À propos de cet article

Citez

Z. Rukavina, M. Šegvić Klarić, J. Filipović-Grčić, J. Lovrić and Ž. Vanić, Azithromycin-loaded liposomes for enhanced topical treatment of methicillin-resistant Staphyloccocus aureus (MRSA) infections, Int. J. Pharm. 553(1–2) (2018) 109–119; https://doi.org/10.1016/j.ijpharm.2018.10.024 Search in Google Scholar

B. Silverberg, A structured approach to skin and soft tissue infections (SSTIs) in an ambulatory setting, Clin. Pract. 11(1) (2021) 65–74; https://doi.org/10.3390/clinpract11010011 Search in Google Scholar

M. S. Linz, A. Mattappallil, D. Finkel and D. Parker, Clinical impact of Staphylococcus aureus skin and soft tissue infections, Antibiotics 12(3) (2023) Article ID 557 (27 pages); https://doi.org/10.3390/antibiotics12030557 Search in Google Scholar

D. A. Williamson, G. P. Carter and B. P. Howden, Current and emerging topical antibacterials and antiseptics: agents, action and resistance patterns, Clin. Microbiol. 30 (2017) 827–860; https://doi.org/10.1128/CMR.00112-16 Search in Google Scholar

U. Bulbake, S. Doppalapudi, N. Kommineni and W. Khan, Liposomal formulations in clinical use: an updated review, Pharmaceutics 9 (2017) Article ID 12 (33 pages); https://doi.org/10.3390/pharmaceutics9020012 Search in Google Scholar

Z. Rukavina and Ž. Vanić, Current trends in development of liposomes for targeting bacterial biofilms, Pharmaceutics 8(2) (2016) Article ID 18 (26 pages); https://doi.org/10.3390/pharmaceutics8020018U Search in Google Scholar

M. Rahman. K. Alam, S. Beg, F. Anwar and V. Kumar, Liposomes as Topical Drug Delivery Systems: State of the Art, in Biomedical Applications of Nanoparticles (Ed. A. M. Grumezescu), William Andrew Publishing, Norwich 2019, pp. 149–161; https://doi.org/10.1016/B978-0-12-816506-5.00004-8 Search in Google Scholar

S. Li, S. Dong, W. Xu, S. Tu, L. Yan, C. Zhao, J. Ding and X. Chen, Antibacterial hydrogels, Adv. Sci. 5(5) (2018) Article ID 1700527 (17 pages); https://doi.org/10.1002/advs.201700527. Search in Google Scholar

S. Grijalvo. J. Mayr, R. Eritja and D. D. Díaz, Biodegradable liposome-encapsulated hydrogels for biomedical applications: A marriage of convenience, Biomater. Sci. 4(4) (2016) 555–574; https://doi.org/10.1039/C5BM00481K Search in Google Scholar

J. Hurler and N. Škalko-Basnet, Potentials of chitosan-based delivery systems in wound therapy: bioadhesion study, J. Funct. Biomater. 3(1) (2012) 37–48; https://doi.org/10.3390/jfb3010037 Search in Google Scholar

J. Hurler, S. Žakelj, J. Mravljak, S. Pajk, A. Kristl, R. Schubert and N. Škalko-Basnet, The effect of lipid composition and liposome size on the release properties of liposomes-in-hydrogel, Int. J. Pharm. 456(1) (2013) 49–57; https://doi.org/10.1016/j.ijpharm.2013.08.033 Search in Google Scholar

L. M. Hemmingsen, N. Škalko-Basnet and M. W. Jøraholmen, The expanded role of chitosan in localized antimicrobial therapy, Mar. Drugs 19 (2021) Article ID 697 (53 pages); https://doi.org/10.3390/md19120697 Search in Google Scholar

S. G. Ingebrigtsen, A. Didriksen, M. Johannessen, N. Škalko-Basnet and A. M. Holsæter, Old drug, new wrapping – A possible comeback for chloramphenicol? Int. J. Pharm. 526(1–2) (2017) 538–546; https://doi.org/10.1016/j.ijpharm.2017.05.025 Search in Google Scholar

K. Yang, Q. Han, B. Chen, Y. Zheng, K. Zhang, Q. Li and J. Wang, Antimicrobial hydrogels: promising materials for medical application, Int. J. Nanomedicine 13 (2018) 2217–2263; https://doi.org/10.2147/IJN.S154748 Search in Google Scholar

