期刊文献+

A Rigid Nanoplatform for Precise and Responsive Treatment of Intracellular Multidrug-Resistant Bacteria

下载PDF
导出
摘要 Antibiotic treatment failure against life-threatening bacterial pathogens is typically caused by the rapid emergence and dissemination of antibiotic resistance.The current lack of antibiotic discovery and development urgently calls for new strategies to combat multidrug-resistant(MDR)bacteria,especially those that survive in host cells.Functional nanoparticles are promising intracellular drug delivery systems whose advantages include their high biocompatibility and tunable surface modifications.Inspired by the fact that the rigidity of nanoparticles potentiates their cellular uptake,rigidity-functionalized nanoparticles(RFNs)coated with bacteria-responsive phospholipids were fabricated to boost endocytosis,resulting in the increased accumulation of intracellular antibiotics.Precise delivery and high antibacterial efficacy were demonstrated by the clearing of 99%of MDR bacteria in 4 h using methicillin-resistant Staphylococcus aureus(MRSA)and pathogenic Bacillus cereus as models.In addition,the subcellular distribution of the RFNs was modulated by altering the phospholipid composition on the surface,thereby adjusting the electrostatic effects and reprograming the intracellular behavior of the RFNs by causing them to accurately target lysosomes.Finally,the RFNs showed high efficacy against MRSA-associated infections in animal models of wound healing and bacteremia.These findings provide a controllable rigidity-regulated delivery platform with responsive properties for precisely reprograming the accumulation of cytosolic antibiotics,shedding light on precision antimicrobial therapeutics against intracellular bacterial pathogens in the future.
出处 《Engineering》 SCIE EI CAS 2022年第8期57-66,共10页 工程(英文)
基金 supported by the Laboratory of Lingnan Modern Agriculture Project(NT2021006) State Key Laboratory of Veterinary Biotechnology Foundation(SKLVBF202102)。
  • 相关文献

参考文献1

二级参考文献40

  • 1C. V. Pardeshi, V. S. Belgamwar. Direct nose to brain drug delivery via in- tegrated nerve pathways bypassing the blood-brain barrier: An excellent platform for brain targeting. Expert Opin. Drug Deliv., 2013,10(7): 957-972.
  • 2B. S. Bleier, R. E. Kohman, R. E. Feldrnan, S. Ramanlal, X. Han. Permeabili- zation of the blood-brain barrier via mucosal engrafting: Implications for drug delivery to the brain. PLoS One, 2013, 8(4): e61694.
  • 3M. Aryal, C. D. Arvanitis, P. M. Alexander, N. McDannold. Ultrasound- mediated blood-brain barrier disruption for targeted drug delivery in thecentral nervous system. Adv. Drug Deliv. Rev., 2014, 72:94-109.
  • 4F. Dilnawaz, A. Singh, S. Mewar, U. Sharma, N. R. Jagannathan, S. K. Sahoo. The transport of non-surfactant based paclitaxel loaded magnetic nanoparticles across the blood brain barrier in a rat model. Biomaterials, 2012, 33(10): 2936-2951.
  • 5P. A. Garcia, et al. 7.0-T magnetic resonance imaging characterization of acute blood-brain-barrier disruption achieved with intracranial irrevers- ible electroporation. PLoS One, 2012, 7(11): e50482.
  • 6D. W. Laske, R. J. Youle, E. H. Oldfield. Tumor regression with regional distribution of the targeted toxin TF-CRM107 in patients with malignant brain tumors. Nat. Med., 1997, 3(12): 1362-1368.
  • 7R. H. Bobo, D. W. Laske, A. Akbasak, P. F. Morrison, R. L. Dedrick, E. H, Oldfield. Convection-enhanced delivery of macromolecules in the brain, Proc. Natl. Acad. Sci. U.S.A., 1994, 91(6): 2076-2080.
  • 8K. S. Bankiewicz, et al. Convection-enhanced delivery of AAV vector in parkinsonian monkeys; in vivo detection of gene expression and restora- tion of dopaminergic function using pro-drug approach. Exp. Neurol., 2000,164(1): 2-14.
  • 9L. C. Vazquez, et al. Polymer-coated cannulas for the reduction of back- flow during intraparenchymal infusions.J. Mater. Sci. Mater. Med., 2012, 23(8): 2037-2046.
  • 10S. S. Gill, et al. Direct brain infusion of glial cell line-derived neurotrophic factor in Parkinson disease. Nat. Med., 2003, 9(5): 589-595.

共引文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部