J. Mater. Sci. Technol. ›› 2021, Vol. 63: 81-90.DOI: 10.1016/j.jmst.2020.03.009
• Research Article • Previous Articles Next Articles
Lihuang Lia, Qiuyan Guoa, Yanxiu Liub, Mindan Lub, Jun Yangc, Yunlong Gec, Qiang Zhanga, Benqiang Sund, Xiumin Wangb,*(
), Liang-cheng Lib,*(
), Lei Rena,e,**(
)
Received:2019-11-06
Revised:2019-12-27
Accepted:2020-01-16
Published:2021-02-10
Online:2021-02-15
Contact:
Xiumin Wang,Liang-cheng Li,Lei Ren
About author:**Key Laboratory of Biomedical Engineering of Fujian Province University/Research Center of Biomedical Engineering of Xiamen, Department of Biomaterials, College of Materials, Xiamen University, Xiamen 361005,China.E-mail addresses: renlei@xmu.edu.cn (R. Lei).Lihuang Li, Qiuyan Guo, Yanxiu Liu, Mindan Lu, Jun Yang, Yunlong Ge, Qiang Zhang, Benqiang Sun, Xiumin Wang, Liang-cheng Li, Lei Ren. Targeted combination therapy for glioblastoma by co-delivery of doxorubicin, YAP-siRNA and gold nanorods[J]. J. Mater. Sci. Technol., 2021, 63: 81-90.
| Nomenclature | Feature |
|---|---|
| Ang2-Lip | liposomes with angiopep-2 |
| DOX@Lip | liposomes loaded with DOX |
| RNA@Lip | liposomes loaded with YAP-siRNA |
| D/R@Lip | liposomes loaded with DOX and YAP-siRNA |
| Lip + Au | liposomes complexed with gold nanorods |
Table 1 Nomenclature and feature of liposome formulations.
| Nomenclature | Feature |
|---|---|
| Ang2-Lip | liposomes with angiopep-2 |
| DOX@Lip | liposomes loaded with DOX |
| RNA@Lip | liposomes loaded with YAP-siRNA |
| D/R@Lip | liposomes loaded with DOX and YAP-siRNA |
| Lip + Au | liposomes complexed with gold nanorods |
Fig. 2. (A) Typical TEM images of D/R@Ang2-Lip + Au. (B) The size and zeta potential of different liposome formulations. (C) The UV-vis absorbance spectra of Lip, AuNRs, Ang2-Lip + Au, and D/R@Ang2-Lip + Au. (D) In vitro release profiles of free DOX and D/R@Ang2-Lip + Au with or without 808 nm NIR laser irradiation. (E) Agarose gel electrophoresis retardation assay for D/R@Ang2-Lip + Au with 1 % DSPE-PEG2000-Ang2. (F) Temperature change curves of D/R@Ang2-Lip + Au solutions with different concentration of AuNRs under 808 nm NIR laser irradiation (1 W/cm2, 5 min).
Fig. 4. Flow cytometry of cell uptake of (A) DOX and (B) siRNA in U87MG cells. (C) mRNA levels of YAP in U87MG cells infected with various formulations were examined via qPCR. (D) Western blotting of YAP levels in U87 MG cells infected with various formulations. Data are expressed as mean ± SD (n = 3). * p < 0.05; ** p < 0.01.
Fig. 5. (A) Relative cell viability of U87MG cells incubated with targeting liposomes formulations. (B) Quantitative analysis of siRNA distribution in various excised organs. (C) The fluorescence images treated with different formulations. (D) Body weight change of mice treated with different formulations. Data are expressed as mean ± SD (n = 3). * p < 0.05; ** p < 0.01.
Fig. 6. (A) H&E stained images of heart, liver, spleen, lung, kidney and brain collected from mice of all the experimental groups. (B) Histological images of the glioblastoma tissues using TUNEL assay. Magnification: 200 × .
| [1] |
M. Touat, A. Idbaih, M. Sanson, K.L. Ligon, Ann. Oncol. 28 (2017) 1457-1472.
DOI URL PMID |
| [2] |
B.M. Alexander, T.F. Cloughesy, J. Clin. Oncol. 35 (2017) 2402.
DOI URL PMID |
| [3] |
R.X. Zhang, H.L. Wong, H.Y. Xue, J.Y. Eoh, X.Y. Wu, J. Control. Release 240 (2016) 489-503.
DOI URL PMID |
| [4] |
D. Cheng, N. Cao, J.F. Chen, X.S. Yu, X.T. Shuai, Biomaterials 33 (2012) 1170-1179.
DOI URL |
| [5] |
J. Liu, D. Chi, S. Pan, L. Zhao, X. Wang, D. Wang, Y. Wang, Int. J. Pharm. 557 (2018) 264-272.
DOI URL PMID |
| [6] |
K.P.L. Bhat, K.L. Salazar, V. Balasubramaniyan, K. Wani, L. Heathcock, F. Hollingsworth, J.D. James, J. Gumin, K.L. Diefes, S.H. Kim, A. Turski, Y. Azodi, Y.H. Yang, T. Doucette, H. Colman, E.P. Sulman, F.F. Lang, G. Rao, S. Copray, B.D. Vaillant, K.D. Aldape, Genes Dev. 25 (2011) 2594-2609.
