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Optimization by Central Composite Experimental Design of the Synthesis of Physically Crosslinked Chitosan Spheres

机译:中央复合实验设计对物理交联壳聚糖球体合成的优化

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摘要

Chitosan (CS) has special properties such as biocompatibility, biodegradability, antibacterial, and biological activity which make this material is currently studied in various applications, including tissue engineering. There are different methods to modify the morphology of CS. Most use chemical crosslinking agents, however, those methods have disadvantages such as low polymer degradability and unwanted side effects. The objective of this research was to obtain CS spheres through the physical crosslinking of commercial CS without using crosslinking agents through a simple coacervation method. A central composite experimental design was used to optimize the synthesis of the CS spheres and by the response surface methodology it was possible to obtain CS spheres with the smallest diameter and the most regular morphology. With the optimal formulation (CS solution 1.8% (w/v), acetic acid (AAC) solution 1% (w/v), sodium hydroxide (NaOH) solution 13% (w/v), relative humidity of (10%) and needle diameter of 0.6 mm), a final sphere diameter of 1 mm was obtained. Spheres were characterized by physical, chemical, thermal, and biological properties in simulated body fluid (SBF). The results obtained allowed us to understand the effect of the studied variables on the spheres’ diameter. An optimized condition facilitated the change in the morphology of the CS while maintaining its desirable properties for use in tissue engineering.
机译:壳聚糖(CS)具有特殊的性质,如生物相容性,生物分解性,抗菌和生物活性,其在各种应用中研究了该材料,包括组织工程。有不同的方法来修改CS的形态。然而,大多数使用化学交联剂,这些方法具有低聚物可降解性和不需要的副作用等缺点。该研究的目的是通过商业Cs的物理交联,通过简单的凝聚方法通过商业Cs的物理交联获得Cs球体。中央复合实验设计用于优化Cs球体的合成以及通过响应面方法,可以获得具有最小直径和最常形态的Cs球体。具有最佳制剂(CS溶液1.8%(W / V),乙酸(AAC)溶液1%(w / v),氢氧化钠(NaOH)溶液13%(w / v),相对湿度(10%)并且针直径为0.6毫米),获得最终球直径为1mm。通过模拟体液(SBF)的物理,化学,热和生物学特性以球形为特征。获得的结果允许我们了解研究变量对球体直径的影响。优化的条件促进了CS形态的变化,同时保持其在组织工程中使用的理想性质。

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