Tianjin Medical Journal ›› 2023, Vol. 51 ›› Issue (11): 1153-1157.doi: 10.11958/20230255
• Cell and Molecular Biology • Next Articles
LIU Danyang1(), WANG Lulu2, HE Jun2, JIANG Yang2, LI Yongtao2, ZHANG Xiaodong2, LI Penghui2, SHEN Lei2,△(
)
Received:
2023-02-27
Revised:
2023-06-02
Published:
2023-11-15
Online:
2023-11-07
Contact:
△E-mail:LIU Danyang, WANG Lulu, HE Jun, JIANG Yang, LI Yongtao, ZHANG Xiaodong, LI Penghui, SHEN Lei. The mechanism of breast cancer cell culture supernatant promoting migration and proliferation of human adipose mesenchymal stem cells[J]. Tianjin Medical Journal, 2023, 51(11): 1153-1157.
CLC Number:
组别 | 24 h | 48 h |
---|---|---|
对照组 | 6.57±1.05 | 20.53±0.69 |
MDA-MB-231上清液组 | 39.54±1.98a | 61.19±0.21a |
Akt抑制剂组 | 35.93±0.48 | 43.00±0.26b |
CXCR1/2抑制剂组 | 37.68±0.95 | 45.23±0.32b |
F | 318.300** | 3 240.000** |
Tab.1 Comparison of cell scratch closure area of hAdMSC between the four groups
组别 | 24 h | 48 h |
---|---|---|
对照组 | 6.57±1.05 | 20.53±0.69 |
MDA-MB-231上清液组 | 39.54±1.98a | 61.19±0.21a |
Akt抑制剂组 | 35.93±0.48 | 43.00±0.26b |
CXCR1/2抑制剂组 | 37.68±0.95 | 45.23±0.32b |
F | 318.300** | 3 240.000** |
组别 | Akt | p-Akt | mTOR | p-mTOR |
---|---|---|---|---|
对照组 | 1.11±0.06 | 0.43±0.02 | 1.06±0.09 | 0.59±0.05 |
MDA-MB-231 上清液组 | 1.12±0.01 | 1.03±0.03a | 1.10±0.04 | 0.94±0.02a |
Akt抑制剂组 | 1.02±0.05 | 0.48±0.03b | 1.03±0.02 | 0.71±0.03b |
CXCR1/2抑制剂组 | 1.09±0.01 | 0.77±0.04b | 0.95±0.03 | 0.73±0.02b |
F | 2.622 | 144.000** | 2.890 | 86.400** |
Tab.2 Comparison of the relative expression levels of Akt, p-Akt, mTOR and p-mTOR hAdMSC between the four groups
组别 | Akt | p-Akt | mTOR | p-mTOR |
---|---|---|---|---|
对照组 | 1.11±0.06 | 0.43±0.02 | 1.06±0.09 | 0.59±0.05 |
MDA-MB-231 上清液组 | 1.12±0.01 | 1.03±0.03a | 1.10±0.04 | 0.94±0.02a |
Akt抑制剂组 | 1.02±0.05 | 0.48±0.03b | 1.03±0.02 | 0.71±0.03b |
CXCR1/2抑制剂组 | 1.09±0.01 | 0.77±0.04b | 0.95±0.03 | 0.73±0.02b |
F | 2.622 | 144.000** | 2.890 | 86.400** |
[1] | CAO W, CHEN H D, YU Y W, et al. Changing profiles of cancer burden worldwide and in China: a secondary analysis of the global cancer statistics 2020[J]. Chin Med J(Engl), 2021, 134(7):783-791. doi:10.1097/CM9.0000000000001474. |
[2] | HUA Z, WHITE J, ZHOU J. Cancer stem cells in TNBC[J]. Semin Cancer Biol, 2022, 82:26-34. doi:10.1016/j.semcancer.2021.06.015. |
[3] | TU Z, KARNOUB A E. Mesenchymal stem/stromal cells in breast cancer development and management[J]. Semin Cancer Biol, 2022, 86(Pt 2):81-92. doi:10.1016/j.semcancer.2022.09.002. |
[4] | LAN T, LUO M, WEI X. Mesenchymal stem/stromal cells in cancer therapy[J]. J Hematol Oncol, 2021, 14(1):195. doi:10.1186/s13045-021-01208-w. |
[5] | CHOWDHURY R, WEBBER J P, GURNEY M, et al. Cancer exosomes trigger mesenchymal stem cell differentiation into pro-angiogenic and pro-invasive myofibroblasts[J]. Oncotarget, 2015, 6(2):715-731. doi:10.18632/oncotarget.2711. |
[6] | OZGA A J, CHOW M T, LUSTER A D. Chemokines and the immune response to cancer[J]. Immunity, 2021, 54(5):859-874. doi:10.1016/j.immuni.2021.01.012. |
[7] | ZHANG H, WANG Z, WANG F, et al. IL-6 and IL-8 are involved in JMJD2A-regulated malignancy of ovarian cancer cells[J]. Arch Biochem Biophys, 2020, 684:108334. doi:10.1016/j.abb.2020.108334. |
