Luong Thai Duong, Zoughaib Mohamed, Garifullin Ruslan, Kuznetsova Svetlana, Guler Mustafa O, Abdullin Timur I
Institute of Fundamental Medicine and Biology, Kazan Federal University, Kazan 420008, Russia.
Institute of Materials Science and Nanotechnology, Bilkent University, Ankara 06800, Turkey.
ACS Appl Bio Mater. 2020 Feb 17;3(2):1116-1128. doi: 10.1021/acsabm.9b01059. Epub 2020 Jan 13.
Oligopeptides are versatile cell modulators resembling pleiotropic activities of ECM proteins and growth factors. Studying the role of cell-instructive peptide signals within 3D scaffolds, yet poorly known, requires effective approaches to introducing bioactive sequences into appropriate materials. We synthesized RGD and GHK motif based peptides and linked to the terminal adamantyl group (Ad) and their fluorescent derivatives and . Poly(hydroxyethyl methacrylate) (pHEMA) cryogels with additional PEG/β-cyclodextrin (CD) units were prepared as an inert macroporous scaffold capable to bind the adamantylated peptides via affinity CD-Ad complexation. According to toluidine blue staining, the CD moieties were effectively and stably incorporated in the pHEMA cryogels at nanomolar amounts per milligram of material. The CD component gradually increased the thickness and swelling ability of the polymer walls of cryogels, resulting in a noticeable decrease in macropore size and modulation of viscoelastic properties. The labeled peptides exhibited fast kinetics of specific binding to the CD-modified cryogels and were simultaneously immobilized by coincubation. The peptide loading approached ca. 0.31 mg per cm of cryogel sheet. A well-defined mitogenic effect of the immobilized peptides ( < ≪ ) was revealed toward 3T3 and PC-12 cells. The synergistic action of RGD and GHK peptides induced a profound change in cell behavior/morphology attributed to a growth-factor-like activity of the composition. Altogether, our results provide an effective procedure for the preparation of CD-modified pHEMA cryogels and their uniform in situ functionalization with bioactive peptide(s) of interest and an informative study of cellular responses in the functionalized scaffolds.
寡肽是多功能细胞调节剂,类似于细胞外基质蛋白和生长因子的多效性活性。研究3D支架中具有细胞指导作用的肽信号的作用(目前仍知之甚少),需要有效的方法将生物活性序列引入合适的材料中。我们合成了基于RGD和GHK基序的肽,并将其与末端金刚烷基(Ad)及其荧光衍生物相连。制备了带有额外PEG/β-环糊精(CD)单元的聚甲基丙烯酸羟乙酯(pHEMA)冷冻凝胶,作为一种惰性大孔支架,能够通过亲和性CD-Ad络合作用结合金刚烷基化肽。根据甲苯胺蓝染色,CD部分以每毫克材料纳摩尔量有效且稳定地掺入pHEMA冷冻凝胶中。CD组分逐渐增加了冷冻凝胶聚合物壁的厚度和溶胀能力,导致大孔尺寸明显减小,并调节了粘弹性性能。标记的肽表现出与CD修饰的冷冻凝胶特异性结合的快速动力学,并通过共孵育同时固定。肽负载量接近每平方厘米冷冻凝胶片约0.31毫克。固定化肽(<<)对3T3和PC-12细胞显示出明确的促有丝分裂作用。RGD和GHK肽的协同作用诱导了细胞行为/形态的深刻变化,这归因于该组合物类似生长因子的活性。总之,我们的结果为制备CD修饰的pHEMA冷冻凝胶及其用感兴趣的生物活性肽进行均匀原位功能化提供了一种有效的方法,并对功能化支架中的细胞反应进行了有益的研究。