[1] 江飞凤, 谭晓辉, 胡鹏刚, 等.超声-微波协同提取柚子皮多糖工艺优化及单糖组成、结构和抗氧化活性分析[J].食品与发酵工业, 2021, 47(2):196-204.
JIANG F F, TAN X H, HU P G, et al.Optimization of ultrasonic-microwave extraction process of pomelo peel polysaccharide and analysis of monosaccharide composition, structure and antioxidant activity[J].Food and Fermentation Industries, 2021, 47(2):196-204.
[2] KUMAR A, JAITAK V.Natural products as multidrug resistance modulators in cancer[J].European Journal of Medicinal Chemistry, 2019, 176:268-291.
[3] 李勤, 张嫚, 孟祥珍.香菇多糖注射液结合吉非替尼对非小细胞肺癌疗效、肺功能、不良反应影响研究[J].中华中医药学刊, 2021, 39(4):163-166.
LI Q, ZHANG M, MENG X Z.Effects of lentinan injection combined with gefitinib on efficacy, lung function and side effects of non-small cell lung cancer patients[J].Chinese Archives of Traditional Chinese Medicine, 2021, 39(4):163-166.
[4] FOLEY G E, DROLET B P.Sustained propagation of sarcoma 180 in tissue culture[J].Proceedings of the Society for Experimental Biology and Medicine, 1956, 92(2):347-352.
[5] CHIHARA G, MAEDA Y, HAMURO J, et al.Inhibition of mouse sarcoma 180 by polysaccharides from Lentinus edodes (Berk.) Sing[J].Nature, 1969, 222(5194):687-688.
[6] 姜爽, 徐婧瑶, 苏鑫, 等.山慈菇多糖的免疫调节作用及对小鼠骨肉瘤细胞S180体内生长抑制作用[J].食品科学, 2018, 39(13):216-221.
JIANG S, XU J Y, SU X, et al.Effects of pseudobulbus cremastrae seu pleiones polysaccharide on the regulation of immune function and the inhibition of tumor growth in sarcoma S180 tumor-bearing mice[J].Food Science, 2018, 39(13):216-221.
[7] 季宇彬, 汲晨锋.芦笋多糖对肿瘤小鼠红细胞离子通道活性的影响[J].中国食品学报, 2014, 14(7):27-31.
JI Y B, JI C F.Effect of Asparagus polysaccharide on erythrocyte ion channel in tumor model mice[J].Journal of Chinese Institute of Food Science and Technology, 2014, 14(7):27-31.
[8] 刘燕琳, 刘海燕, 常金, 等.桑黄多糖对肉瘤S180细胞体内外的抑瘤作用[J].中国药房, 2017, 28(22):3069-3072.
LIU Y L, LIU H Y, CHANG J, et al.Antitumor effect of Phellinus Linteus polysaccharide on sarcoma S180 cells in vivo and in vitro[J].China Pharmacy, 2017, 28(22):3069-3072.
[9] 陈茜, 侯怡铃, 杨彤, 等.灰褐纹口蘑多糖对免疫细胞的调节作用[J].食用菌学报, 2021, 28(4):64-74.
CHEN X, HOU Y L, YANG T, et al.Regulative effects of Tricholoma sinoportentosum polysaccharide extract on immune cells[J].Acta Edulis Fungi, 2021, 28(4):64-74.
[10] YOU L J, GAO Q, FENG M Y, et al.Structural characterisation of polysaccharides from Tricholoma matsutake and their antioxidant and antitumour activities[J].Food Chemistry, 2013, 138(4):2242-2249.
[11] 郭华, 刁全平, 张博, 等.杨树口蘑多糖的超声波辅助提取工艺及其抗氧化活性[J].食品工业科技, 2018, 39(5):180-184.
GUO H, DIAO Q P, ZHANG B, et al.Optimization of ultrasonic-assisted extraction and antioxidant activity of polysaccharides from Tricholoma populinum[J].Science and Technology of Food Industry, 2018, 39(5):180-184.
[12] YANG H R, CHEN L H, ZENG Y J.Structure, antioxidant activity and in vitro hypoglycemic activity of a polysaccharide purified from Tricholoma matsutake[J].Foods, 2021, 10(9):2184.
[13] MEHMOOD S, ZHOU L Y, WANG X F, et al.Structural elucidation and antioxidant activity of a novel heteroglycan from Tricholoma lobayense[J].Journal of Carbohydrate Chemistry, 2019, 38(3):192-211.
[14] 张玉, 张琪琳, 王静林, 等.香菇多糖构效关系、抗肿瘤作用机制及药代动力学研究进展[J].中国医院药学杂志, 2023, 43(7):804-812.
ZHANG Y, ZHANG Q L, WANG J L, et al.Advances in structure-activity relationship, anti-tumor mechanism and pharmacokinetics of lentinan[J].Chinese Journal of Hospital Pharmacy, 2023, 43(7):804-812.
[15] HOU Y L, DING X, HOU W R, et al.Structure elucidation and antitumor activity of a new polysaccharide from Maerkang Tricholoma matsutake[J].International Journal of Biological Sciences, 2017, 13(7):935-948.
[16] ZHANG N, YANG B, MAO K M, et al.Comparison of structural characteristics and bioactivity of Tricholoma mongolicum Imai polysaccharides from five extraction methods[J].Frontiers in Nutrition, 2022, 9:962584.
