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June 4, 20260 citationsOpen Access

Pulmonary neuroendocrine cell–derived exosomes regulate iron homeostasis and oxidative stress in lung neurons

ATAbhimanyu ThakurKZKui ZhangJCJonathan Chen

Key Points

  • This research aims to explore how pulmonary neuroendocrine cells influence iron regulation and oxidative stress in neurons via exosomes.
  • Generated induced pulmonary neuroendocrine cells (iPNECs) from human pluripotent stem cells.
  • Performed mechanistic analyses to assess the effects of nicotine on exosome secretion and neuronal uptake.
  • Measured levels of transferrin receptor 1, divalent metal transporter 1, and ferritin in neurons.
  • Nicotine exposure led to increased secretion of exosomes from iPNECs enriched with serotransferrin.
  • Neurons taking up these exosomes showed higher levels of transferrin receptor 1 and ferritin accumulation, which was linked to oxidative stress.
  • Inhibition of transferrin receptor 1 alleviated oxidative stress and ATP depletion in neurons.

Abstract

Nicotine, the principal addictive component of cigarettes, is linked to cognitive decline and neurodegenerative alterations, likely through oxidative stress and impaired iron regulation in neurons. Yet, underlying molecular pathways remain unclear. This study examined the role of pulmonary neuroendocrine cells (PNECs) in smoke-induced neural changes. Using human pluripotent stem cells, we generated induced PNECs (iPNECs) to overcome culture limitations and performed mechanistic analyses. We found that nicotine exposure stimulates iPNECs to secrete exosomes enriched with serotransferrin, an iron-binding glycoprotein. Neurons internalizing these exosomes displayed elevated levels of transferrin receptor 1 (TFR1), divalent metal transporter 1, and duodenal cytochrome b, associated with ferritin accumulation, oxidative stress, and adenosine triphosphate depletion. Inhibition of TFR1 alleviated these effects. Furthermore, nicotine-triggered exosomes increased α-synuclein expression in neurons in a manner consistent with stress- and vulnerability-associated signatures observed in human lungs and nicotine-exposed mice, highlighting PNEC-derived exosomal signaling that may contribute to neuronal dysfunction.

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Cite This Study

Thakur et al. (2026) studied this question.

synapsesocial.com/papers/6a2116cfd499ed480b16fbbahttps://doi.org/10.6082/s96w9-nyx83
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