Department of Science, University of Basilicata, Viale dell'Ateneo Lucano 10, 85100, Potenza, Italy.
Chemistry. 2022 Oct 18;28(58):e202201959. doi: 10.1002/chem.202201959. Epub 2022 Aug 24.
Hyaluronic acid or hyaluronan (HA) and elastin-inspired peptides (EL) have been widely recognized as bioinspired materials useful in biomedical applications. The aim of the present work is the production of electrospun scaffolds as wound dressing materials which would benefit from synergic action of the bioactivity of elastin peptides and the regenerative properties of hyaluronic acid. Taking advantage of thiol-ene chemistry, a bioactive elastin peptide was successfully conjugated to methacrylated hyaluronic acid (MAHA) and electrospun together with poly-D,L-lactide (PDLLA). To the best of our knowledge, limited reports on peptide-conjugated hyaluronic acid were described in literature, and none of these was employed for the production of electrospun scaffolds. The conformational studies carried out by Circular Dichroism (CD) on the bioconjugated compound confirmed the preservation of secondary structure of the peptide after conjugation while Scanning Electron Microscopy (SEM) revealed the supramolecular structure of the electrospun scaffolds. Overall, the study demonstrates that the bioconjugation of hyaluronic acid with the elastin peptide improved the electrospinning processability with improved characteristics in terms of morphology of the final scaffolds.
透明质酸或透明质酸钠(HA)和弹性蛋白启发肽(EL)已被广泛认为是在生物医学应用中有用的仿生材料。本工作的目的是生产用作伤口敷料材料的静电纺丝支架,该支架将受益于弹性蛋白肽的生物活性和透明质酸的再生特性的协同作用。利用硫醇-烯化学,成功地将生物活性弹性蛋白肽与甲基丙烯酰化透明质酸(MAHA)缀合,并与聚-D,L-乳酸(PDLLA)一起进行静电纺丝。据我们所知,文献中有限的关于肽缀合透明质酸的报道,并且这些报道都没有用于生产静电纺丝支架。通过圆二色性(CD)对生物缀合物进行的构象研究证实了肽在缀合后其二级结构得以保留,而扫描电子显微镜(SEM)则揭示了静电纺丝支架的超分子结构。总的来说,该研究表明,透明质酸与弹性蛋白肽的生物缀合改善了静电纺丝的可加工性,并提高了最终支架的形态特征。