|Table of Contents|

Exploring the biomolecular mechanism of reduced graphene oxide in the treatment of cancer

Journal Of Modern Oncology[ISSN:1672-4992/CN:61-1415/R]

Issue:
2024 14
Page:
2647-2651
Research Field:
Publishing date:

Info

Title:
Exploring the biomolecular mechanism of reduced graphene oxide in the treatment of cancer
Author(s):
WU Jianze12WANG Dequan12CHEN Huiguang12LI Jia12WU Qingming13
1.Institute of Infection,Immunity and Tumor Microenvironment,School of Medicine,Wuhan University of Science and Technology,Hubei Wuhan 430065,China;2.Hubei Key Laboratory of Occupational Hazard Identification and Control,Hubei Wuhan 430065,China;3.Tianyou Hospital Affiliated to Wuhan University of Science and Technology,Hubei Wuhan 430064,China.
Keywords:
reduced graphene oxidenanomaterialscancer therapymolecular mechanisms
PACS:
R730.5
DOI:
10.3969/j.issn.1672-4992.2024.14.028
Abstract:
Reduced graphene oxide is a two-dimensional carbon-based nanomaterial with good biocompatibility,hydrophobicity,mechanical properties,electrical conductivity,and good surface modification for surface functionalization under biological conditions,which can assist in cancer therapy through biosensors,drug loading and targeted delivery,and also participate in various signaling networks in living organisms through their physical properties or functional group interactions with cells,and therefore has a promising future in cancer therapy.Many studies have shown that rGO is involved in the activation or inhibition of cancer-related signaling pathways and alteration of molecular signaling,and this paper summarizes and outlines the role of rGO in the complex molecular mechanisms of cancer therapy,and outlines the ways in which it can cause mitochondrial dysfunction,apoptosis,induce inflammation,lead to cellular autophagy,affect cancer metastasis,and enhance the anticancer activity of other nanomaterials to induce cancer cell death.

References:

