HIF-1α is Required to Differentiate the Neonatal Macrophage Secretome from Adults
Insights
Neonatal macrophages promote tissue regeneration via hypoxia-inducible factor-1α (HIF-1α) during stress, while adult macrophages trigger inflammation. These age-dependent programs offer targets for immune response calibration.
Area of Science:
- Immunology
- Cell Biology
- Developmental Biology
Background:
- Immune responses to stress vary with age, impacting tissue repair and inflammation.
- Macrophages play a critical role in stress response, recognizing hypoxia and pathogen-associated molecular patterns (PAMPs).
- The age-specific, cell-intrinsic mechanisms of macrophage stress response are not fully understood.
Approach:
- Investigated age-defined differences in macrophage secreted proteomes using unbiased mass spectrometry.
- Exposed neonatal and adult macrophages to hypoxia and lipopolysaccharide (LPS), a prototypical PAMP.
- Analyzed age-specific secretome signatures in response to combined stress stimuli.
Key Points:
- Identified distinct age-specific secretome signatures in neonatal versus adult macrophages.
- Neonatal macrophages, dependent on hypoxia-inducible factor-1α (HIF-1α), exhibited an anti-inflammatory, regenerative phenotype.
- Adult macrophages displayed a pro-inflammatory, glycolytic phenotype associated with pathogen killing.
Conclusions:
- Uncovered fundamental, age-dependent macrophage programs regulated by HIF-1α.
- Demonstrated age-specific divergence in macrophage response to hypoxia and PAMPs.
- These findings suggest potential therapeutic targets for modulating innate immune responses during stress and inflammation.
Abstract:
The immune response to stress diverges with age, with neonatal macrophages implicated in tissue regeneration versus tissue scarring and maladaptive inflammation in adults. Integral to the macrophage stress response is the recognition of hypoxia and pathogen-associated molecular patterns (PAMPs), which are often coupled. The age-specific, cell-intrinsic nature of this stress response remains vague. To uncover age-defined divergences in macrophage crosstalk potential after exposure to hypoxia and PAMPs, we interrogated the secreted proteomes of neonatal versus adult macrophages via non-biased mass spectrometry. Through this approach, we newly identified age-specific signatures in the secretomes of neonatal versus adult macrophages in response to hypoxia and the prototypical PAMP, lipopolysaccharide (LPS). Neonatal macrophages polarized to an anti-inflammatory, regenerative phenotype protective against apoptosis and oxidative stress, dependent on hypoxia inducible transcription factor-1α ( HIF-1α). In contrast, adult macrophages adopted a pro-inflammatory, glycolytic phenotypic signature consistent with pathogen killing. Taken together, these data uncover fundamental age and HIF-1α dependent macrophage programs that may be targeted to calibrate the innate immune response during stress and inflammation.
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