Jet Cutting Technique for the Production of Chitosan Aerogel Microparticles Loaded with Vancomycin

被引:45
作者
Lopez-Iglesias, Clara [1 ,2 ]
Barros, Joana [3 ,4 ]
Ardao, Ines [5 ]
Gurikov, Pavel [6 ]
Monteiro, Fernando J. [3 ,4 ]
Smirnova, Irina [7 ]
Alvarez-Lorenzo, Carmen [1 ,2 ]
Garcia-Gonzalez, Carlos A. [1 ,2 ]
机构
[1] Univ Santiago de Compostela, Fac Pharm Agrupac Estrateg Mat AeMAT, I D Farma Grp GI 1645, Dept Pharmacol Pharm & Pharmaceut Technol, E-15782 Santiago De Compostela, Spain
[2] Univ Santiago de Compostela, Hlth Res Inst Santiago de Compostela IDIS, E-15782 Santiago De Compostela, Spain
[3] Univ Porto, Inst Nacl Engn Biomed, Inst Invest & Inovacao Saude, P-4200135 Porto, Portugal
[4] Univ Porto, FEUP, P-4200135 Porto, Portugal
[5] Univ Santiago de Compostela, Ctr Res Mol Med & Chron Dis CiMUS, BioFarma Res Grp, E-15782 Santiago De Compostela, Spain
[6] Lab Dev & Modelling Novel Nanoporous Mat, Eissendorfer Str 38, D-21073 Hamburg, Germany
[7] Hamburg Univ Technol, Inst Thermal Separat Proc, Eissendorfer Str 38, D-21073 Hamburg, Germany
关键词
biopolymers; polymer processing; biomedical applications; wound treatment; chitosan; aerogels; SPHERICAL BEADS; MICROSPHERES; WOUNDS;
D O I
10.3390/polym12020273
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Biopolymer-based aerogels can be obtained by supercritical drying of wet gels and endowed with outstanding properties for biomedical applications. Namely, polysaccharide-based aerogels in the form of microparticles are of special interest for wound treatment and can also be loaded with bioactive agents to improve the healing process. However, the production of the precursor gel may be limited by the viscosity of the polysaccharide initial solution. The jet cutting technique is regarded as a suitable processing technique to overcome this problem. In this work, the technological combination of jet cutting and supercritical drying of gels was assessed to produce chitosan aerogel microparticles loaded with vancomycin HCl (antimicrobial agent) for wound healing purposes. The resulting aerogel formulation was evaluated in terms of morphology, textural properties, drug loading, and release profile. Aerogels were also tested for wound application in terms of exudate sorption capacity, antimicrobial activity, hemocompatibility, and cytocompatibility. Overall, the microparticles had excellent textural properties, absorbed high amounts of exudate, and controlled the release of vancomycin HCl, providing sustained antimicrobial activity.
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页数:13
相关论文
共 53 条
[21]  
Iqbal A, 2017, WORLD J PLAST SURG, V6, P9
[22]   Hydrogel wound dressings for bioactive treatment of acute and chronic wounds [J].
Koehler, Julia ;
Brandl, Ferdinand P. ;
Goepferich, Achim M. .
EUROPEAN POLYMER JOURNAL, 2018, 100 :1-11
[23]   Microparticles and nanoparticles for drug delivery [J].
Kohane, Daniel S. .
BIOTECHNOLOGY AND BIOENGINEERING, 2007, 96 (02) :203-209
[24]   Aerogels and metal-organic frameworks for environmental remediation and energy production [J].
Kumar, Amit ;
Rana, Anamika ;
Sharma, Gaurav ;
Sharma, Shweta ;
Naushad, Mu. ;
Mola, Genene Tessema ;
Dhiman, Pooja ;
Stadler, Florian J. .
ENVIRONMENTAL CHEMISTRY LETTERS, 2018, 16 (03) :797-820
[25]   Topical vancomycin and its effect on survival and migration of osteoblasts, fibroblasts, and myoblasts: An in vitro study [J].
Liu, James X. ;
Bravo, Dalibel ;
Buza, John ;
Kirsch, Thorsten ;
Kennedy, Oran ;
Rokito, Andrew ;
Zuckerman, Joseph D. ;
Virk, Mandeep S. .
JOURNAL OF ORTHOPAEDICS, 2018, 15 (01) :53-58
[26]   Vancomycin-loaded chitosan aerogel particles for chronic wound applications [J].
Lopez-Iglesias, Clara ;
Barros, Joana ;
Ardao, Ines ;
Monteiro, Fernando J. ;
Alvarez-Lorenzo, Carmen ;
Gomez-Amoza, Jose L. ;
Garcia-Gonzalez, Carlos A. .
CARBOHYDRATE POLYMERS, 2019, 204 :223-231
[27]   Growing Neural PC-12 Cell on Crosslinked Silica Aerogels Increases Neurite Extension in the Presence of an Electric Field [J].
Lynch, Kyle J. ;
Skalli, Omar ;
Sabri, Firouzeh .
JOURNAL OF FUNCTIONAL BIOMATERIALS, 2018, 9 (02)
[28]   Synthesis and biomedical applications of aerogels: Possibilities and challenges [J].
Maleki, Hajar ;
Duraes, Luisa ;
Garcia-Gonzalez, Carlos A. ;
del Gaudio, Pasquale ;
Portugal, Antonio ;
Mahmoudi, Morteza .
ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2016, 236 :1-27
[29]   Polysaccharide-Based Aerogel Bead Production via Jet Cutting Method [J].
Preibisch, Imke ;
Niemeyer, Philipp ;
Yusufoglu, Yusuf ;
Gurikov, Pavel ;
Milow, Barbara ;
Smirnova, Irina .
MATERIALS, 2018, 11 (08)
[30]  
Prufse U, 2002, LANDBAUFORSCHUNG SH, V241, P1