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Dimeric Prodrug Self-Delivery Nanoparticles with Enhanced Drug Loading and Bioreduction Responsiveness for Targeted Cancer Therapy.
He, Xi; Cai, Kaimin; Zhang, Yu; Lu, Yifei; Guo, Qin; Zhang, Yujie; Liu, Lisha; Ruan, Chunhui; Chen, Qinjun; Chen, Xinli; Li, Chao; Sun, Tao; Cheng, Jianjun; Jiang, Chen.
Afiliação
  • He X; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Cai K; Department of Materials Science and Engineering , University of Illinois at Urbana-Champaign , 1304 W. Green Street , Urbana , Illinois 61801 , United States.
  • Zhang Y; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Lu Y; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Guo Q; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Zhang Y; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Liu L; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Ruan C; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Chen Q; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Chen X; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Li C; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Sun T; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
  • Cheng J; Department of Materials Science and Engineering , University of Illinois at Urbana-Champaign , 1304 W. Green Street , Urbana , Illinois 61801 , United States.
  • Jiang C; Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology, School of Pharmacy , Fudan University , Shanghai 200032 , China.
ACS Appl Mater Interfaces ; 10(46): 39455-39467, 2018 Nov 21.
Article em En | MEDLINE | ID: mdl-30362704
ABSTRACT
Efficient drug accumulation in tumor cells is essential for cancer therapy. Herein, we developed dimeric prodrug self-delivery nanoparticles (NPs) with enhanced drug loading and bioreduction responsiveness for triple negative breast cancer (TNBC) therapy. Specially designed camptothecin dimeric prodrug (CPTD) containing a disulfide bond was constructed to realize intracellular redox potential controlled drug release. Direct conjugation of hydrophobic CPTD to poly(ethylene glycol) PEG5000, a prodrug-based amphiphilic CPTD-PEG5000 co-polymer was synthesized, which could encapsulate parental CPTD prodrug spontaneously and form ultrastable NPs due to the highly analogous structure. Such dimeric prodrug self-delivery nanoparticles showed ultrahigh stability with critical micelle concentration as low as 0.75 µg/mL and remained intact during endocytosis. In addition, neurotensin (NT), a 13 amino acid ligand, was further modified on the nanoparticles for triple negative breast cancer (TNBC) targeting. Optimized NT-CPTD NPs showed improved pharmacokinetics profile and increased drug accumulation in TNBC lesions than free CPT, which largely reduced the systemic toxicity and presented an improved anticancer efficacy in vivo. In summary, with advantages of extremely high drug loading capacity, tumor microenvironmental redox responsiveness, and targeted TNBC accumulation, NT-CPTD NPs showed their potential for effective triple negative breast cancer therapy.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Portadores de Fármacos / Nanopartículas / Neoplasias Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Portadores de Fármacos / Nanopartículas / Neoplasias Idioma: En Ano de publicação: 2018 Tipo de documento: Article