[1] SIM HJ,LI Z,XIAO P,et al.The influence of lateral size and oxidation of graphene oxide on its chemical reduction and electrical conductivity of reduced graphene oxide [J].Molecules,2022,27(22):7840.
[2] LI Y,HUAN K,DENG D,et al.Facile synthesis of ZnMn(2)O(4)@rGO microspheres for ultrasensitive electrochemical detection of hydrogen peroxide from human breast cancer cells [J].ACS Appl Mater Interfaces,2020,12(3):3430-3437.
[3] DE MELO-DIOGO D,LIMA-SOUSA R,ALVES CG,et al.Graphene family nanomaterials for application in cancer combination photothermal therapy [J].Biomater Sci,2019,7(9):3534-3551.
[4] CAO W,HE L,CAO W,et al.Recent progress of graphene oxide as a potential vaccine carrier and adjuvant [J].Acta Biomater,2020,112:14-28.
[5] ZHI D,ZHAO Y,CUI S,et al.Conjugates of small targeting molecules to non-viral vectors for the mediation of siRNA [J].Acta Biomater,2016,36:21-41.
[6] KELES E,SONG Y,DU D,et al.Recent progress in nanomaterials for gene delivery applications [J].Biomater Sci,2016,4(9):1291-1309.
[7] GUPTA N,BHAGAT S,SINGH M,et al.Site-specific delivery of a natural chemotherapeutic agent to human lung cancer cells using biotinylated 2D rGO nanocarriers [J].Mater Sci Eng C Mater Biol Appl,2020,112:110884.
[8] CHEN Y,WU Y,SUN B,et al.Two-dimensional nanomaterials for cancer nanotheranostics [J].Small,2017,13(10):201603446-201603460.
[9] ZHANG B,PAN C,FENG C,et al.Role of mitochondrial reactive oxygen species in homeostasis regulation [J].Redox Rep,2022,27(1):45-52.
[10] CHATTERJEE N,EOM HJ,CHOI J.A systems toxicology approach to the surface functionality control of graphene-cell interactions [J].Biomaterials,2014,35(4):1109-1127.
[11] ALSAEDI IIJ,TAQI ZJ,ABDUL HUSSIEN AM,et al.Graphene nanoparticles induces apoptosis in MCF-7 cells through mitochondrial damage and NF-KB pathway [J].Materials Research Express,2019,6(9):095413.
[12] JABIR MS,TAHA AA,SAHIB UI,et al.Novel of nano delivery system for Linalool loaded on gold nanoparticles conjugated with CALNN peptide for application in drug uptake and induction of cell death on breast cancer cell line [J].Mater Sci Eng C Mater Biol Appl,2019,94:949-964.
[13] SZCZEPANIAK J,STROJNY B,CHWALIBOG ES,et al.Effects of reduced graphene oxides on apoptosis and cell cycle of glioblastoma multiforme [J].Int J Mol Sci,2018,19(12):3939.
[14] KHANDIA R,MUNJAL A.Interplay between inflammation and cancer [J].Adv Protein Chem Struct Biol,2020,119:199-245.
[15] ZINATIZADEH MR,SCHOCK B,CHALBATANI GM,et al.The nuclear factor kappa B (NF-kB) signaling in cancer development and immune diseases [J].Genes Dis,2021,8(3):287-297.
[16] KRUSE JL,OLMSTEAD R,HELLEMANN G,et al.Inflammation and depression treatment response to electroconvulsive therapy:Sex-specific role of interleukin-8 [J].Brain Behav Immun,2020,89:59-66.
[17] DI IANNI E,MLLER P,VOGEL UB,et al.Pro-inflammatory response and genotoxicity caused by clay and graphene nanomaterials in A549 and THP-1 cells [J].Mutation Research/Genetic Toxicology and Environmental Mutagenesis,2021,872:503405.
[18] CARNEIRO BA,EL-DEIRY WS.Targeting apoptosis in cancer therapy [J].Nat Rev Clin Oncol,2020,17(7):395-417.
[19] KERAMAT A,KADKHODA J,FARAHZADI R,et al.The potential of graphene oxide and reduced graphene oxide in diagnosis and treatment of cancer [J].Curr Med Chem,2022,29(26):4529-4546.
[20] SUN H,OU B,ZHAO S,et al.USP11 promotes growth and metastasis of colorectal cancer via PPP1CA-mediated activation of ERK/MAPK signaling pathway [J].EBioMedicine,2019,48:236-247.
[21] KANG Y,LIU J,WU J,et al.Graphene oxide and reduced graphene oxide induced neural pheochromocytoma-derived PC12 cell lines apoptosis and cell cycle alterations via the ERK signaling pathways [J].Int J Nanomedicine,2017,12:5501-5510.
[22] BRUSTEL J,MURAMOTO T,FUMIMOTO K,et al.Linking DNA repair and cell cycle progression through serine ADP-ribosylation of histones [J].Nat Commun,2022,13(1):185.
[23] ALI D,ALARIFI S,ALKAHTANI S,et al.Silver-doped graphene oxide nanocomposite triggers cytotoxicity and apoptosis in human hepatic normal and carcinoma cells [J].Int J Nanomedicine,2018,13:5685-5699.
[24] GUO L,HE N,ZHAO Y,et al.Autophagy modulated by inorganic nanomaterials [J].Theranostics,2020,10(7):3206-3222.
[25] ZHANG Y,ZHANG L,GAO J,et al.Pro-death or pro-survival:Contrasting paradigms on nanomaterial-induced autophagy and exploitations for cancer therapy [J].Acc Chem Res,2019,52(11):3164-3176.
[26] FENG S,LIU H,DONG X,et al.Identification and validation of an autophagy-related signature for predicting survival in lower-grade glioma [J].Bioengineered,2021,12(2):9692-9708.
[27] KRETOWSKI R,CECHOWSKA-PASKO M.The reduced graphene oxide (rGO) induces apoptosis,autophagy and cell cycle arrest in breast cancer cells [J].Int J Mol Sci,2022,23(16):9285.
[28] YUAN YG,GURUNATHAN S.Combination of graphene oxide-silver nanoparticle nanocomposites and cisplatin enhances apoptosis and autophagy in human cervical cancer cells [J].Int J Nanomedicine,2017,12:6537-6558.
[29] LLOPIS TORREMOCHA C,RODRIGUEZ LAIZ G,ALCAZAR C,et al.Metastatic choriocarcinoma involving the duodenum [J].Gastroenterol Hepatol,2022,45(Suppl 1):43-44.
[30]刘小小,张中冕.小细胞肺癌脑转移治疗进展[J].现代肿瘤医学,2021,29(23):4234-4237. LIU Xiaoxiao,ZHANG Zhongmian.Progress in the treatment of brain metastasis of small cell lung cancer[J].Modern Oncology,2021,29(23):4234-4237.
[31] 李小鹏,王炜,李静,等.甲状腺未分化癌发生肺转移的危险因素分析[J].现代肿瘤医学,2020,28(12):2042-2045. LI Xiaopeng,WANG Wei,LI Jing,et al.Analysis of risk factors for lung metastasis in anaplastic thyroid carcinoma[J].Modern Oncology,2020,28(12):2042-2045.
[32] 谢环环,魏兰兰.HPV与头颈癌转移的研究进展[J].现代肿瘤医学,2020,28(13):2340-2343. XIE Huanhuan,WEI Lanlan.Progress in research on HPV and head and neck cancer metastasis[J].Modern Oncology,2020,28(13):2340-2343.
[33] KODOUS AS,ATTA MM,ABDEL-HAMID GR,et al.Anti-metastatic cancer activity of ultrasonic synthesized reduced graphene oxide/copper composites [J].Chemical Papers,2021,76(1):373-384.
[34] FARELL M,SELF A,GUZA C,et al.Lipid-functionalized graphene loaded with hMnSOD for selective inhibition of cancer cells [J].ACS Appl Mater Interfaces,2020,12(11):12407-12416.
[35] LIAO Y,WANG W,HUANG X,et al.Reduced graphene oxide triggered epithelial-mesenchymal transition in A549 cells [J].Sci Rep,2018,8(1):15188.
[36] ADIL SF,SHAIK MR,NASR FA,et al.Enhanced apoptosis by functionalized highly reduced graphene oxide and gold nanocomposites in MCF-7 breast cancer cells [J].ACS Omega,2021,6(23):15147-15155.
[37] AHAMED M,AKHTAR MJ,KHAN MAM,et al.Enhanced anticancer performance of eco-friendly-prepared Mo-ZnO/RGO nanocomposites:role of oxidative stress and apoptosis [J].ACS Omega,2022,7(8):7103-7115.
[38] AHAMED M,LATEEF R,KHAN MAM,et al.Biosynthesis,characterization,and augmented anticancer activity of ZrO(2) doped ZnO/rGO nanocomposite [J].J Funct Biomater,2023,14(1):38.
[39] YU Z,LI Q,WANG J,et al.Reactive oxygen species-related nanoparticle toxicity in the biomedical field [J].Nanoscale Res Lett,2020,15(1):115.
[40] DASH BS,JOSE G,LU YJ,et al.Functionalized reduced graphene oxide as a versatile tool for cancer therapy [J].Int J Mol Sci,2021,22(6):2989.

Memo

Memo:
National Natural Science Foundation of China(No.81573239);国家自然科学基金(编号:81573239);湖北省卫生健康委员会科研基金(编号:WJ2019M256)
Last Update: 1900-01-01