Development and Functionalization of a Novel Chitosan-Based Nanosystem for Enhanced Drug Delivery

被引:4
|
作者
Grierosu, Carmen [1 ,2 ]
Calin, Gabriela [1 ]
Damir, Daniela [3 ]
Marcu, Constantin [4 ,5 ]
Cernei, Radu [6 ]
Zegan, Georgeta [6 ]
Anistoroaei, Daniela [6 ]
Moscu, Mihaela [6 ]
Carausu, Elena Mihaela [6 ]
Duceac, Letitia Doina [1 ,4 ,7 ]
Dabija, Marius Gabriel [6 ,7 ]
Mitrea, Geta [4 ,8 ]
Gutu, Cristian [4 ,9 ]
Goroftei, Elena Roxana Bogdan [4 ,10 ]
Eva, Lucian [1 ,7 ]
机构
[1] Apollonia Univ Iasi, Fac Dent Med, 11 Pacurari Str, Iasi 700511, Romania
[2] Clin Rehabil Hosp, Orthopaed Trauma Surg Clin, 14 Pantelimon Halipa Str, Iasi 700661, Romania
[3] Grigore T Popa Univ Med & Pharm Iasi, Fac Med, 16 Univ Str, Iasi 700115, Romania
[4] Univ Dunarea de Jos, Fac Med & Pharm, 47 Domneasca Str, Galati 800008, Romania
[5] Saarbrucken Caritas Klinkum, St Theresia Univ Hosp, Saarbrucken Caritas Klinkum St, D-66113 Saarbrucken, Germany
[6] Grigore T Popa Univ Med & Pharm Iasi, Fac Dent Med, 16 Univ Str, Iasi 700115, Romania
[7] Prof Dr Nicolae Oblu Neurosurg Hosp Iasi, 2 Ateneului Str, Iasi 700309, Romania
[8] St Ap Andrei Emergency Clin Hosp, 177 Brailei Str, Galati 800578, Romania
[9] Dr Aristide Serfioti Emergency Mil Hosp, 199 Traian Str, Galati 800150, Romania
[10] Sf Ioan Emergency Clin Hosp, 2 Gheorghe Asachi Str, Galati 800494, Romania
关键词
polymer composite; bioactivity; biodegradability; metronidazole; biomedical application; NANOPARTICLES; CURCUMIN;
D O I
10.3390/jfb14110538
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Nowadays, infection diseases are one of the most significant threats to humans all around the world. An encouraging strategy for solving this issue and fighting resistant microorganisms is to develop drug carriers for a prolonged release of the antibiotic to the target site. The purpose of this work was to obtain metronidazole-encapsulated chitosan nanoparticles using an ion gelation route and to evaluate their properties. Due to the advantages of the ionic gelation method, the synthesized polymeric nanoparticles can be applied in various fields, especially pharmaceutical and medical. Loading capacity and encapsulation efficiency varFied depending on the amount of antibiotic in each formulation. Physicochemical characterization using scanning electron microscopy revealed a narrow particle size distribution where 90% of chitosan particles were 163.7 nm in size and chitosan-loaded metronidazole nanoparticles were 201.3 nm in size, with a zeta potential value of 36.5 mV. IR spectra revealed characteristic peaks of the drug and polymer nanoparticles. Cell viability assessment revealed that samples have no significant impact on tested cells. Release analysis showed that metronidazole was released from the chitosan matrix for 24 h in a prolonged course, implying that antibiotic-encapsulated polymer nanostructures are a promising drug delivery system to prevent or to treat various diseases. It is desirable to obtain new formulations based on drugs encapsulated in nanoparticles through different preparation methods, with reduced cytotoxic potential, in order to improve the therapeutic effect through sustained and prolonged release mechanisms of the drug correlated with the reduction of adverse effects.
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页数:13
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