucial for innate immunity but is impaired in macrophages from individuals with HIV.
- This impairment is linked to the MyD88-dependent pathway and constitutive activation of phosphoinositide 3-kinase (PI3K).
Purpose of the Study:
- To investigate the association between PI3K-induced mammalian target of rapamycin (mTOR) activity and blunted TLR-4-mediated TNF-α release in HIV(+) macrophages.
- To explore the therapeutic potential of mTOR inhibition in restoring macrophage immune function.
Main Methods:
- Macrophages from HIV(+) individuals were treated with lipid A (LA) to stimulate TLR-4.
- Intervention with rapamycin (mTOR inhibitor) or gene silencing of mTOR and MyD88 was employed.
- Analysis included TNF-α and IL-10 release, MyD88/IL-1R-associated kinase interaction, S6 kinase activation, and MAPK phosphorylation (ERK1/2, JNK1/2) and MKP-1 stability.
Main Results:
- mTOR inhibition enhanced TLR-4-mediated TNF-α release while suppressing IL-10 release.
- Gene silencing of mTOR mimicked rapamycin's effects on cytokine release.
- mTOR inhibition restored MyD88/IL-1R-associated kinase interaction and augmented TNF-α release via enhanced MAPK activation and MKP-1 destabilization.
Conclusions:
- Impaired TLR-4-mediated TNF-α release in HIV(+) macrophages is partly due to mTOR activation via PI3K in a MyD88-dependent pathway.
- This pathway leads to MAPK phosphatase 1 stabilization, reducing MAPK activation.
- mTOR inhibition presents a potential therapeutic strategy to enhance macrophage innate immune responses in HIV(+) individuals.
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