Comparison of virus-capsid mimicking biologic-shell based versus polymeric-shell nanoparticles for enhanced oral insulin delivery

被引:4
作者
Cui, Zhixiang [1 ]
Cui, Shuman [1 ]
Qin, Lu [1 ]
An, Yalin [1 ]
Zhang, Xin [1 ]
Guan, Jian [1 ]
Wong, Tin Wui [2 ,3 ]
Mao, Shirui [1 ]
机构
[1] Shenyang Pharmaceut Univ, Sch Pharm, Shenyang 110016, Peoples R China
[2] Univ Teknol MARA Selangor, Fac Pharm, Particle Design Res Grp, Puncak Alam 42300, Malaysia
[3] Univ Teknol MARA Selangor, Smart Mfg Res Inst, Nondestruct Biomed & Pharmaceut Res Ctr, Puncak Alam 42300, Malaysia
基金
中国国家自然科学基金;
关键词
Oral insulin; Streptavidin; Virus; -mimicking; Nanoparticles; Muco-penetrating; Mucus; DRUG-DELIVERY; ABSORPTION; AVIDIN; DESIGN; MECHANISM;
D O I
10.1016/j.ajps.2023.100848
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Virus-capsid mimicking mucus-permeable nanoparticles are promising oral insulin carriers which surmount intestinal mucus barrier. However, the impact of different virus-capsid mimicking structure remains unexplored. In this study, utilizing biotin grafted chitosan as the main skeleton, virus-mimicking nanoparticles endowed with biologic-shell (streptavidin coverage) and polymeric-shell (hyaluronic acid/alginate coating) were designed with insulin as a model drug by self-assembly processes. It was demonstrated that biologic-shell mimicking nanoparticles exhibited a higher intestinal trans-mucus (>80%, 10 min) and transmucosal penetration efficiency (1.6-2.2-fold improvement) than polymeric-shell counterparts. Uptake mechanism studies revealed caveolae-mediated endocytosis was responsible for the absorption of biologic-shell mimicking nanoparticles whereas polymeric-shell mimicking nanoparticles were characterized by clathrin-mediated pathway with anticipated lysosomal insulin digestion. Further, in vivo hypoglycemic study indicated that the improved effect of regulating blood sugar levels was virus-capsid structure dependent out of which biologic-shell mimicking nanoparticles presented the best performance (5.1%). Although the findings of this study are encouraging, much more work is required to meet the standards of clinical translation. Taken together, we highlight the external structural dependence of virus-capsid mimicking nanoparticles on the muco-penetrating and uptake mechanism of enterocytes that in turn affecting their in vivo absorption, which should be pondered when engineering virus-mimicking nanoparticles for oral insulin delivery.(c) 2023 Shenyang Pharmaceutical University. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license ( http://creativecommons.org/licenses/by-nc-nd/4.0/ )
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页数:11
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共 33 条
  • [1] Advanced materials for drug delivery across mucosal barriers
    Bandi, Sony Priyanka
    Bhatnagar, Shubhmita
    Venuganti, Venkata Vamsi Krishna
    [J]. ACTA BIOMATERIALIA, 2021, 119 : 13 - 29
  • [2] A review on ameliorative green nanotechnological approaches in diabetes management
    Bhardwaj, Monika
    Yadav, Poonam
    Dalal, Sunita
    Kataria, Sudhir Kumar
    [J]. BIOMEDICINE & PHARMACOTHERAPY, 2020, 127
  • [3] Surfactant concentration and pH effects on the zeta potential values of alumina nanofluids to inspect stability
    Cacua, Karen
    Ordonez, Fredy
    Zapata, Camilo
    Herrera, Bernardo
    Pabon, Elizabeth
    Buitrago-Sierra, Robison
    [J]. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2019, 583
  • [4] Design of self-polymerized insulin loaded poly(n-butylcyanoacrylate) nanoparticles for tunable oral delivery
    Cheng, Hongbo
    Zhang, Xin
    Qin, Lu
    Huo, Yingnan
    Cui, Zhixiang
    Liu, Chang
    Sun, Yujiao
    Guan, Jian
    Mao, Shirui
    [J]. JOURNAL OF CONTROLLED RELEASE, 2020, 321 : 641 - 653
  • [5] Exploring the potential of redispersible nanocomplex-in-microparticles for enhanced oral insulin delivery
    Cui, Zhixiang
    Liu, Chang
    Cui, Shuman
    Qin, Lu
    Zhang, Xin
    Guan, Jian
    Mao, Shirui
    [J]. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2022, 612
  • [6] Design of biotin decorated enterocyte targeting muco-inert nanocomplexes for enhanced oral insulin delivery
    Cui, Zhixiang
    Qin, Lu
    Guo, Shuang
    Cheng, Hongbo
    Zhang, Xin
    Guan, Jian
    Mao, Shirui
    [J]. CARBOHYDRATE POLYMERS, 2021, 261
  • [7] Nanoparticles for oral delivery: Design, evaluation and state-of-the-art
    Date, Abhijit A.
    Hanes, Justin
    Ensign, Laura M.
    [J]. JOURNAL OF CONTROLLED RELEASE, 2016, 240 : 504 - 526
  • [8] Oral drug delivery with polymeric nanoparticles: The gastrointestinal mucus barriers
    Ensign, Laura M.
    Cone, Richard
    Hanes, Justin
    [J]. ADVANCED DRUG DELIVERY REVIEWS, 2012, 64 (06) : 557 - 570
  • [9] Pervaporation dehydration of ethanol by hyaluronic acid/sodium alginate two-active-layer composite membranes
    Gao, Chengyun
    Zhang, Minhua
    Ding, Jianwu
    Pan, Fusheng
    Jiang, Zhongyi
    Li, Yifan
    Zhao, Jing
    [J]. CARBOHYDRATE POLYMERS, 2014, 99 : 158 - 165
  • [10] Permeation modulating properties of natural polymers - Effect of molecular weight and mucus
    Hagesaether, Ellen
    [J]. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2011, 409 (1-2) : 150 - 155