Carbon nanotube bottles for incorporation, release and enhanced cytotoxic effect of cisplatin.


Journal

Carbon
ISSN: 0008-6223
Titre abrégé: Carbon N Y
Pays: United States
ID NLM: 101204394

Informations de publication

Date de publication:
02 May 2019
Historique:
entrez: 21 5 2019
pubmed: 21 5 2019
medline: 21 5 2019
Statut: ppublish

Résumé

Carbon nanotubes (CNTs) have emerged as promising drug delivery systems particularly for cancer therapy, due to their abilities to overcome some of the challenges faced by cancer treatment, namely non-specificity, poor permeability into tumour tissues, and poor stability of anticancer drugs. Encapsulation of anticancer agents inside CNTs provides protection from external deactivating agents. However, the open ends of the CNTs leave the encapsulated drugs exposed to the environment and eventually their uncontrolled release before reaching the desired target. In this study, we report the successful encapsulation of cisplatin, a FDA-approved chemotherapeutic drug, into multi-walled carbon nanotubes and the capping at the ends with functionalised gold nanoparticles to achieve a "carbon nanotube bottle" structure. In this proof-of-concept study, these caps did not prevent the encapsulation of drug in the inner space of CNTs; on the contrary, we achieved higher drug loading inside the nanotubes in comparison with data reported in literature. In addition, we demonstrated that encapsulated cisplatin could be delivered in living cells under physiological conditions to exert its pharmacological action.

Identifiants

pubmed: 31105316
doi: 10.1016/j.carbon.2011.11.043
pmc: PMC6522380
mid: EMS82793
doi:

Types de publication

Journal Article

Langues

eng

Pagination

1625-1634

Subventions

Organisme : Department of Health
ID : L100
Pays : United Kingdom

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Auteurs

Jian Li (J)

Department of Pharmacy, National University of Singapore, Science Drive 2, S15#05-PI-03, Singapore 117543, Singapore.

Siew Qi Yap (SQ)

Department of Chemistry, National University of Singapore, 3 Science Drive 2, S15#05-PI-01, Singapore 117543, Singapore.

Sia Lee Yoong (SL)

NUS Graduate School for Integrative Sciences and Engineering, Centre for Life Sciences (CeLS), 28 Medical Drive, #05-01, Singapore 117456, Singapore.

Tapas Ranjan Nayak (TR)

Department of Pharmacy, National University of Singapore, Science Drive 2, S15#05-PI-03, Singapore 117543, Singapore.

Gary Wiratama Chandra (GW)

Department of Pharmacy, National University of Singapore, Science Drive 2, S15#05-PI-03, Singapore 117543, Singapore.

Wee Han Ang (WH)

Department of Chemistry, National University of Singapore, 3 Science Drive 2, S15#05-PI-01, Singapore 117543, Singapore.

Tomasz Panczyk (T)

Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences ul. Niezapominajek 8, 30239 Cracow, Poland.

Sundara Ramaprabhu (S)

Department of Physics, Indian Institute of Technology Madras, Chennai 600 036, India.

Sandeep Kumar Vashist (SK)

NUSNNI-NanoCore, National University of Singapore, T-Lab Level 11, 5A Engineering Drive 1, Singapore 117580, Singapore.

Fwu-Shan Sheu (FS)

NUSNNI-NanoCore, National University of Singapore, T-Lab Level 11, 5A Engineering Drive 1, Singapore 117580, Singapore.

Aaron Tan (A)

Centre for Nanotechnology and Regenerative Medicine, UCL Division of Surgery and Interventional Science, University College London, UK.

Giorgia Pastorin (G)

Department of Pharmacy, National University of Singapore, Science Drive 2, S15#05-PI-03, Singapore 117543, Singapore.
NUS Graduate School for Integrative Sciences and Engineering, Centre for Life Sciences (CeLS), 28 Medical Drive, #05-01, Singapore 117456, Singapore.
NUSNNI-NanoCore, National University of Singapore, T-Lab Level 11, 5A Engineering Drive 1, Singapore 117580, Singapore.

Classifications MeSH