Pharmaceutical versatility of cationic niosomes derived from amino acid-based surfactants: Skin penetration behavior and controlled drug release

被引:59
作者
Muzzalupo, Rita [1 ]
Perez, Lourdes [2 ]
Pinazo, Aurora [2 ]
Tavano, Lorena [1 ]
机构
[1] Univ Calabria, Dept Pharm Hlth & Nutr Sci, Via Pietro Bucci, I-87036 Arcavacata Di Rende, CS, Italy
[2] IQACCSIC, Dept Chem & Surfactants Technol, Jordi Girona 18-26, Barcelona 08034, Spain
关键词
Gemini cationic surfactant; Amino acid-based surfactant; Niosomes; Skin permeation; Drug release; Target; IN-VITRO; LIPOPHILIC DRUG; LIPOSOMES; DELIVERY; CARRIERS; STRATEGIES; SYSTEMS; PH;
D O I
10.1016/j.ijpharm.2017.06.083
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The natural capability shown by cationic vesicles in interacting with negatively charged surfaces or biomolecules has recently attracted increased interest. Important pharmacological advantages include the selective targeting of the tumour vasculature, the promotion of permeation across cell membranes, as well as the influence of cationic vesicles on drug delivery. Accordingly, cationic amphiphiles derived from amino acids may represent an alternative to traditional synthetic cationic surfactants due to their lower cytotoxicity. The importance of a synthesized lysine-based gemini surfactant (labelled C-6(LL)(2)) was evaluated in drug delivery by designing cationic niosomes as usable pharmaceutical tools of chemotherapeutics and antibiotics, respectively like methotrexate and tetracycline. The influence of formulation factors on the vesicles' physical-chemical properties, drug entrapment efficiency, in vitro release and ex-vivo skin permeation were investigated. A niosomal gel containing the gemini surfactant was also tested as a viable multi-component topical formulation. Results indicate that in the presence of cholesterol, C-6(LL)(2) was able to form stable and nanosized niosomes, loading hydrophilic or hydrophobic molecules. Furthermore, in vitro release studies and ex-vivo permeation profiles showed that C-6(LL)(2)-based vesicles behave as sustained and controlled delivery systems in the case of parenteral administration, and as drug percutaneous permeation enhancers after topical application. Finally, cationic C-6(LL)(2) acts as a carrier constituent, conferring peculiar and interesting functionality to the final formulation. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:245 / 252
页数:8
相关论文
共 29 条
[1]   Optimization of niosomes for enhanced antibacterial activity and reduced bacterial resistance: in vitro and in vivo evaluation [J].
Abdelaziz, Ahmed A. ;
Elbanna, Tarek E. ;
Sonbol, Fatma I. ;
Gamaleldin, Noha M. ;
El Maghraby, Gamal M. .
EXPERT OPINION ON DRUG DELIVERY, 2015, 12 (02) :163-180
[2]   Targeting Anticancer Drugs to Tumor Vasculature Using Cationic Liposomes [J].
Abu Lila, Amr S. ;
Ishida, Tatsuhiro ;
Kiwada, Hiroshi .
PHARMACEUTICAL RESEARCH, 2010, 27 (07) :1171-1183
[3]   Recent advances in tumor vasculature targeting using liposomal drug delivery systems [J].
Abu Lila, Amr S. ;
Ishida, Tatsuhiro ;
Kiwada, Hiroshi .
EXPERT OPINION ON DRUG DELIVERY, 2009, 6 (12) :1297-1309
[4]   The effect of low pH on breast cancer resistance protein (ABCG2)-mediated transport of methotrexate, 7-hydroxymethotrexate, methotrexate diglutamate, folic acid, mitoxantrone, topotecan, and resveratrol in in vitro drug transport models [J].
Breedveld, Pauline ;
Pluim, Dick ;
Cipriani, Greta ;
Dahlhaus, Femke ;
van Eijndhoven, Maria A. J. ;
de Wolf, Cornelia J. F. ;
Kuil, Annemieke ;
Beijnen, Jos H. ;
Scheffer, George L. ;
Jansen, Gerrit ;
Borst, Piet ;
Schellens, Jan H. M. .
MOLECULAR PHARMACOLOGY, 2007, 71 (01) :240-249
[5]   Cationic Surfactants Derived from Lysine: Effects of Their Structure and Charge Type on Antimicrobial and Hemolytic Activities [J].
Colomer, A. ;
Pinazo, A. ;
Manresa, M. A. ;
Vinardell, M. P. ;
Mitjans, M. ;
Infante, M. R. ;
Perez, L. .
JOURNAL OF MEDICINAL CHEMISTRY, 2011, 54 (04) :989-1002
[6]   Mixed Monolayer of DPPC and Lysine-Based Cationic Surfactants: An Investigation into the Antimicrobial Activity [J].
Colomer, Aurora ;
Perez, Lourdes ;
Pons, Ramon ;
Infante, Maria Rosa ;
Perez-Clos, Dani ;
Manresa, Angels ;
Jose Espuny, Maria ;
Pinazo, Aurora .
LANGMUIR, 2013, 29 (25) :7912-7921
[7]   Surface charged temoporfin-loaded flexible vesicles: In vitro skin penetration studies and stability [J].
Dragicevic-Curic, Nina ;
Graefe, Susanna ;
Gitter, Burkhard ;
Winter, Sven ;
Fahr, Alfred .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2010, 384 (1-2) :100-108
[8]   Evaluation of Meloxicam-Loaded Cationic Transfersomes as Transdermal Drug Delivery Carriers [J].
Duangjit, Sureewan ;
Opanasopit, Praneet ;
Rojanarata, Theerasak ;
Ngawhirunpat, Tanasait .
AAPS PHARMSCITECH, 2013, 14 (01) :133-140
[9]   Liposomes as carriers of hydrophilic small molecule drugs: Strategies to enhance encapsulation and delivery [J].
Eloy, Josimar Oliveira ;
de Souza, Marina Claro ;
Petrilli, Raquel ;
Abriata Barcellos, Juliana Palma ;
Lee, Robert J. ;
Marchetti, Juliana Maldonado .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2014, 123 :345-363
[10]   Preparation, DNA binding, and in vitro cytotoxicity of a pair of enantiomeric platinum(II) complexes, [(R)- and (S)-3-aminohexahydroazepine]dichloro-platinum(II). Crystal structure of the S enantiomer [J].
Fenton, RR ;
Easdale, WJ ;
Er, HM ;
OMara, SM ;
McKeage, MJ ;
Russell, PJ ;
Hambley, TW .
JOURNAL OF MEDICINAL CHEMISTRY, 1997, 40 (07) :1090-1098