DOI URL PMID |
| [7] |
B.Y. Zhou, P. Flodby, J. Luo, D.R. Castillo, Y.X. Liu, F.X. Yu, A. McConnell, B. Varghese, G.L. Li, N.O. Chimge, M. Sunohara, M.N. Koss, W. Elatre, P. Conti, J.M. Liebler, C.C. Yang, C.N. Marconett, I.A. Laird-Offringa. P. Minoo, K.L. Guan, B.R. Stripp, E.D. Crandall, Z. Borok, J. Clin. Invest. 128 (2018) 970-984.
DOI URL PMID |
| [8] | A.M. Alkilany, L.B. Thompson, S.P. Boulos, P.N. Sisco, C.J. Murphy, Adv. DrugDelivery Rev. 64 (2012) 190-199. |
| [9] |
J. Kuang, W. Song, J. Yin, X. Zeng, S. Han, Y.P. Zhao, J. Tao, C.J. Liu, X.H. He, X.Z. Zhang, Adv. Funct. Mater. 28 (2018), 1800025.
DOI URL |
| [10] |
H.M. Liu, Y.D. Xie, Y.F. Zhang, Y.F. Cai, B.Y. Li, H.L. Mao, Y.G. Liu, J. Lu, L.Z. Zhang, R.T. Yu, Biomaterials 121 (2017) 130-143.
DOI URL PMID |
| [11] |
O. Amsalem, T. Nassar, S. Benhamron, P. Lazarovici, S. Benita, E. Yavin, J. Control. Release 257 (2017) 144-155.
DOI URL PMID |
| [12] |
N. Singh, A. Agrawal, A.K.L. Leung, P.A. Sharp, S.N. Bhatia, J. Am. Chem. Soc. 132 (2010) 8241.
DOI URL PMID |
| [13] |
Y.Y. Zhang, L. Zhang, Y. Hu, K. Jiang, Z.Q. Li, Y.Z. Lin, G. Wei, W.Y. Lu, J. Control. Release 289 (2018) 102-113.
DOI URL PMID |
| [14] | S. Duan, Y.J. Yang, C.L. Zhang, N.N. Zhao, F.J. Xu, Small 13 (2017), 1603133. |
| [15] |
L.D. Yu, Y. Chen, H. Lin, W.X. Du, H.G. Chen, J.L. Shi, Biomaterials 161 (2018) 292-305.
DOI URL PMID |
| [16] |
D.W. Zhu, C.Y. Hu, F. Fan, Y. Qin, C.L. Huang, Z.M. Zhang, L. Lu, H. Wang, H.F. Sun, X.G. Leng, C. Wang, D.L. Kong, L.H. Zhang, Biomaterials 206 (2019) 25-40.
DOI URL PMID |
| [17] |
R.J. Ju, L. Cheng, X. Qiu, S. Liu, X.L. Song, X.M. Peng, T. Wang, C.Q. Li, X.T. Li, J. Drug Targeting 26 (2018) 793-805.
DOI URL |
| [18] |
W.J. Li, J. Shi, C. Zhang, M. Li, L. Gan, H.B. Xu, X.L. Yang, J. Mater. Chem. B. 2 (2014) 4901-4910.
DOI URL PMID |
| [19] |
X.Y. Sun, Y. Chen, H. Zhao, G.L. Qiao, M.Y. Liu, C.L. Zhang, D.X. Cui, L.J. Ma, Drug Deliv. 25 (2018) 1718-1727.
DOI URL PMID |
| [20] |
A. Drean, L. Goldwirt, M. Verreault, M. Canney, C. Schmitt, J. Guehennec, J.Y. Delattre, A. Carpentier, A. Idbaih, Expert Rev. Neurother. 16 (2016) 1285-1300.
DOI URL PMID |
| [21] |
S. Peschillo, A. Caporlingua, F. Diana, F. Caporlingua, R. Delfini, J. Neurointerv. Surg. 8 (2016) 1078.
DOI URL PMID |
| [22] |
H.J. Byeon, L.Q. Thao, S. Lee, S.Y. Min, E.S. Lee, B.S. Shin, H.G. Choi, Y.S. Youn, J. Control. Release 225 (2016) 301-313.
