Journal of Shandong University (Health Sciences) ›› 2018, Vol. 56 ›› Issue (6): 13-20.doi: 10.6040/j.issn.1671-7554.0.2018.190

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Construction and in vitro anticancer evaluation of redox-sensitive polymeric micelles based on PEO-PPO-SS-DTX conjugate

LIU Xin1,2, ZHANG Pei1, HE Wenxiu1, LUAN Yuxia1   

  1. 1. School of Pharmaceutical Sciences, Shandong University, Jinan 250012, Shandong, China;
    2. Department of Pharmacy, The Second Hospital of Shandong University, Jinan 250033, Shandong, China
  • Published:2022-09-27

Abstract: Objective To synthesize, characterize and evaluate allyl polyoxyethylene-polyethylene oxide(PEO-PPO)-SS-docetaxel(DTX)conjugate. Methods The PEO-PPO-SS-DTX conjugate was synthesized and confirmed structurally by nuclear magnetic resonance hydrogen spectrum(1H-NMR)and fourier transform infrared spectroscopy(FT-IR). Then the PEO-PPO-SS-DTX micelles were prepared and the assembly behavior of the PEO-PPO-SS-DTX conjugate in aqueous solution was studied. The average size of the micelles, critical micelle concentration(CMC), and drug loading(DL)content and hemolysis rate(HR)were measured by dynamic light scattering instrument, fluorescence, and UV spectrophotometry, respectively. The cytotoxicity experiment and cell uptake experiment were used to evaluate its in vitro anticancer efficacy. Results The PEO-PPO-SS-DTX conjugate and micelles were prepared successfully. The PEO-PPO-SS-DTX conjugate could assemble into the spherical micelles spontaneously in aqueous solution. The average size of the micelles was(159.0±4.4)nm with poly dispersity index(PDI)of 0.18±0.01. The CMC was about 5.0 μg·mL-1, drug loading(DL)content was 8.3%, and the hemolysis rate(HR)was less than 5%. The PEO-PPO- 山 东 大 学 学 报 (医 学 版)56卷6期 -刘新,等.氧化还原敏感PEO-PPO-SS-DTX聚合物胶束的构建及体外抗肿瘤评价 \=-SS-DTX micelles had excellent anti-tumor efficiency and cell uptake rate against Hep1-6 cells. Conclusion The PEO-PPO-SS-DTX conjugate has excellent properties and great potentical for clinical application.

Key words: Redox-sensitivity, PEO-PPO-SS-DTX conjugate, Polymer micelles, Antitumor evaluation

CLC Number: 