[17] 杜秀菊, 张劲松, 潘迎捷.核磁共振技术在食用菌多糖结构分析中的作用[J].中国食用菌, 2010, 29(1):3-6;19.
DU X J, ZHANG J S, PAN Y J.Application of the NMR techniques in structural analysis of polysaccharide from edible fungi[J].Edible Fungi of China, 2010, 29(1):3-6;19.
[18] ALHUSSONA A J, ALMANDEL A S, ALI M M, et al.Genetic variations of the mtCOX1 gene for Iraqi patients with tetralogy of fallot[J].Current Pediatric Research, 2021, 25(10):981-986.
[19] ORONSKY B T, ORONSKY N, FANGER G R, et al.Follow the ATP:Tumor energy production:A perspective[J].Anti-Cancer Agents in Medicinal Chemistry, 2014, 14(9):1187-1198.
[20] XIE C J, CAO K, PENG D X, et al.RPLP1 is highly expressed in hepatocellular carcinoma tissues and promotes proliferation, invasion and migration of human hepatocellular carcinoma Hep3b cells[J].Experimental and Therapeutic Medicine, 2021, 22(1):752.
[21] LI J M, TSENG C W, LIN C C, et al.Upregulation of LGALS1 is associated with oral cancer metastasis[J].Therapeutic Advances in Medical Oncology, 2018, 10:1758835918794622.
[22] HUANG J, ZHENG C Q, SHAO J, et al.Overexpression of eEF1A1 regulates G1-phase progression to promote HCC proliferation through the STAT1-cyclin D1 pathway[J].Biochemical and Biophysical Research Communications, 2017, 494(3-4):542-549.
[23] 黄佩琦. 催乳素受体PRLR在胰腺导管腺癌中的作用及分子机制研究[D].上海:上海交通大学, 2020.
HUANG P Q.The role and underlying molecular mechanism of prolactin receptor PRLR in pancreatic ductal adenocarcinoma[D].Shanghai:Shanghai Jiao Tong University, 2020.
[24] LIU Y, HUANG Y, ZHU G Z.Cyclin A1 is a transcriptional target of PITX2 and overexpressed in papillary thyroid carcinoma[J].Molecular and Cellular Biochemistry, 2013, 384(1-2):221-227.
[25] LIN M X, PAN J, CHEN Q, et al.Overexpression of FOXA1 inhibits cell proliferation and EMT of human gastric cancer AGS cells[J].Gene, 2018, 642:145-151.
[26] BOLLI R, DAWN B, XUAN Y T.Role of the JAK-STAT pathway in protection against myocardial ischemia/reperfusion injury[J].Trends in Cardiovascular Medicine, 2003, 13(2):72-79.
[27] YANG Y, LUNDQVIST A.Immunomodulatory effects of IL-2 and IL-15;Implications for cancer immunotherapy[J].Cancers, 2020, 12(12):3586.
[28] LEONARD W J, WAN C K.IL-21 signaling in immunity[J].F1000Research, 2016, 5:F1000 Faculty Rev-F1000 Faculty 224.
[29] NGUYEN K G, VRABEL M R, MANTOOTH S M, et al.Localized interleukin-12 for cancer immunotherapy[J].Frontiers in Immunology, 2020, 11:575597.
[30] 刘玲, 焦鹏涛, 王萌, 等.鸡干扰素γ与白介素2对外周血中Th1细胞分化相关细胞因子的影响[J].生物工程学报, 2022, 38(9):3329-3343.
LIU L, JIAO P T, WANG M, et al.Effects of chicken interferon-γ and interleukin-2 on cytokines related to Th1 cell differentiation in peripheral blood[J].Chinese Journal of Biotechnology, 2022, 38(9):3329-3343.
[31] SU S Y, DING X, HOU Y L, et al.Structure elucidation, immunomodulatory activity, antitumor activity and its molecular mechanism of a novel polysaccharide from Boletus reticulatus Schaeff[J].Food Science and Human Wellness, 2023, 12(2):647-661.
[32] DONG M M, HOU Y L, DING X.Structure identification, antitumor activity and mechanisms of a novel polysaccharide from Ramaria flaccida (Fr.) Quél[J].Oncology Letters, 2020, 20(3):2169-2182.
[33] 鲁艳, 黄瑶, 叶姿妤, 等.转录组分析探讨揭示羊肚菌多糖ME-X抗S180肿瘤的分子机制[J].四川农业大学学报, 2022, 40(4):519-528.
LU Y, HUANG Y, YE Z Y, et al.Transcriptomes analysis revealed the molecular mechanism about the anti-S180 tumor activity of the polysaccharide ME-X from Morchella esculenta[J].Journal of Sichuan Agricultural University, 2022, 40(4):519-528.
[34] ZHANG S S, NIE S P, HUANG D F, et al.Polysaccharide from Ganoderma atrum evokes antitumor activity via Toll-like receptor 4-mediated NF-κB and mitogen-activated protein kinase signaling pathways[J].Journal of Agricultural and Food Chemistry, 2013, 61(15):3676-3682.
[35] MORRIS R, KERSHAW N J, BABON J J.The molecular details of cytokine signaling via the JAK/STAT pathway[J].Protein Science: a Publication of the Protein Society, 2018, 27(12):1984-2009.