LIU Guangyu,WANG Qi,SU Ling.Research progress on the effect mechanism of polysaccharides against pancreatic cancer[J].ZHONGGUO YAOFANG,2023,34(01):111-116.
LIU Guangyu,WANG Qi,SU Ling.Research progress on the effect mechanism of polysaccharides against pancreatic cancer[J].ZHONGGUO YAOFANG,2023,34(01):111-116. DOI: 10.6039/j.issn.1001-0408.2023.01.22.
Research progress on the effect mechanism of polysaccharides against pancreatic cancer
Polysaccharide is a recognized immunomodulator that has been shown to have inhibitory effects on a variety of cancer cells and has the potential to be developed as an anti-cancer drug. Pancreatic cancer, one of the cancers with the highest mortality rate, is treated with long-term chemotherapeutic drugs and is prone to a variety of side effects such as immune deficiency, fatigue, and neurological lesions. The polysaccharide anti-pancreatic cancer research landscape both domestically and internationally is summarized in this publication. By regulating nuclear factor-κB, Hippo-Yes-associated protein, integrin and other signaling pathways, polysaccharide components play an anti-pancreatic cancer role by multi-target ways, such as inducing apoptosis and autophagy, inhibiting proliferation, migration and invasion of cancer cells, and regulating the cancer cell cycle.
关键词
多糖胰腺癌作用机制
Keywords
pancreatic cancereffect mechanism
references
SUNG H,FERLAY J,SIEGEL R L,et al. Global cancer statistics 2020:GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries[J]. CA Cancer J Clin,2021,71(3):209-249.
ZHAO C F,GAO F,LI Q W,et al. The distributional cha- racteristic and growing trend of pancreatic cancer in China[J]. Pancreas,2019,48(3):309-314.
MIZRAHI J D,SURANA R, VALLE J W, et al. Pancreatic cancer[J]. Lancet,2020,395(10242):2008-2020.
KHAN T,DATE A,CHAWDA H,et al. Polysaccharides as potential anticancer agents:a review of their progress[J]. Carbohyd Polym,2019,210:412-428.
BIAN Y C,ZENG H,TAO H,et al. A pectin-like polysaccharide from Polygala tenuifolia inhibits pancreatic cancer cell growth in vitro and in vivo by inducing apoptosis and suppressing autophagy[J]. Int J Biol Macromol,2020,162:107-115.
ROSENDAHL A H, SUN C, WU D Q, et al. Polysaccha- ride-K(PSK)increases p21WAF/Cip1 and promotes apoptosis in pancreatic cancer cells[J]. Pancreatology,2012,12(6):467-474.
LEE C I,WU C C,HSIEH S L,et al. Anticancer effects on human pancreatic cancer cells of triterpenoids,polysaccharides and 1,3-β-D-glucan derived from the fruiting body of Antrodia camphorata[J]. Food Funct,2014,5(12):3224-3232.
GHOSH S K,SANYAL T. Antiproliferative and apoptotic effect of ethanolic extract of Calocybe indica on PANC-1 and MIAPaCa2 cell lines of pancreatic cancer[J]. Exp Oncol,2020,42(3):178-182.
SUN H Y,LI C Y,NI Y J,et al. Ultrasonic/microwave-assisted extraction of polysaccharides from Camptotheca acuminata fruits and its antitumor activity[J]. Carbohydr Polym,2019,206:557-564.
GU D,HUANG L L, CHEN X, et al. Structural characterization of a galactan from Ophiopogon japonicus and anti-pancreatic cancer activity of its acetylated derivative[J]. Int J Biol Macromol,2018,113:907-915.
VERZELLA D,PESCATORE A,CAPECE D,et al. Life,death,and autophagy in cancer:NF-κB turns up everywhere[J]. Cell Death Dis,2020,11(3):210.
HE F,ZHANG S H,LI Y N,et al. The structure elucidation of novel arabinogalactan LRP1-S2 against pancreatic cancer cells growth in vitro and in vivo[J]. Carbohydr Polym,2021,267:118172.
XIE X,MA L M,ZHOU Y R,et al. Polysaccharide enhanced NK cell cytotoxicity against pancreatic cancer via TLR4/MAPKs/NF-κB pathway in vitro/vivo[J]. Carbohydr Polym,2019,225:115223.
DELMA C R,THIRUGNANASAMBANDAN S,SRINIVASAN G P,et al. Fucoidan from marine brown algae attenuates pancreatic cancer progression by regulating p53-NFκB crosstalk[J]. Phytochemistry,2019,167:112078.
BAI Z S,PENG Y L,YE X Y,et al. Autophagy and cancer treatment:four functional forms of autophagy and their therapeutic applications[J]. J Zhejiang Univ Sci B,2022,23(2):89-101.