  • R944
[1] Sanson M, Napolitano M, Yaya R, et al. Second line chemotherapy with docetaxel in patients with recurrent malignant glioma: a phase II study[J]. J Neurooncol, 2000, 50(3): 245-249.
[2] Forsyth P, Cairncross G, Stewart D, et al. Phase II trial of docetaxel in patients with recurrent malignant glioma: a study of the National Cancer Institute of Canada Clinical Trials Group[J]. Invest New Drugs, 1996, 14(2): 203-206.
[3] Tong SW, Xiang B, Dong DW, et al. Enhanced antitumor efficacy and decreased toxicity by self-associated docetaxel in phospholipid-based micelles[J]. Int J Pharm, 2012, 434(1-2): 413-419.
[4] Luo Y, Ling Y, Guo W, et al. Docetaxel loaded oleic acid-coated hydroxyapatite nanoparticles enhance the docetaxel-induced apoptosis through activation of caspase-2 in androgen independent prostate cancer cells[J]. J Control Release, 2010, 147(2): 278-288.
[5] Hermann TW, Yen WC, Tooker P, et al. The retinoid X receptor agonist bexarotene(Targretin)synergistically enhances the growth inhibitory activity of cytotoxic drugs in non-small cell lung cancer cells[J]. Lung Cancer, 2005, 50(1): 9-18.
[6] Zhu Y, Zhang J, Meng F, et al. cRGD/TAT dual-ligand reversibly crosslinked micelles loaded with docetaxel penetrate deeply into tumor tissue and show high antitumor efficacy in vivo[J]. ACS Appl Mater Interfaces, 2017, 9(41): 35651-35663.
[7] Qiu M, Ouyang J, Sun H, et al. Biodegradable micelles based on poly(ethylene glycol)-b-polylipopeptide copolymer: a robust and versatile nanoplatform for anticancer drug delivery[J]. ACS Appl Mater Interfaces, 2017, 9(33): 27587-27595.
[8] Wu J, Deng C, Meng F, et al. Hyaluronic acid coated PLGA nanoparticulate docetaxel effectively targets and suppresses orthotopic human lung cancer[J]. J Control Release, 2017, 259: 76-82.
[9] Han JH, Lee JY, Suh DH, et al. Electrode-impregnable and cross-linkable poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide)triblock polymer electrolytes with high ionic conductivity and a large voltage window for flexible solid-state supercapacitors[J]. ACS Appl Mater Interfaces, 2017, 9(39): 33913-33924.
[10] Wouters MA, Fan SW, Haworth NL. Disulfides as redox switches: from molecular mechanisms to functional significance[J]. Antioxid Redox Signal, 2010, 12(1): 53-91.
[11] Betz SF. Disulfide bonds and the stability of globular proteins[J]. Protein Sci, 1993, 2(10): 1551-1558.
[12] Zhou NE, Kay CM, Hodges RS. Disulfide bond contribution to protein stability: positional effects of substitution in the hydrophobic core of the two-stranded α-helical coiled-coil[J]. Biochemistry, 1993, 32(12): 3178-3187.
[13] Kuppusamy P, Li H, Ilangovan G, et al. Noninvasive imaging of tumor redox status and its modification by tissue glutathione levels[J]. Cancer Res, 2002, 62(1): 307-312.
[14] Bulaj G. Formation of disulfide bonds in proteins and peptides[J]. Biotechnol Adv, 2005, 23(1): 87-92.
[15] Cheng R, Feng F, Meng F, et al. Glutathione-responsive nano-vehicles as a promising platform for targeted intracellular drug and gene delivery[J]. J Control Release, 2011, 152(1): 2-12.
[16] Gao C, Liu T, Dang Y, et al. pH/redox responsive core cross-linked nanoparticles from thiolated carboxymethyl chitosan for in vitro release study of methotrexate[J]. Carbohydr Polym, 2014, 111: 964-970.
[17] Zhang P, Zhang HY, He WX, et al. Disulfide-linked amphiphilic polymer-docetaxel conjugates assembled redox-sensitive micelles for efficient antitumor drug delivery[J]. Biomacromolecules, 2016, 17(5): 1621-1632.
[18] Mohr A, Talbiersky P, Korth HG, et al. A new pyrene-based fluorescent probe for the determination of critical micelle concentrations[J]. J Phys Chem B, 2007, 111(45): 12985-12992.
[19] Zhang Z, Ni J, Chen L, et al. Biodegradable and thermoreversible PCLA-PEG-PCLA hydrogel as a barrier for prevention of post-operative adhesion[J]. Biomaterials, 2011, 32(21): 4725-4736.
[20] Cheng J, Zheng YF. In vitro study on newly designed biodegradable Fe-X composites(X=W, CNT)prepared by spark plasma sintering[J]. J Biomed Mater Res B Appl Biomater, 2013, 101(4): 485-497.
[21] He Z, Wang Q, Sun Y, et al. The biocompatibility evaluation of mPEG-PLGA-PLL copolymer and different LA/GA ratio effects for biocompatibility[J]. J Biomater Sci Polym Ed, 2014, 25(9): 943-964.
[22] Mazzarino L, Loch-Neckel G, Dos Santos Bubniak L, et al. Nanoparticles made from xyloglucan-block-polycaprolactone copolymers: safety assessment for drug delivery[J]. Toxicol Sci, 2015, 147(1): 104-115.
[23] Hoskin P, Sartor O, O'Sullivan JM, et al. Efficacy and safety of radium-223 dichloride in patients with castration-resistant prostate cancer and symptomatic bone metastases, with or without previous docetaxel use: a prespecified subgroup analysis from the randomised, double-blind, phase 3 ALSYMPCA trial[J]. Lancet Oncol, 2014, 15(12): 1397-1406.
[24] Nieuweboer AJ, de Morrée ES, de Graan AJ, et al. Inter-patient variability in docetaxel pharmacokinetics: a review[J]. Cancer Treat Rev, 2015, 41(7): 605-613.
[25] Kenmotsu H, Tanigawara Y. Pharmacokinetics, dynamics and toxicity of docetaxel: why the Japanese dose differs from the Western dose[J]. Cancer Sci, 2015, 106(5): 497-504.
[26] Coors EA, Seybold H, Merk HF, et al. Polysorbate 80 in medical products and nonimmunologic anaphylactoid reactions[J]. Ann Allergy Asthma Immunol, 2005, 95(6): 593-599.
[27] Danhier F, Feron O, Préat V. To exploit the tumor microenvironment;Passive and active tumor targeting of nanocarriers for anti-cancer drug delivery[J]. J Control Release, 2010, 148(2): 135-146.
[28] Torchilin V. Multifunctional and stimuli-sensitive pharmaceutical nanocarriers[J]. Eur J Pharm Biopharm, 2009, 71(3): 431-444.
[29] Liggins RT, Burt HM. Polyether-polyester diblock copolymers for the preparation of paclitaxel loaded polymeric micelle formulations[J]. Adv Drug Deliv Rev, 2002, 54(2): 191-202.
[30] van der Veldt AA, Hendrikse NH, Smit EF, et al. Biodistribution and radiation dosimetry of 11C-labelled docetaxel in cancer patients[J]. Eur J Nucl Med Mol Imaging, 2010, 37(10): 1950-1958.
[31] Mu L, Elbayoumi TA, Torchilin VP. Mixed micelles made of poly(ethylene glycol)-phosphatidylethanolamine conjugate and d-α-tocopheryl polyethylene glycol 1000 succinate as pharmaceutical nanocarriers for camptothecin[J]. Int J Pharm, 2005, 306(1-2): 142-149.
[32] Lo CL, Huang CK, Lin KM, et al. Mixed micelles formed from graft and diblock copolymers for application in intracellular drug delivery[J]. Biomaterials, 2007, 28(6): 1225-1235.
[33] Valle JW, Armstrong A, Newman C, et al. A phase 2 study of SP1049C, doxorubicin in P-glycoprotein-targeting pluronics, in patients with advanced adenocarcinoma of the esophagus and gastroesophageal junction[J]. Invest New Drugs, 2011, 29(5): 1029-1037.
[34] Haag R, Kratz F. Polymer therapeutics: concepts and applications[J]. Angew Chem Int Ed Engl, 2006, 45(8): 1198-1215.
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