Impacts of Polysaccharide of Trametes Robiniophila Murr on the Malignant Biological Behavior of Cervical Cancer Cells by Regulating the SPHK1/S1P/S1PR3 Signaling Pathway
LI Lipin, MA Suyan, AN Ruzheng
Shijiazhuang Ping'an Hospital, Hebei Shijiazhuang 050000, China
Abstract:Objective: To investigate the impacts of Huaier polysaccharide (HP) regulating the SPHK1/S1P/S1PR3 signaling pathway on the malignant biological behavior of cervical cancer cells.Methods: MTT was used to detect the viability of cervical cancer cells treated with Sophora auricula polysaccharides (0, 25, 50, 100, 200, 400μg/mL) and screen for the optimal drug concentration. The subjects were divided into control group, low, medium, and high concentration groups of Huaier polysaccharide (HP-L, HP-M, HP-H groups), and high concentration of Huaier polysaccharide+SphK1 activator K6PC-5 group (HP-H+K6PC-5 group). The cell proliferation, migration and invasion were observed; Western blot was used to detect the protein levels of SPHK1, S1P, S1PR3, Snail, N-cadherin, and E-cadherin. Results: After treatment for 24, 48 and 72h, HP treatments of 50μg/mL, 100μg/mL, 200μg/mL and 400μg/mL significantly decreased cell viability compared with 0μg/mL (P<0.05), Edu positive rate, number of invasive cells, scratch healing rate and Snail, N-cadherin, SPHK1, S1P and S1PR3 levels in HP-L, HP-M and HP-H groups were obviously lower than those in Control group (P<0.05), E-cadherin levels significantly increase (P<0.05). The Edu positive rate, number of invasive cells, scratch healing rate and Snail, N-cadherin, SPHK1, S1P and S1PR3 levels in HP-H+K6PC-5 group were obviously higher than those in HP-H group (P<0.05), E-cadherin levels significantly decrease (P<0.05). Conclusion: HP may inhibit the proliferation, invasion and migration of cervical cancer cells by inhibiting SPHK1/S1P/S1PR3 signaling pathway.
李丽品, 马素艳, 安入征. 槐耳多糖调节SPHK1/S1P/S1PR3信号通路对宫颈癌细胞恶性生物学行为的影响[J]. 河北医学, 2024, 30(3): 411-415.
LI Lipin, MA Suyan, AN Ruzheng. Impacts of Polysaccharide of Trametes Robiniophila Murr on the Malignant Biological Behavior of Cervical Cancer Cells by Regulating the SPHK1/S1P/S1PR3 Signaling Pathway. HeBei Med, 2024, 30(3): 411-415.
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