Modelling methacrylated chitosan hydrogel properties through an experimental design approach: from composition to material properties

被引:5
作者
Bucciarelli, Alessio [1 ]
Selicato, Nora [2 ]
Coricciati, Chiara [2 ,3 ]
Rainer, Alberto [2 ,4 ]
Capodilupo, Agostina Lina [2 ]
Gigli, Giuseppe [2 ,3 ]
Moroni, Lorenzo [5 ]
Polini, Alessandro [2 ]
Gervaso, Francesca [2 ]
机构
[1] IRCCS Ist Ortoped Rizzoli, Lab RAMSES, Via Barbiano 1-10, I-40136 Bologna, Italy
[2] Univ Campus Ecotekne, CNR NANOTEC Inst Nanotechnol, Natl Council Res, Via Monteroni, I-73100 Lecce, Italy
[3] Univ Salento, Dipartimento Matemat & Fis E Giorgi, Campus Ecotekne,Via Monteroni, I-73100 Lecce, Italy
[4] Univ Campus Biomed Roma, Dept Engn, Via Alvaro Portillo 21, I-00128 Rome, Italy
[5] Maastricht Univ, MERLN Inst Technol Inspired Regenerat Med, Complex Tissue Regenerat Dept, Univ singel 40, NL-6229ER Maastricht, Netherlands
关键词
MECHANICAL CHARACTERIZATION; INFRARED-SPECTROSCOPY; HIGH-STRENGTH; SCAFFOLDS; SOLUBILITY; RELEASE; ION;
D O I
10.1039/d4tb00670d
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Hydrogels of biopolymers are gradually substituting synthetic hydrogels in tissue engineering applications due to their properties. However, biopolymeric hydrogels are difficult to standardize because of the intrinsic variability of the material and the reversibility of physical crosslinking processes. In this work, we synthesized a photocrosslinkable derivative of chitosan (Cs), namely methacrylated chitosan (CsMA), in which the added methacrylic groups allow the formation of hydrogels through radical polymerization triggered by UV exposure. We then performed a systematic study to link the physical properties of the materials to its preparation parameters to standardize its preparation according to specific applications. We studied the properties of CsMA solutions and the derived hydrogels using a statistical method, namely, response surface method, which allowed us to build empirical models describing material properties in terms of several selected processing factors. In particular, we studied the viscosity of CsMA solutions as a function of CsMA concentration, temperature, and shear rate, while hydrogel compression modulus, morphology, degradation and solubilization were investigated as a function of CsMA concentration, photoinitiator concentration and UV exposure. CsMA solutions resulted in shear thinning and were thus suitable for extrusion-based 3D printing. The CsMA hydrogel was found to be highly tunable, with a stiffness in the 12-64 kPa range, and was stable over a long timeframe (up to 60 days). Finally, the possibility to engineer hydrogel stiffness through an empirical model allowed us to hypothesize a number of possible applications based on the mechanical properties of several biological tissues reported in the literature. Methacrylated chitosan hydrogels properties are modelled using a statistical approach. The obtained empirical equations allow to fine tune the properties by changing the hydrogel composition and the fabrication variables.
引用
收藏
页码:10221 / 10240
页数:21
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