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Lentinan mitigates therarubicin-induced myelosuppression by activating bone marrow-derived macrophages in an
Qiang Liu1, Lei Dong2, Hong Li2
1Department of Radiology, The Second Affiliated Hospital, Medical School of Xi'an Jiaotong University, Xi'an, Shaanxi 710004, P.R. China.
Abstract:
Bone marrow (BM) suppression (also known as myelosuppression) is the most common and most severe side-effect of therarubicin (THP) and thereby limits the clinical application of this anticancer agent. Lentinan (LNT), a glucan extracted from dried shiitake mushrooms (Lentinula edodes), exhibits a variety of pharmacological activities. The objectives of the present study were to determine the effect of LNT on the myelosuppression of THP-treated mice and to examine the pharmacological mechanism of these effects. In vivo experiments indicated that non-cytotoxic levels of LNT strongly increased blood myeloperoxidase (MPO) activity; improved BM structural injuries; increased the numbers of leukocytes and neutrophils in the blood and BM; elevated the blood levels of granulocyte colony-stimulating factor (G-CSF), granulocyte-macrophage colony-stimulating factor (GM-CSF) and macrophage colony-stimulating factor (M-CSF); and reduced the self-healing period in THP-treated mice. In vitro experiments indicated that LNT increased the viability of BM-derived macrophages (BMDMs) in a time- and dose-dependent manner without toxic side-effects and markedly increased the release of G-CSF, GM-CSF and M-CSF by BMDMs. Further analyses revealed that LNT activated the NF-κB and MAPK signalling pathways and promoted the nuclear import of p65 and that BAY 11-7082 (a specific inhibitor of NF-κB) suppressed the release of G-CSF, GM-CSF and M-CSF. Furthermore, we found that U0126, SB203580 and SP600125 (specific inhibitors of ERK, p38 and JNK, respectively) markedly inhibited the IKK/IκB/NF-κB-dependent release of G-CSF, GM-CSF and M-CSF. In conclusion, LNT induces the production of G-CSF, GM-CSF and M-CSF by activating the MAPK/NF-κB signalling pathway in BM cells, thereby mitigating THP-induced myelosuppression.
Insights
Lentinan (LNT), derived from shiitake mushrooms, mitigates chemotherapy-induced bone marrow suppression. It stimulates immune cell production and healing by activating specific cell signaling pathways, offering a potential therapeutic strategy.
Area of Science:
- Immunology
- Pharmacology
- Biochemistry
Background:
- Bone marrow (BM) suppression, or myelosuppression, is a severe side-effect of the anticancer drug therarubicin (THP), limiting its clinical use.
- Lentinan (LNT), a glucan from shiitake mushrooms, possesses various pharmacological activities.
- Understanding LNT's effects on THP-induced myelosuppression is crucial for developing supportive therapies.
Purpose of the Study:
- To investigate the therapeutic effect of Lentinan (LNT) on therarubicin (THP)-induced bone marrow suppression in mice.
- To elucidate the underlying pharmacological mechanisms of LNT's protective effects against myelosuppression.
Main Methods:
- In vivo studies in THP-treated mice to assess blood cell counts, myeloperoxidase activity, BM structure, and levels of colony-stimulating factors (G-CSF, GM-CSF, M-CSF).
- In vitro experiments using bone marrow-derived macrophages (BMDMs) to evaluate LNT's effect on cell viability and cytokine release.
- Analysis of signaling pathways, including NF-κB and MAPK, using specific inhibitors (BAY 11-7082, U0126, SB203580, SP600125).
Main Results:
- LNT significantly increased leukocyte and neutrophil counts, myeloperoxidase activity, and levels of G-CSF, GM-CSF, and M-CSF in THP-treated mice.
- LNT enhanced BM structural integrity and accelerated the self-healing period.
- In vitro, LNT increased BMDM viability and stimulated the release of G-CSF, GM-CSF, and M-CSF via activation of the MAPK/NF-κB signaling pathway.
Conclusions:
- Lentinan (LNT) effectively mitigates therarubicin (THP)-induced bone marrow suppression.
- LNT promotes the production of key hematopoietic growth factors by activating the MAPK/NF-κB signaling pathway in bone marrow cells.
- LNT demonstrates potential as an adjuvant therapy to reduce the toxicity of anticancer treatments.
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