[8] | NIE G, CAO X, MAO Y, et al. Tumor-associated macrophages-mediated CXCL8 infiltration enhances breast cancer metastasis:suppression by danirixin[J]. Int Immunopharmacol, 2021, 95:107153. doi:10.1016/j.intimp.2020.107153. |
[9] | YANG S, WANG H, QIN C, et al. Upregulation of CXCL8 expression is associated with a poor prognosis and enhances tumor cell malignant behaviors in liver cancer[J]. Biosci Rep, 2020, 40(8):BSR20201169. doi:10.1042/BSR20201169. |
[10] | HUANG Z, YU P, TANG J. Characterization of triple-negative breast cancer MDA-MB-231 cell spheroid model[J]. Onco Targets Ther, 2020, 13:5395-5405. doi:10.2147/OTT.S249756.eCollection2020. |
[11] | 刘娜, 张晓东, 李永涛, 等. 高糖环境下P物质活化Akt通路促进间充质干细胞增殖和成血管内皮细胞分化的研究[J]. 天津医药, 2022, 50(5):461-465. |
LIU N, ZHANG X D, LI Y T, et al. An experimental study of substance P promotes the proliferation of bone marrow mesenchymal stem cells and the differentiation of vascular endothelial cells by activating Akt pathway in high glucose environment[J]. Tianjin Med J, 2022, 50(5):461-465. doi:10.11958/20212234. | |
[12] | LIU Q, LI A, TIAN Y, et al. The CXCL8-CXCR1/2 pathways in cancer[J]. Cytokine Growth Factor Rev, 2016, 31:61-71. doi:10.1016/j.cytogfr.2016.08.002. |
[13] | HOUTHUIJZEN J M, JONKERS J. Cancer-associated fibroblasts as key regulators of the breast cancer tumor microenvironment[J]. Cancer Metastasis Rev, 2018, 37(4):577-597. doi:10.1007/s10555-018-9768-3. |
[14] | MATSUSHIMA K, YANG D, OPPENHEIM J J. Interleukin-8:an evolving chemokine[J]. Cytokine, 2022, 153:155828. doi:10.1016/j.cyto.2022.155828. |
[15] | FERNANDO R I, CASTILLO M D, LITZINGER M, et al. IL-8 signaling plays a critical role in the epithelial-mesenchymal transition of human carcinoma cells[J]. Cancer Res, 2011, 71(15):5296-5306. doi:10.1158/0008-5472.CAN-11-0156. |
[16] | ALRAOUJI N N, ABOUSSEKHRA A. Tocilizumab inhibits IL-8 and the proangiogenic potential of triple negative breast cancer cells[J]. Mol Carcinog, 2021, 60(1):51-59. doi:10.1002/mc.23270. |
[17] | LIANG N, CHANG W, PENG A, et al. Dermal mesenchymal stem cells from psoriatic lesions stimulate hacat cell proliferation,differentiation, and migration via activating the PI3K/AKT signaling pathway[J]. Dermatology, 2022, 238(2):283-291. doi:10.1159/000515767. |
[18] | MOREIN D, ERLICHMAN N, BEN-BARUCH A. Beyond cell motility:the expanding roles of chemokines and their receptors in malignancy[J]. Front Immunol, 2020, 11:952. doi:10.3389/fimmu.2020.00952. |
[19] | JIN K, PANDEY N B, POPEL A S. Crosstalk between stromal components and tumor cells of TNBC via secreted factors enhances tumor growth and metastasis[J]. Oncotarget, 2017, 8(36):60210-60222. doi:10.18632/oncotarget.19417. |
[20] | COSTA R, HAN H S, GRADISHAR W J. Targeting the PI3K/AKT/mTOR pathway in triple-negative breast cancer:a review[J]. Breast Cancer Res Treat, 2018, 169(3):397-406. doi:10.1007/s10549-018-4697-y. |
[21] | DENG F, WENG Y, LI X, et al. Overexpression of IL-8 promotes cell migration via PI3K-Akt signaling pathway and EMT in triple-negative breast cancer[J]. Pathol Res Pract, 2021, 223:152824. doi:10.1016/j.prp.2020.152824. |
[22] | HABANJAR O, BINGULA R, DECOMBAT C, et al. Crosstalk of inflammatory cytokines within the breast tumor microenvironment[J]. Int J Mol Sci, 2023, 24(4):4002. doi:10.3390/ijms24044002. |
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