2,016
Views
2
CrossRef citations to date
0
Altmetric
Research Article

GLUT1 targeting and hypoxia-activating polymer-drug conjugate-based micelle for tumor chemo-thermal therapy

, , , , &
Pages 2256-2267 | Received 15 Aug 2021, Accepted 04 Oct 2021, Published online: 20 Oct 2021

References

  • Deng F, Zhou R, Lin C, et al. (2019). Tumor-secreted dickkopf2 accelerates aerobic glycolysis and promotes angiogenesis in colorectal cancer. Theranostics 9:1001–14.
  • Deng Z, Liu S. (2020). Controlled drug delivery with nanoassemblies of redox-responsive prodrug and polyprodrug amphiphiles. J Controll Rel 326:276–96.
  • Denisenko TV, Gorbunova AS, Zhivotovsky B. (2019). Mitochondrial involvement in migration, invasion and metastasis. Front Cell Dev Biol 7:355.
  • Ehlerding EB, Lee HJ, Barnhart TE, et al. (2019). noninvasive imaging and quantification of radiotherapy-induced PD-L1 upregulation with 89Zr-Df-atezolizumab. Bioconjug Chem 30:1434–41.
  • Gandhi N, Das GM. (2019). Metabolic reprogramming in breast cancer and its therapeutic implications. Cells 8:89.
  • Ghosh S, Girigoswami K, Girigoswami A. (2019). Membrane-encapsulated camouflaged nanomedicines in drug delivery. Nanomedicine 14:2067–82.
  • Gisbert-Garzaran M, Lozano D, Vallet-Regi M. (2020). Mesoporous silica nanoparticles for targeting subcellular organelles. Int J Mol Sci 21:9696.
  • Hofstetter O, Hofstetter H, Miron T, Wilchek M. (2019). The conversion of azo-quenchers to fluorophores. Anal Biochem 585:113400.
  • Lee EH, Park HR, Shin MS, et al. (2014). Antitumor metastasis activity of pectic polysaccharide purified from the peels of Korean Citrus Hallabong. Carbohydr Polym 111:72–9.
  • Lin C, Tong F, Liu R, et al. (2020). GSH-responsive SN38 dimer-loaded shape-transformable nanoparticles with iRGD for enhancing chemo-photodynamic therapy. Acta Pharm Sin B 10:2348–61.
  • Liu R, An Y, Jia W, et al. (2020a). Macrophage-mimic shape changeable nanomedicine retained in tumor for multimodal therapy of breast cancer. J Controll Rel 321:589–601.
  • Liu S, Pan X, Liu H. (2020b). Two-dimensional nanomaterials for photothermal therapy. Angew Chem Int Ed Engl 59:5890–900.
  • Ma P, Chen J, Bi X, et al. (2018). Overcoming multidrug resistance through the GLUT1-mediated and enzyme-triggered mitochondrial targeting conjugate with redox-sensitive paclitaxel release. ACS Appl Mater Interfaces 10:12351–63.
  • Ma P, Chen J, Qu H, et al. (2020). Hypoxic targeting and activating TH-302 loaded transcatheter arterial embolization microsphere. Drug Deliv 27:1412–24.
  • Scholz N, Behnke T, Resch-Genger U. (2018). Determination of the critical micelle concentration of neutral and ionic surfactants with fluorometry, conductometry, and surface tension – a method comparison. J Fluoresc 28:465–76.
  • Shen D, Shen Y, Chen Q, et al. (2020). Macrophage escape by cholesterol-polyoxyethylene sorbitol oleate micelles for pulmonary delivery. Nanomedicine 15:489–509.
  • Suchaoin W, Mahmood A, Netsomboon K, Bernkop-Schnürch A. (2017). Zeta-potential-changing nanoparticles conjugated with cell-penetrating peptides for enhanced transfection efficiency. Nanomedicine 12:963–75.
  • Tan Y, Zhu Y, Wen L, et al. (2019). Mitochondria-responsive drug release along with heat shock mediated by multifunctional glycolipid micelles for precise cancer chemo-phototherapy. Theranostics 9:691–707.
  • Vander Heiden MG, DeBerardinis RJ. (2017). Understanding the intersections between metabolism and cancer biology. Cell 168:657–69.
  • Wen Z, Mai Z, Zhu X, et al. (2020). Mesenchymal stem cell-derived exosomes ameliorate cardiomyocyte apoptosis in hypoxic conditions through microRNA144 by targeting the PTEN/AKT pathway. Stem Cell Res Ther 11:36.
  • Yamada Y, Akita H, Kogure K, et al. (2007). Mitochondrial drug delivery and mitochondrial disease therapy-an approach to liposome-based delivery targeted to mitochondria . Mitochondrion 7:63–71.
  • Yamada Y, Satrialdi, Hibino M, Sasaki D, et al. (2020). Power of mitochondrial drug delivery systems to produce innovative nanomedicines. Adv Drug Deliv Rev 154–155: 187–209.
  • Yin J, Cao H, Wang H, et al. (2020). Phospholipid membrane-decorated deep-penetrated nanocatalase relieve tumor hypoxia to enhance chemo-photodynamic therapy. Acta Pharm Sin B 10:2246–57.
  • Zhou L, Du C, Zhang R, Dong C. (2021). Stimuli-responsive dual drugs-conjugated polydopamine nanoparticles for the combination photothermal-cocktail chemotherapy. Chin Chem Lett 32:561–4.