URL PMID |
| [23] | F. Lu, Z.Y. Pang, J.J. Zhao, K. Jin, H.C. Li, Q. Pang, L. Zhang, Z.Q. Pang, Int. J. Nanomed. Nanosurg. 12 (2017) 2117-2127. |
| [24] |
H.T. Ruan, Z.L. Chai, Q. Shen, X.S. Chen, B.X. Su, C. Xie, C.Y. Zhan, S.Y. Yao, H. Wang, M.F. Zhang, M. Ying, W.Y. Lu, J. Control. Release 279 (2018) 306-315.
DOI URL PMID |
| [25] |
S.X. Huang, J.F. Li, L. Han, S.H. Liu, H.J. Ma, R.Q. Huang, C. Jiang, Biomaterials 32 (2011) 6832-6838.
DOI URL |
| [26] |
L.L. Israel, O. Braubach, A. Galstyan, A. Chiechi, E.S. Shatalova, Z. Grodzinski, H. Ding, K.L. Black, J.Y. Ljubimova, E. Holler, ACS Nano (2019), http://dx.doi.org/10.1021/acsnano.8b06437.
DOI URL PMID |
| [27] |
T. Tian, J. Li, C. Xie, Y.H. Sun, H.Z. Lei, X.Y. Liu, J.Y. Xia, J.Y. Shi, L.H. Wang, W.Y. Lu, C.H. Fan, ACS Appl. Mater. Interfaces 10 (2018) 3414-3420.
DOI URL PMID |
| [28] |
Z.Z. Yang, J.Q. Li, Z.Z. Wang, D.W. Dong, X.R. Qi, Biomaterials 35 (2014) 5226-5239.
DOI URL |
| [29] |
J. Zheng, X.J. Tian, Y.F. Sun, D.R. Lu, W.L. Yang, Int. J. Pharm. 450 (2013) 296-303.
DOI URL PMID |
| [30] | W. Li, Y. Huang, X.H. Tian, L.C. Li, J.B. Mu, J.J. Tong, Chin. J. Comp.Med. 27 (2017) 1-7. |
| [31] |
R.J. Luo, Y. Li, M. He, H.X. Zhang, H.B. Yuan, M. Johnson, M. Palmisano, S. Zhou, D.X. Sun, Int. J. Pharm. 519 (2017) 1-10.
DOI URL PMID |
| [32] |
A. Taruttis, N. Lozano, A. Nunes, D.A. Jasim, N. Beziere, E. Herzog, K. Kostarelos, V. Ntziachristos, Nanoscale 6 (2014) 13451-13456.
DOI URL |
| [33] |
O. Tirosh, Y. Barenholz, J. Katzhendler, A. Priev, Biophys. J. 74 (1998) 1371-1379.
DOI URL PMID |
| [34] |
M.D. Lu, N. Kang, C. Chen, L.Q. Yang, Y. Li, M.H. Hong, X.G. Luo, L. Ren, X.M. Wang, Nanotechnology 28 (2017), 445710.
DOI URL PMID |
| [35] |
A.K. Rengan, A.B. Bukhari, A. Pradhan, R. Malhotra, R. Banerjee, R. Srivastava, A. De, Nano Lett. 15 (2015) 842-848.
DOI URL PMID |
| [36] |
T.A. Balbino, G.S.C. Correa, M.T.P. Favaro, M.A.S. Toledo, A.R. Azzoni, L.G. de la Torre, Colloids Surf. A. 484 (2015) 262-270.
DOI URL |
| [37] | J. Bruun, T.B. Larsen, R.I. Jolck, R. Eliasen, R. Holm, T. Gjetting, T.L. Andresen, Int. J. Nanomed. Nanosurg. 10 (2015) 5995-6008. |
| [38] |
K. Ma, Q. Xu, S.R. Wang, W.N. Zhang, M. Liu, S.F. Liang, H.X. Zhu, N.Z. Xu, Cancer Lett. 375 (2016) 84-91.
DOI URL PMID |
| [39] |
P. Resnier, T. Montier, V. Mathieu, J.P. Benoit, C. Passirani, Biomaterials 34 (2013) 6429-6443.
DOI URL |
| [1] | Jie Liu, Li Li, Run Zhang, Zhi Ping Xu. Development of CaP nanocomposites as photothermal actuators for doxorubicin delivery to enhance breast cancer treatment [J]. J. Mater. Sci. Technol., 2021, 63(0): 73-80. |
| [2] | Xie Bei, Yi Jipeng, Peng Jian, Zhang Xing, Lei Lei, Zhao Dapeng, Lei Zhixin, Nie Hemin. Characterization of synergistic anti-tumor effects of doxorubicin and p53 via graphene oxide-polyethyleneimine nanocarriers [J]. J. Mater. Sci. Technol., 2017, 33(8): 807-814. |
| [3] | Fan Changjiang,Wang Dong-An. Novel Gelatin-based Nano-gels with Coordination-induced Drug Loading for Intracellular Delivery [J]. J. Mater. Sci. Technol., 2016, 32(9): 840-844. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
