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Amniotic membrane induces apoptosis of interferon-gamma activated macrophages in vitro
Wei Li1, Hua He, Tetsuya Kawakita
1Ocular Surface Center and Tissue Tech, Inc., 7000 SW 97 Avenue, Suite 213, Miami, FL 33173, USA.
Abstract:
Amniotic membrane (AM) used as a temporary or permanent graft for ocular surface reconstruction has a potent anti-inflammatory effect. We would like to investigate the mechanism whereby AM induces macrophage apoptosis in vitro. Mouse macrophages, Raw 264.7 cells, were cultured on plastic, type I collagen, corneal stromal slice or AM stromal matrix in serum-free medium with or without interferon-gamma (IFN-gamma). Cells were stained by LIVE/DEAD assay, Hoechst-33342, and TUNEL assay for cell death and apoptosis. Cell lysates and conditioned media were analysed by Cell Death Detection ELISA assay for quantitation of apoptosis. Conditioned media were also analysed by Griess assay for the nitrite concentration and ELISA assay for tumour necrosis factor alpha (TNF-alpha) concentration. Lysates of cells were subjected to Western blot analyses of IKK-alpha, IKK-beta, p65 (RelA) subunit of nuclear factor kappaB (NF-kappaB), total Akt, phospho-Akt (Ser473), and phospho-FKHR (Thr24)/phosphor-FKHRL1 (Thr32). At 48hr after cultivation, cells showed a low level of apoptosis when cultured on plastic, type I collagen and corneal stromal slice with or without IFN-gamma and on AM without IFN-gamma. Nevertheless, cells showed a significant increase of apoptosis when cultured on AM with IFN-gamma activation, and this phenomenon became apparent only after 48 hr. IFN-gamma-activated macrophages on plastic continuously produced nitric oxide (NO) and TNF-alpha during 72 hr culturing. In contrast, there was no NO and TNF-alpha production after 48 hr culture on AM. NO inhibitors, L-NMMA and L-NIL, attenuated NO production of IFN-gamma-activated macrophages on AM, while apoptosis was not decreased accordingly. Expression of IKK-alpha, IKK-beta, p65 (RelA) subunit of NF-kappaB total Akt, phosopho-Akt (Ser473), and phospho-FKHR (Thr24)/FKHRL1 (Thr32) was all down-regulated in IFN-gamma-activated macrophages cultured on AM. In conclusion, AM stromal matrix induces apoptosis of IFN-gamma activated, but not non-activated macrophages, not through the generation of NO, but instead by down-regulating anti-apoptotic NF-kappaB and Akt-FKHR signalling pathways.
Insights
Amniotic membrane (AM) induces apoptosis in activated macrophages by down-regulating key signaling pathways, not through nitric oxide production. This finding offers insights into AM
Area of Science:
- Ophthalmology
- Immunology
- Cell Biology
Background:
- Amniotic membrane (AM) possesses potent anti-inflammatory properties, making it valuable for ocular surface reconstruction.
- The precise mechanisms by which AM influences immune cells, particularly macrophages, require further elucidation.
Purpose of the Study:
- To investigate the in vitro mechanism by which amniotic membrane (AM) induces macrophage apoptosis.
- To determine the role of interferon-gamma (IFN-gamma) and nitric oxide (NO) in AM-mediated macrophage apoptosis.
Main Methods:
- Mouse macrophages (Raw 264.7 cells) were cultured on various substrates including AM stromal matrix with or without IFN-gamma.
- Cell death and apoptosis were assessed using LIVE/DEAD, Hoechst-33342, and TUNEL assays.
- Nitrite, tumor necrosis factor alpha (TNF-alpha), and signaling pathway proteins (NF-kappaB, Akt, FKHR) were analyzed.
Main Results:
- AM induced significant macrophage apoptosis only when co-cultured with IFN-gamma, becoming apparent after 48 hours.
- IFN-gamma-activated macrophages on AM showed no nitric oxide (NO) or TNF-alpha production, unlike those on plastic.
- Culturing on AM down-regulated anti-apoptotic signaling pathways, including NF-kappaB and Akt-FKHR, in IFN-gamma-activated macrophages.
Conclusions:
- AM stromal matrix induces apoptosis in IFN-gamma-activated macrophages.
- This apoptosis induction is mediated by the down-regulation of NF-kappaB and Akt-FKHR signaling pathways.
- AM does not induce macrophage apoptosis through nitric oxide generation.
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