Optimizing the Design of Blood-Brain Barrier-Penetrating Polymer-Lipid-Hybrid Nanoparticles for Delivering Anticancer Drugs to Glioblastoma

被引:16
|
作者
Ahmed, Taksim [1 ]
Liu, Fuh-Ching Franky [1 ]
He, Chungsheng [1 ]
Abbasi, Azhar Z. [1 ]
Cai, Ping [1 ]
Rauth, Andrew M. [2 ,3 ]
Henderson, Jeffery T. [1 ]
Wu, Xiao Yu [1 ]
机构
[1] Univ Toronto, Leslie Dan Fac Pharm, Adv Pharmaceut & Drug Delivery Lab, 144 Coll St, Toronto, ON M5S 3M2, Canada
[2] Univ Toronto, Princess Margaret Canc Ctr, Dept Med Biophys, 610 Univ Ave, Toronto, ON M5G 2M9, Canada
[3] Univ Toronto, Princess Margaret Canc Ctr, Dept Radiat Oncol, 610 Univ Ave, Toronto, ON M5S 3M2, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大健康研究院;
关键词
3D tumor spheroids; blood-brain barrier; design of experiment (DOE); endocytosis; glioblastoma multiforme; polymer-lipid hybrid nanoparticle; MULTIDRUG-RESISTANCE; CO-DELIVERY; DOXORUBICIN; CANCER; TEMOZOLOMIDE; SYSTEM; OPTIMIZATION; STRATEGIES; RELEASE; HYDROCHLORIDE;
D O I
10.1007/s11095-021-03122-9
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Purpose Chemotherapy for glioblastoma multiforme (GBM) remains ineffective due to insufficient penetration of therapeutic agents across the blood-brain barrier (BBB) and into the GBM tumor. Herein, is described, the optimization of the lipid composition and fabrication conditions for a BBB- and tumor penetrating terpolymer-lipid-hybrid nanoparticle (TPLN) for delivering doxorubicin (DOX) to GBM. Methods The composition of TPLNs was first screened using different lipids based on nanoparticle properties and in vitro cytotoxicity by using 2(3) full factorial experimental design. The leading DOX loaded TPLNs (DOX-TPLN) were prepared by further optimization of conditions and used to study cellular uptake mechanisms, in vitro cytotoxicity, three-dimensional (3D) glioma spheroid penetration, and in vivo biodistribution in a murine orthotopic GBM model. Results Among various lipids studied, ethyl arachidate (EA) was found to provide excellent nanoparticle properties e.g., size, polydispersity index (PDI), zeta potential, encapsulation efficiency, drug loading, and colloidal stability, and highest anticancer efficacy for DOX-TPLN. Further optimized EA-based TPLNs were prepared with an optimal particle size (103.8 +/- 33.4 nm) and PDI (0.208 +/- 0.02). The resultant DOX-TPLNs showed similar to sevenfold higher efficacy than free DOX against human GBM U87-MG-RED-FLuc cells in vitro. The interaction between the TPLNs and the low-density lipoprotein receptors also facilitated cellular uptake, deep penetration into 3D glioma spheroids, and accumulation into the in vivo brain tumor regions of DOX-TPLNs. Conclusion This work demonstrated that the TPLN system can be optimized by rational selection of lipid type, lipid content, and preparation conditions to obtain DOX-TPLN with enhanced anticancer efficacy and GBM penetration and accumulation.
引用
收藏
页码:1897 / 1914
页数:18
相关论文
共 50 条
  • [1] Optimizing the Design of Blood–Brain Barrier-Penetrating Polymer-Lipid-Hybrid Nanoparticles for Delivering Anticancer Drugs to Glioblastoma
    Taksim Ahmed
    Fuh-Ching Franky Liu
    Chungsheng He
    Azhar Z. Abbasi
    Ping Cai
    Andrew M. Rauth
    Jeffery T. Henderson
    Xiao Yu Wu
    Pharmaceutical Research, 2021, 38 : 1897 - 1914
  • [2] B3Pdb: an archive of blood-brain barrier-penetrating peptides
    Kumar, Vinod
    Patiyal, Sumeet
    Kumar, Rajesh
    Sahai, Sukriti
    Kaur, Dilraj
    Lathwal, Anjali
    Raghava, Gajendra P. S.