L. M. Hemmingsen, K. Julin, L. Ahsan, P. Basnet, M. Johannessen and N. Škalko-Basnet, Chitosomes-in-chitosan hydrogel for acute skin injuries: prevention and infection control, Mar. Drugs 19(5) (2021) Article ID 269 (21 pages); https://doi.org/10.3390/md19050269 Search in Google Scholar

J. Hurler, O. A. Berg, M. Skar, A. H. Conradi, P. J. Johnsen and N. Škalko-Basnet, Improved burns therapy: liposomes-in-hydrogel delivery system for mupirocin, J. Pharm. Sci. 101(10) (2012) 3906–3915; https://doi.org/10.1002/jps.23260 Search in Google Scholar

S. Ternullo, L. V. Schulte Werning, A. M. Holsæter and N. Škalko-Basnet, Curcumin-in-deformable liposomes-in-chitosan-hydrogel as a novel wound dressing, Pharmaceutics 12(1) (2020) Article ID 8 (14 pages); https://doi.org/10.3390/pharmaceutics12010008 Search in Google Scholar

I. A. Alsarra, Chitosan topical gel formulation in the management of burn wounds, Int. J. Biol. Macromol. 45 (2009) 16–21; https://doi.org/10.1016/j.ijbiomac.2009.03.010 Search in Google Scholar

A. Čačić, D. Amidžić Klarić, S. Keser, M. Radiković, Z. Rukavina, M. W. Jøraholmen, L. Uzelac, M. Kralj, N. Škalko-Basnet, M. Šegvić Klarić and Ž. Vanić, A Novel approach for the treatment of aerobic vaginitis: azithromycin liposomes-in-chitosan hydrogel, Pharmaceutics 15(5) (2023) Article ID 1356 (17 pages); https://doi.org/10.3390/pharmaceutics15051356 Search in Google Scholar

J. Hurler, A. Engesland, B. P. Kermany and N. Škalko-Basnet, Improved texture analysis for hydrogel characterization: Gel cohesiveness, adhesiveness, and hardness, J. Appl. Polym. Sci. 125 (2011) 180–188; https://doi.org/10.1002/app.35414 Search in Google Scholar

Ž. Vanić, A.M. Holæter and N. Škalko-Basnet, (Phospho)lipid-based nanosystems for skin administration, Curr. Pharm. Des. 21(29) (2015) 4174–4192; https://doi/10.2174/1381612821666150901095838 Search in Google Scholar

Ž. Vanić, M. W. Jøraholmen and N. Škalko-Basnet, Nanomedicines for the topical treatment of vulvovaginal infections: Addressing the challenges of antimicrobial resistance, Adv. Drug. Deliv. Rev. 178 (2021) 113855 (30 pages); https://doi/10.1016/j.addr.2021.113855 Search in Google Scholar

C. Martin, W. L. Low, A. Gupta, M. C. Amin, I. Radecka, S. T. Britland, P. Raj and K. M. Kenward, Strategies for antimicrobial drug delivery to biofilm, Curr. Pharm. Des. 21(1) (2015) 43–66; https://doi/10.2174/1381612820666140905123529 Search in Google Scholar

Z. Palac, A. Engesland, G. E. Flaten, N. Škalko-Basnet, J. Filipović-Grčić and Ž. Vanić, Liposomes for (trans)dermal drug delivery: the skin-PVPA as a novel in vitro stratum corneum model in formulation development, J. Liposome Res. 24(4) (2014) 313–322; https://10.3109/08982104.2014.899368 Search in Google Scholar

A. M. Robinson, M. Bannister, J. E. Creeth, M. N. Jones, The interaction of phospholipid liposomes with mixed bacterial biofilms and their use in the delivery of bactericide, Colloids Surf. A 186 (2001) 43–53; https://doi/10.1016/S0927-7757(01)00481-2 Search in Google Scholar

D. Y. Wang, H. C. van der Mei, Y. Ren, H. J. Busscher and L. Shi, Lipid-based antimicrobial delivery-systems for the treatment of bacterial infections, Front Chem. 10(7) (2020) 872; https://doi/10.3389/fchem.2019.00872 Search in Google Scholar

