Page 39 - GPD-2-1
P. 39

Gene & Protein in Disease                          Therapeutic opportunities in hydrogen sulfide for cancer research



            110.  Cheng AC, Shen CJ, Hung CM, et al., 2019, Sulforaphane   cells. J Ovarian Res, 6(1): 41.
                decrease of SERTAD1 expression triggers G1/S arrest in      https://doi.org/10.1186/1757-2215-6-41
                breast cancer cells. J Med Food, 22(5): 444–450.
                                                               121.  Gong TT, Liu XD, Zhan ZP, et al., 2020, Sulforaphane
                https://doi.org/10.1089/jmf.2018.4195
                                                                   enhances  the cisplatin  sensitivity  through  regulating
            111.  Castro  NP,  Rangel  MC,  Merchant  AS,  et al.,  2019,   DNA repair and accumulation of intracellular cisplatin in
                Sulforaphane suppresses the growth of triple-negative   ovarian cancer cells. Exp Cell Res, 393(2): 112061.
                breast cancer stem-like cells in vitro and in vivo. Cancer      https://doi.org/10.1016/j.yexcr.2020.112061
                Prev Res (Phila), 12(3): 147–158.
                                                               122.  Hsu YC, Chang SJ, Wang MY,  et al., 2013, Growth
                https://doi.org/10.1158/1940-6207.CAPR-18-0241
                                                                   inhibition and apoptosis of neuroblastoma cells through
            112.  Choi YH, 2018, ROS-mediated activation of AMPK plays a   ROS-independent MEK/ERK activation by sulforaphane.
                critical role in sulforaphane-induced apoptosis and mitotic   Cell Biochem Biophys, 66(3): 765–774.
                arrest in AGS human gastric cancer cells.  Gen Physiol      https://doi.org/10.1007/s12013-013-9522-y
                Biophys, 37(2): 129–140.
                                                               123.  Yeh CT, Yen GC, 2005, Effect of sulforaphane on
                https://doi.org/10.4149/gpb_2017026
                                                                   metallothionein  expression  and induction  of apoptosis
            113.  Wang Y, Wu H, Dong N, et al., 2021, Sulforaphane induces   in human hepatoma HepG2 cells. Carcinogenesis, 26(12):
                S-phase arrest and apoptosis via p53-dependent manner in   2138–2148.
                gastric cancer cells. Sci Rep, 11(1): 2504.
                                                                   https://doi.org/10.1093/carcin/bgi185
                https://doi.org/10.1038/s41598-021-81815-2
                                                               124.  Saha K, Fisher ML, Adhikary G, et al., 2017, Sulforaphane
            114.  Han S, Wang Z, Liu J, et al., 2021, miR-29a-3p-dependent   suppresses PRMT5/MEP50 function in epidermal
                COL3A1 and COL5A1 expression reduction assists     squamous  cell  carcinoma  leading  to  reduced  tumor
                sulforaphane to inhibit gastric cancer progression. Biochem   formation. Carcinogenesis, 38(8): 827–836.
                Pharmacol, 188: 114539.
                                                                   https://doi.org/10.1093/carcin/bgx044
                https://doi.org/10.1016/j.bcp.2021.114539
                                                               125.  Żuryń  A, Krajewski  A, Klimaszewska-Wiśniewska A,
            115.  Zhang C, Su ZY, Khor TO,  et al., 2013, Sulforaphane   et  al., 2019, Expression of cyclin B1, D1 and K in non-
                enhances  Nrf2  expression  in  prostate  cancer  TRAMP   small cell lung cancer H1299 cells following treatment with
                C1 cells through epigenetic regulation. Biochem Pharmacol,   sulforaphane. Oncol Rep, 41(2): 1313–1323.
                85(9): 1398–1404.
                                                                   https://doi.org/10.3892/or.2018.6919
                https://doi.org/10.1016/j.bcp.2013.02.010
                                                               126.  Xie C, Zhu J, Jiang Y, et al., 2019, Sulforaphane inhibits
            116.  Vyas AR, Moura MB, Hahm ER, et al., 2016, Sulforaphane   the acquisition of tobacco smoke-induced lung cancer
                inhibits c‐myc‐mediated prostate cancer stem‐like traits.   stem cell-like properties via the IL-6/ΔNp63α/Notch Axis.
                J Cell Biochem, 117(11): 2482–2495.                Theranostics, 9(16): 4827–4840.
                https://doi.org/10.1002/jcb.25541                  https://doi.org/10.7150/thno.33812
            117.  Singh KB, Kim SH, Hahm ER, et al., 2018, Prostate   127.  Chen L, Chan LS, Lung HL,  et al., 2019, Crucifera
                cancer chemoprevention by sulforaphane in a preclinical   sulforaphane (SFN) inhibits the growth of nasopharyngeal
                mouse model is associated with inhibition of fatty acid   carcinoma through DNA methyltransferase 1 (DNMT1)/
                metabolism. Carcinogenesis, 39(6): 826–837.        Wnt inhibitory factor 1 (WIF1) axis.  Phytomedicine,
                                                                   63: 153058.
                https://doi.org/10.1093/carcin/bgy051
                                                                   https://doi.org/10.1016/j.phymed.2019.153058
            118.  Rutz J, Thaler S, Maxeiner S,  et  al., 2020, Sulforaphane
                reduces prostate cancer cell growth and proliferation  in   128.  Chu WF, Wu DM, Liu W, et al., 2009, Sulforaphane induces
                vitro by modulating the cdk-cyclin axis and expression of   G2–M arrest and apoptosis in high metastasis cell line of
                the CD44 Variants 4, 5, and 7. Int J Mol Sci, 21(22): 8724.   salivary gland  adenoid cystic  carcinoma.  Oral Oncol,
                                                                   45(11): 998–1004.
                https://doi.org/10.3390/ijms21228724
                                                                   https://doi.org/10.1016/j.oraloncology.2009.05.641
            119.  Bryant CS, Kumar S, Chamala S, et al., 2010, Sulforaphane
                induces cell cycle arrest by protecting RB-E2F-1 complex in   129.  Gründemann C, Garcia-Käufer M, Lamy E, et al., 2015,
                epithelial ovarian cancer cells. Molecular Cancer, 9(1): 1–9.  4-Methylthiobutyl isothiocyanate (Erucin) from rocket
                                                                   plant dichotomously affects the activity of human
            120.  Chang CC, Hung CM, Yang YR, et al., 2013, Sulforaphane
                induced cell cycle arrest in the G2/M phase via the   immunocompetent cells. Phytomedicine, 22(3): 369–378.
                blockade  of  cyclin  B1/CDC2  in  human  ovarian  cancer      https://doi.org/10.1016/j.phymed.2014.12.012


            Volume 2 Issue 1 (2023)                         24                     https://doi.org/10.36922/gpd.v2i1.164
   34   35   36   37   38   39   40   41   42   43   44