    BRAIN STRUCTURE & FUNCTION, 2021, 226 (08) : 2489 - 2495
  • [3] Blood-brain barrier-penetrating amphiphilic polymer nanoparticles deliver docetaxel for the treatment of brain metastases of triple negative breast cancer
    He, Chunsheng
    Cai, Ping
    Li, Jason
    Zhang, Tian
    Lin, Lucy
    Abbasi, Azhar Z.
    Henderson, Jeffrey T.
    Rauth, Andrew Michael
    Wu, Xiao Yu
    JOURNAL OF CONTROLLED RELEASE, 2017, 246 : 98 - 109
  • [4] Blood-brain barrier-penetrating single CRISPR-Cas9 nanocapsules for effective and safe glioblastoma gene therapy
    Zou, Yan
    Sun, Xinhong
    Yang, Qingshan
    Zheng, Meng
    Shimoni, Olga
    Ruan, Weimin
    Wang, Yibin
    Zhang, Dongya
    Yin, Jinlong
    Huang, Xiangang
    Tao, Wei
    Park, Jong Bae
    Liang, Xing-Jie
    Leong, Kam W.
    Shi, Bingyang
    SCIENCE ADVANCES, 2022, 8 (16)
  • [5] Blood-Brain Barrier- and Blood-Brain Tumor Barrier-Penetrating Peptide-Derived Targeted Therapeutics for Glioma and Malignant Tumor Brain Metastases
    Chen, Long
    Zeng, Dan
    Xu, Nuo
    Li, Chengpeng
    Zhang, Wenyuan
    Zhu, Xinjie
    Gao, Yan
    Chen, Peng R.
    Lin, Jian
    ACS APPLIED MATERIALS & INTERFACES, 2019, 11 (45) : 41889 - 41897
  • [6] A blood-brain barrier- and blood-brain tumor barrier-penetrating siRNA delivery system targeting gliomas for brain tumor immunotherapy
    Tang, Lin
    Zhang, Rui
    Wang, Yusi
    Liu, Mohan
    Hu, Die
    Wang, Yefeng
    Yang, Li
    JOURNAL OF CONTROLLED RELEASE, 2024, 369 : 642 - 657
  • [7] A predictive microfluidic model of human glioblastoma to assess trafficking of blood-brain barrier-penetrant nanoparticles
    Straehla, Joelle P.
    Hajal, Cynthia
    Safford, Hannah C.
    Offeddu, Giovanni S.
    Boehnke, Natalie
    Dacoba, Tamara G.
    Wyckoff, Jeffrey
    Kamm, Roger D.
    Hammond, Paula T.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2022, 119 (23)
  • [8] Amphetamine decorated cationic lipid nanoparticles cross the blood-brain barrier: therapeutic promise for combating glioblastoma
    Saha, Soumen
    Yakati, Venu
    Shankar, Gajji
    Jaggarapu, Madan Mohan Chandra Sekhar
    Moku, Gopikrishna
    Madhusudana, Kuncha
    Banerjee, Rajkumar
    Ramkrishna, Sistla
    Srinivas, Ragampeta
    Chaudhuri, Arabinda
    JOURNAL OF MATERIALS CHEMISTRY B, 2020, 8 (19) : 4318 - 4330
  • [9] Optimizing Peptide-Conjugated Lipid Nanoparticles for Efficient siRNA Delivery across the Blood-Brain Barrier and Treatment of Glioblastoma Multiforme
    Tong, Haiyang
    Ma, Zesen
    Yu, Jin
    Li, Dongsheng
    Zhu, Qingjun
    Shi, Huajian
    Wu, Yun
    Yang, Hongyi
    Zheng, Yanmin
    Sun, Demeng
    Shi, Pan
    Chu, Jiaru
    Lv, Pei
    Li, Baoqing
    Tian, Changlin
    ACS CHEMICAL BIOLOGY, 2025, : 942 - 952
  • [10] Strategies to improve delivery of anticancer drugs across the blood-brain barrier to treat glioblastoma
    Oberoi, Rajneet K.
    Parrish, Karen E.
    Sio, Terence T.
    Mittapalli, Rajendar K.
    Elmquist, William F.
    Sarkaria, Jann N.
    NEURO-ONCOLOGY, 2016, 18 (01) : 27 - 36