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Saturated Fatty Acids Induce Ceramide-associated Macrophage Cell Death
Published on: October 31, 2017
Induction and modulation of apoptosis in neonatal monocytes by polyunsaturated fatty acids
Brian Sweeney1, Prem Puri, Denis J Reen
1Children's Research Centre, University College Dublin, Our Lady's Hospital for Sick Children, Dublin K1H 8L1, Ireland. bsweeney@cheo.on.ca
Insights
Polyunsaturated fatty acids (PUFAs) trigger programmed cell death in neonatal monocytes, crucial for sepsis response. This occurs via a mitochondrial pathway, independent of oxidative stress, posing risks for infants on total parenteral nutrition (TPN).
Area of Science:
- Immunology
- Cell Biology
- Neonatal Medicine
Background:
- Polyunsaturated fatty acids (PUFAs) modulate immune responses and are essential in total parenteral nutrition (TPN).
- Critically ill infants on TPN have higher sepsis rates, and lipid emulsions can impair immune function.
- PUFAs have been shown to induce apoptosis in various cells.
Purpose of the Study:
- To investigate the susceptibility of neonatal monocytes to PUFA-induced apoptosis.
- To elucidate the mechanisms underlying PUFA-induced apoptosis in these cells.
Main Methods:
- Purified neonatal monocytes were treated with n-3 and n-6 PUFAs.
- Caspase activation, oxidative stress, and mitochondrial potential were measured.
- The role of mitochondrial pathways and antioxidants was assessed using cyclosporin and Trolox.
Main Results:
- Both n-3 and n-6 PUFAs induced rapid, dose-dependent monocyte cell death.
- PUFA treatment activated caspases 8, 9, and 3, increased oxidative stress, and reduced mitochondrial potential.
- Cyclosporin abolished PUFA-induced apoptosis, while Trolox did not, indicating a mitochondrial-dependent pathway.
Conclusions:
- PUFAs are potent inducers of neonatal monocyte apoptosis via a mitochondrial-dependent pathway, independent of oxidative stress.
- TPN-dependent infants may be particularly vulnerable due to their limited capacity to process PUFAs.
Abstract:
Polyunsaturated fatty acids (PUFAs), known modulators of the immune response, are the source of essential fatty acids in total parenteral nutrition-dependent patients. Critically ill infants on TPN have an increased incidence of sepsis, and lipid emulsions depress various immune functions. Recent studies have demonstrated that PUFAs induce apoptosis in various tissue cells in vitro and ex vivo. The susceptibility of neonatal monocytes, as major early effector cells in the host response to sepsis, to PUFA-mediated apoptosis and the mechanisms associated with PUFA-induced apoptosis were investigated. Both n-3 and n-6 PUFAs induced rapid, dose-dependent cell death in purified monocytes. Polyunsaturated fatty acids induced significant activation of upstream caspases 8 and 9 as well as caspase 3. The PUFA treatment resulted in a 4-fold increase in oxidative stress and a loss of monocyte mitochondrial potential compared with carrier controls (P < .05). The addition of cyclosporin, which blocks the development of mitochondrial transition pores, completely abolished the proapoptotic effects of PUFAs. Although Trolox (Sigma Aldrich) reduced PUFA-induced intracellular oxidative stress in neonatal monocytes, apoptosis was not blocked by this potent antioxidant. The data identify PUFAs as potent inducers of monocyte apoptosis, which can occur independently of the induction of oxidative stress, by using a mitochondrial dependent pathway. The TPN-dependent infant may be particularly sensitive to such PUFA effects, having a relatively poor capacity to both use and clear PUFAs.
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