Literature DB >> 12442814

Optimizing pH-responsive polymeric micelles for drug delivery in a cancer photodynamic therapy model.

D Le Garrec1, J Taillefer, J E Van Lier, V Lenaerts, J C Leroux.   

Abstract

Different pH-sensitive, randomly- and terminally-alkylated N-isopropylacrylamide (NIPAM) copolymers were synthesized and used to prepare pH-responsive polymeric micelles (PM). These copolymers were modified from previously-studied copolymers by incorporating an additional hydrophilic monomer, N-vinyl-2-pyrrolidone (VP) to decrease uptake by the mononuclear phagocyte system (MPS) and improve localization in tumors. VP lowered the phase transition pH of the copolymers but did not affect the onset of micellization. The in vitro cytotoxicity of the copolymers was evaluated on EMT-6 mouse mammary tumor cells in comparison to Cremophor EL (CRM). The anticancer photosensitizer aluminum chloride phthalocyanine (AlClPc) was loaded into the PM with a standard dialysis procedure. Biodistribution and in vivo photodynamic activity were then evaluated in Balb/c mice bearing intradermal EMT-6 tumors. All NIPAM copolymers demonstrated substantially lower cell cytotoxicity than the control surfactant CRM. In vivo, similar AlClPc tumor uptake was observed for the PM and CRM formulations. However, the PM appeared to exhibit greater activity in vivo than CRM formulation at an AlClPc subtherapeutic dose. Therefore, NIPAM-based copolymers containing VP units represent promising alternatives for the formulation of poorly water-soluble phthalocyanines.

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Year:  2002        PMID: 12442814     DOI: 10.1080/1061186021000001887

Source DB:  PubMed          Journal:  J Drug Target        ISSN: 1026-7158            Impact factor:   5.121


  15 in total

1.  Can nanotechnology potentiate photodynamic therapy?

Authors:  Ying-Ying Huang; Sulbha K Sharma; Tianhong Dai; Hoon Chung; Anastasia Yaroslavsky; Maria Garcia-Diaz; Julie Chang; Long Y Chiang; Michael R Hamblin
Journal:  Nanotechnol Rev       Date:  2012-03       Impact factor: 7.848

Review 2.  Recent applications of phthalocyanines and naphthalocyanines for imaging and therapy.

Authors:  Yumiao Zhang; Jonathan F Lovell
Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol       Date:  2016-07-20

3.  Effect of substrate storage conditions on the stability of "Smart" films used for mammalian cell applications.

Authors:  Blake M Bluestein; Jamie A Reed; Heather E Canavan
Journal:  Appl Surf Sci       Date:  2016-09-01       Impact factor: 6.707

4.  Optimization of electrospun poly(N-isopropyl acrylamide) mats for the rapid reversible adhesion of mammalian cells.

Authors:  Kirsten N Cicotte; Jamie A Reed; Phuong Anh H Nguyen; Jacqueline A De Lora; Elizabeth L Hedberg-Dirk; Heather E Canavan
Journal:  Biointerphases       Date:  2017-06-13       Impact factor: 2.456

Review 5.  Functionalized micellar systems for cancer targeted drug delivery.

Authors:  Damon Sutton; Norased Nasongkla; Elvin Blanco; Jinming Gao
Journal:  Pharm Res       Date:  2007-03-24       Impact factor: 4.200

Review 6.  Micellar nanocarriers: pharmaceutical perspectives.

Authors:  V P Torchilin
Journal:  Pharm Res       Date:  2006-11-16       Impact factor: 4.200

7.  Environment-Responsive Polymers for Coating of Pharmaceutical Nanocarriers(,).

Authors:  A A Kale; V P Torchilin
Journal:  Polym Sci Ser A Chem Phys       Date:  2009-06

Review 8.  Targeted pharmaceutical nanocarriers for cancer therapy and imaging.

Authors:  Vladimir P Torchilin
Journal:  AAPS J       Date:  2007-05-11       Impact factor: 4.009

9.  Environment-responsive multifunctional liposomes.

Authors:  Amit A Kale; Vladimir P Torchilin
Journal:  Methods Mol Biol       Date:  2010

Review 10.  Shining light on nanotechnology to help repair and regeneration.

Authors:  Asheesh Gupta; Pinar Avci; Magesh Sadasivam; Rakkiyappan Chandran; Nivaldo Parizotto; Daniela Vecchio; Wanessa C M A de Melo; Tianhong Dai; Long Y Chiang; Michael R Hamblin
Journal:  Biotechnol Adv       Date:  2012-08-21       Impact factor: 14.227

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