P. Sacco, F,.Furlani, G. De Marzo, E. Marsich, S. Paoletti and I. Donati, Concepts for developing physical gels of chitosan and of chitosan derivatives, Gels 4(3) (2018) Article ID 67 (29 pages); https://doi/10.3390/gels4030067 Search in Google Scholar

P. Domalik-Pyzik, J. Chłopek and K. Pielichowska, Chitosan-based Hydrogels: Preparation, Properties, and Applications, in Polymers and Polymeric Composites: A Reference Series (Ed. I.H. Mondal), Springer, Cham, 2019, pp. 1665–1693. https://doi.org/10.1007/978-3-319-77830-3_55 Search in Google Scholar

S. Mourtas, M. Haikou, M. Theodoropoulou, C. Tsakiroglou and S. G. Antimisiaris, The effect of added liposomes on the rheological properties of a hydrogel: A systematic study, J. Colloid Interface Sci. 317 (2008) 611–619; https://doi.org/10.1016/j.jcis.2007.09.070 Search in Google Scholar

M. H. Chen, L. L. Wang, J. J. Chung, Y.-H Kim, P. Atluri and J. A. Burdick, Methods to assess shear-thinning hydrogels for application as injectable biomaterials. ACS Biomater, Sci. Eng. 3 (2017) 3146–3160; https://doi/10.1021/acsbiomaterials.7b00734 Search in Google Scholar

I. Zarandona, C. Bengoechea, E. Álvarez-Castillo, K. de la Caba, A. Guerrero and P. Guerrero, 3D printed chitosan-pectin hydrogels: from rheological characterization to scaffold development and assessment, Gels 7(4) (2021) Article ID 175 (17 pages); https://doi.org/10.3390/gels7040175 Search in Google Scholar

M. Kaplan, F. Tuğcu-Demiröz, I. Vural and N. Çelebi, Development and characterization of gels and liposomes containing ovalbumin for nasal delivery, J. Drug Deliv. Sci. Technol. 44 (2018) 108–117; https://doi.org/10.1016/j.jddst.2017.12.006 Search in Google Scholar

Z. J. Zhang, T. Osmałek and B. Michniak-Kohn, Deformable liposomal hydrogel for dermal and transdermal delivery of meloxicam, Int. J. Nanomedicine 15 (2020) 9319–9335; https://doi.org/10.2147/IJN.S274954 Search in Google Scholar

L. M. Hemmingsen, B. Giordani, A. K. Pettersen, B. Vitali, P. Basnet and N. Škalko-Basnet, Liposomes-in-chitosan hydrogel boosts potential of chlorhexidine in biofilm eradication in vitro, Carbohydr. Polym. 262 (2021) Article ID 117939 (10 pages); https://doi.org/10.1016/j.carbpol.2021.117939 Search in Google Scholar

M. T. Islam, N. Rodriguez-Hornedo, S. Ciotti and C. Ackermann, Rheological characterization of topical carbomer gels neutralized to different pH, Pharm. Res. 21 (2004) 1192–1199; https://doi/10.1023/b:pham.0000033006.11619.07 Search in Google Scholar

M. W. Jøraholmen, P. Basnet, M. J. Tostrup, S. Moueffaq and N. Škalko-Basnet, Localized therapy of vaginal infections and inflammation: liposomes-in-hydrogel delivery system for polyphenols, Pharmaceutics 11(2) (2019) Article ID 53 (19 pages); https://doi.org/10.3390/pharmaceutics11020053 Search in Google Scholar

S. Mourtas, S. Fotopoulou, S. Duraj, V. Sfika, C. Tsakiroglou and S. G. Antimisiaris, Liposomal drugs dispersed in hydrogels. Effect of liposome, drug and gel properties on drug release kinetics, Colloids Surf. B Biointerfaces 55 (2007) 212–221; https://doi.org/10.1016/j.colsurfb.2006.12.005. Search in Google Scholar

A. Paavola, I. Kilpelainen, J. Yliruusi and P. Rosenberg, Controlled release injectable liposomal gel of ibuprofen for epidural analgesia, Int. J. Pharm. 199 (2000) 85–93; https://doi/10.1016/s0378-5173(00)00376-8 Search in Google Scholar