OVADJE P,CHOCHKEH M,AKBARI-ASL P,et al. Selective induction of apoptosis and autophagy through treatment with dandelion root extract in human pancreatic cancer cells[J]. Pancreas,2012,41(7):1039-1047.
WU J,WANG J,SU Q,et al. Traditional Chinese medicine Astragalus polysaccharide enhanced antitumor effects of the angiogenesis inhibitor apatinib in pancreatic cancer cells on proliferation,invasiveness,and apoptosis[J]. Onco Targets Ther,2018,11:2685-2698.
XU C J,XU F. Radio sensitizing effect of aloe polysaccharide on pancreatic cancer bxpc-3 cells[J]. Pak J Pharm Sci,2016,29(4):1123-1126.
LI X Y,LIU Y,ZHANG C P,et al. Stiehopus japonieus acidic mucopolysaccharide inhibits the proliferation of pancreatic cancer SW1990 cells through Hippo-YAP pathway[J]. Oncotarget,2017,8(10):16356-16366.
ZHANG L,WANG P,QIN Y,et al. RN1,a novel galectin-3 inhibitor,inhibits pancreatic cancer cell growth in vitro and in vivo via blocking galectin-3 associated signaling pathways[J]. Oncogene,2017,36(9):1297-1308.
LIN L Y,WANG P P,DU Z Y,et al. Structural elucidation of a pectin from flowers of Lonicera japonica and its antipancreatic cancer activity[J]. Int J Biol Macromol,2016,88:130-137.
ZHANG D H,WU H X, XIA Z M, et al. Partial characterization,antioxidant and antitumor activities of three sulfated polysaccharides purified from Bullacta exarata[J]. J Funct Foods,2012,4(4):784-792.
ENGELAND K. Cell cycle regulation:p53-p21-RB signaling[J]. Cell Death Differ,2022,29(5):946-960.
ZHOU X,YANG Y D,MA P C,et al. TRIM44 is indis- pensable for glioma cell proliferation and cell cycle progression through AKT/p21/p27 signaling pathway[J]. J Neurooncol,2019,145(2):211-222.
GEISEN U,ZENTHOEFER M,PEIPP M,et al. Molecular mechanisms by which a Fucus vesiculosus extract mediates cell cycle inhibition and cell death in pancreatic cancer cells[J]. Mar Drugs,2015,13(7):4470-4491.
YAO Y L,ZHOU L S,LIAO W F,et al. HH1-1,a novel Galectin-3 inhibitor,exerts anti-pancreatic cancer activity by blocking Galectin-3/EGFR/AKT/FOXO3 signaling pathway[J]. Carbohydr Polym,2019,204:111-123.
TAO H,CHEN X,DU Z Y,et al. Corn silk crude polysaccharide exerts anti-pancreatic cancer activity by blocking the EGFR/PI3K/AKT/CREB signaling pathway[J]. Food Funct,2020,11(8):6961-6970.
MATSUSHITA Y,FURUTANI Y,MATSUOKA R,et al. Hot water extract of Agaricus blazei Murrill specifically inhibits growth and induces apoptosis in human pancreatic cancer cells[J]. BMC Complement Altern Med,2018,18(1):319.
ONISHI H,MORISAKI T, NAKAO F, et al. Protein-bound polysaccharide decreases invasiveness and proli- feration in pancreatic cancer by inhibition of hedgehog signaling and HIF-1α pathways under hypoxia[J]. Cancer Lett,2013,335(2):289-298.
ETMAN S M,ABDALLAH O Y, ELNAGGAR Y S, et al. Novel fucoidan based bioactive targeted nanoparticles from Undaria pinnatifida for treatment of pancreatic cancer[J]. Int J Biol Macromol,2020,145:390-401.
SUN H W,SHI K Q,QI K,et al. Pseudostellaria heterophylla extract polysaccharide H-1-2 suppresses pancreatic cancer by inhibiting hypoxia-induced AG2[J]. Mol Ther Oncolytics,2020,17:61-69.
WANG P P,ZHANG L,YAO J,et al. An arabinogalactan from flowers of Panax notoginseng inhibits angiogenesis by BMP2/smad/Id1 signaling[J]. Carbohydr Polym,2015,121:328-335.
SHIN S W,JUNG W,CHOI C,et al. Fucoidan-manganese dioxide nanoparticles potentiate radiation therapy by co-targeting tumor hypoxia and angiogenesis[J]. Mar Drugs,2018,16(12):510.
ZHANG S H,HE F,CHEN X,et al. Isolation and structural characterization of a pectin from Lycium ruthenicum Murr and its anti-pancreatic ductal adenocarcinoma cell activity[J]. Carbohydr Polym,2019,223:115104.