1,763
Views
22
CrossRef citations to date
0
Altmetric
Research Article

Lysine-mediated hydroxyethyl starch-10-hydroxy camptothecin micelles for the treatment of liver cancer

ORCID Icon, &
Pages 519-529 | Received 03 Feb 2020, Accepted 17 Mar 2020, Published online: 31 Mar 2020

References

  • Almawash SA, Mondal G, Mahato RI. (2018). Coadministration of polymeric conjugates of docetaxel and cyclopamine synergistically inhibits orthotopic pancreatic cancer growth and metastasis. Pharm Res 35:17.
  • Hafliger P, Charles RP. (2019). The L-type amino acid transporter LAT1 – an emerging target in cancer. Int J Mol Sci 20:2428.
  • Hu H, Li Y, Zhou Q, et al. (2016). Redox-sensitive hydroxyethyl starch–doxorubicin conjugate for tumor targeted drug delivery. ACS Appl Mater Interfaces 8:30833–44.
  • Li G, Zhao L. (2019). Sorafenib-loaded hydroxyethyl starch TG100-115 micelles for the treatment of liver cancer based on synergistic treatment. Drug Deliv 26:756–64.
  • Li G, Zhao M, Zhao L. (2016). Well-defined hydroxyethyl starch 10-hydroxy camptothecin super macromolecule conjugate: cytotoxicity, pharmacodynamics research, tissue distribution test and intravenous injection safety assessment. Drug Deliv 23:2860–8.
  • Li Y, Hu H, Zhou Q, et al. (2017). α-Amylase- and redox-responsive nanoparticles for tumor targeted drug delivery. ACS Appl Mater Interfaces 9:19215–30.
  • Liu Y, Li D, Guo X, et al. (2017). A pH-responsive prodrug delivery system of 10-HCPT for controlled release and tumor targeting. Int J Nanomedicine 12:2227–42.
  • Lubtow MM, Haider MS, Kirsch M, et al. (2019). Like dissolves like? A comprehensive evaluation of partial solubility parameters to predict polymer–drug compatibility in ultrahigh drug-loaded polymer micelles. Biomacromolecules 20:3041–56.
  • Lv F, Liu D, Cong H, et al. (2019). Synthesis, self-assembly and drug release behaviors of a bottlebrush polymer-HCPT prodrug for tumor chemotherapy. Colloids Surf B Biointerfaces 181:278–84.
  • Madunic IV, Madunic J, Breljak D, et al. (2018). Sodium-glucose cotransporters: new targets of cancer therapy. Arhiv za Higjigenu Reda I Toksikologiju 69:278–85.
  • Maeda H. (2017). Polymer therapeutics and the EPR effect. J Drug Target 25:781–5.
  • Mohammed F, Ke W, Mukerabigwi JF, et al. (2019). ROS-responsive polymeric nanocarriers with photoinduced exposure of cell-penetrating moieties for specific intracellular drug delivery. ACS Appl Mater Interfaces 11:31681–31692.
  • Ogawa H, Kaira K, Motegi Y, et al. (2019). Role of amino acid transporter expression as a prognostic marker in patients with surgically resected colorectal cancer. Anticancer Res 39:2535–43.
  • Paleos CM, Sideratou Z, Tsiourvas D. (2017). Drug delivery systems based on hydroxyethyl starch. Bioconjug Chem 28:1611–24.
  • Sagnella SM, Duong H, MacMillan A, et al. (2014). Dextran-based doxorubicin nanocarriers with improved tumor penetration. Biomacromolecules 15:262–75.
  • Sarika PR, James NR, Kumar PR, et al. (2015). Gum arabic–curcumin conjugate micelles with enhanced loading for curcumin delivery to hepatocarcinoma cells. Carbohydr Polym 134:167–74.
  • Shi J, Liu S, Yu Y, et al. (2019). RGD peptide-decorated micelles assembled from polymer-paclitaxel conjugates towards gastric cancer therapy. Colloids Surf B Biointerfaces 180:58–67.
  • Sztandera K, Działak P, Marcinkowska M, et al. (2019). Sugar modification enhances cytotoxic activity of PAMAM–doxorubicin conjugate in glucose-deprived MCF-7 cells – possible role of GLUT1 transporter. Pharm Res 36:140.
  • Tang Q, Ji F, Wang J, et al. (2017). Quercetin exerts synergetic anti-cancer activity with 10-hydroxy camptothecin. Eur J Pharm Sci 109:223–32.
  • Tatara T. (2018). Contrasting effects of albumin and hydroxyethyl starch solutions on physical properties of sodium hyaluronate solution. Carbohydr Polym 201:60–4.
  • Xing J, Zhang X, Wang Z, et al. (2019). Novel lipophilic SN38 prodrug forming stable liposomes for colorectal carcinoma therapy. Int J Nanomedicine 14:5201–13.
  • Zhang X, Niu S, Williams GR, et al. (2019). Dual-responsive nanoparticles based on chitosan for enhanced breast cancer therapy. Carbohydr Polym 221:84–93.
  • Zhou M, Tang M, Zhan H, et al. (2019). HPMA polymeric nanocarriers for anticancer drugs with tumor microenvironment-responsive extracellular biodegradation and intracellular drug release. J Biomed Nanotechnol 15:1688–700.
  • Zou Y, Zhou Y, Jin Y, et al. (2018). Synergistically enhanced antimetastasis effects by honokiol-loaded pH-sensitive polymer–doxorubicin conjugate micelles. ACS Appl Mater Interfaces 10:18585–600.