Ž. Pavelić, N. Škalko-Basnet and R. Schubert, Liposomal gels for vaginal drug delivery, Int. J. Pharm. 219(1–2) (2001) 139–149; https://doi/10.1016/s0378-5173(01)00637-8 Search in Google Scholar

L. M. Hemmingsen, P. Panchai, K. Julin, P. Basnet, M. Nystad, M. Johannessen and N. Škalko-Basnet N, Chitosan-based delivery system enhances antimicrobial activity of chlorhexidine, Front Microbiol. 13 (2022) Article ID 1023083 (13 pages); https://doi/10.3389/fmicb.2022.1023083 Search in Google Scholar

K. K. Kandimalla, E. Borden, R. S. Omtri, S. P. Boyapati, M. Smith, K. Lebby, M. Mulpuru and M. Gadde, Ability of chitosan gels to disrupt bacterial biofilms and their applications in the treatment of bacterial vaginosis, J. Pharm. Sci. 102(7) (2013) 2096–2101; https://doi/10.1002/jps.23571 Search in Google Scholar

P. Li, Y. F. Poon, W. Li, H. Y. Zhu, S. H. Yeap, Y. Cao, X. Qi, C. Zhou, M. Lamrani, R. W. Beuerman, E. T. Kang, Y. Mu, C. M. Li, M. W. Chang, S. S. J. Leong and M. B. Chan-Park, A polycationic antimicrobial and biocompatible hydrogel with microbe membrane suctioning ability, Nat. Mater. 10(2) (2011) 149–156; https://doi/10.1038/nmat2915 Search in Google Scholar

T. Dai, Y. Y. Huang, S. K. Sharma, J. T. Hashmi, D. B. Kurup and M. R. Hamblin, Topical antimicrobials for burn wound infections, Recent Pat. Antiinfect. Drug Discov. 5(2) (2010) 124–151; https://doi/10.2174/157489110791233522 Search in Google Scholar

P. B. S. Albuquerque, W. F. de Oliveira, P. M. D. S. Silva, M. T. D. S. Correia, J. F. Kennedy and L. C. B. B. Coelho, Skincare application of medicinal plant polysaccharides – A review, Carbohydr. Polym. 277 (2021) Article ID 118824 (13 pages); https://doi.org/10.1016/j.carbpol.2021.118824 Search in Google Scholar

M. O. G. Ferreira, I. S. Lima, A. B. Ribeiro, A. O. Lobo, M. S. Rizzo, J. A. Osajima, L. M. Estevinho and E. C. Silva-Filho, Biocompatible gels of chitosan-buriti oil for potential wound healing applications, Materials 13(8) (2020) Article ID 1977 (17 pages); https://doi.org/10.3390/ma13081977 Search in Google Scholar

R. Lungu, M. A. Paun, D. Peptanariu, D. Ailincai, L. Marin, M. V. Nichita, V. A. Paun and V. P. Paun, Biocompatible chitosan-based hydrogels for bioabsorbable wound dressings, Gels 8(2) (2020) Article ID 107 (14 pages); https://doi/10.3390/gels8020107 Search in Google Scholar

C. Samano-Valencia, G. A. Martínez-Castañón, F. Martínez-Gutiérrez, F. Ruiz, J. F. Toro-Vázquez, J. A. Morales-Rueda, L. F. Espinosa-Cristóbal, N. V. Zavala Alonso and N. Niño Martínez. Characterization and biocompatibility of chitosan gels with silver and gold nanoparticles, J. Nanomaterials (2014) Article ID 543419 (11 pages); https://doi.org/10.1155/2014/543419 Search in Google Scholar

G. Cai, H. Jiang, K. Tu, L. Wang and K. Zhu. A facile route for regioselective conjugation of organo-soluble polymers onto chitosan, Macromol. Biosci. 9 (2009) 256–261; https://doi.org/10.1002/mabi.200800153 Search in Google Scholar

R. D. Maalihan, Q. Chen, J. R. H. Sta, B. B. Pajarito, H. Tamura and R. C. Advincula, On the use of surfactant-complexed chitosan for toughening 3D printed polymethacrylate composites, Macromol. Mater. Eng. 306 (2020) Article ID 2000448 (12 pages); https://doi.org/10.1002/mame.202000448 Search in Google Scholar

eISSN:
1846-9558
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Pharmacy, other