Volkov Alexey V, Muraev Alexander A, Zharkova Irina I, Voinova Vera V, Akoulina Elizaveta A, Zhuikov Vsevolod A, Khaydapova Dolgor D, Chesnokova Dariana V, Menshikh Ksenia A, Dudun Andrej A, Makhina Tatiana K, Bonartseva Garina A, Asfarov Teymur F, Stamboliev Ivan A, Gazhva Yulia V, Ryabova Valentina M, Zlatev Lubomir H, Ivanov Sergey Y, Shaitan Konstantin V, Bonartsev Anton P
The Peoples' Friendship University of Russia, Miklukho-Maklaya St. 6, 117198 Moscow, Russia; N.N. Priorov National Medical Research Center of Traumatology and Orthopedics of the Ministry of Health of the Russian Federation, Priorova Str. 10, 127299 Moscow, Russia.
The Peoples' Friendship University of Russia, Miklukho-Maklaya St. 6, 117198 Moscow, Russia; I.M. Sechenov First Moscow State Medical University (Sechenov University), Trubetskaya St. 8/2, 119991, Moscow, Russia.
Mater Sci Eng C Mater Biol Appl. 2020 Sep;114:110991. doi: 10.1016/j.msec.2020.110991. Epub 2020 Apr 25.
A critical-sized calvarial defect in rats is employed to reveal the osteoinductive properties of biomaterials. In this study, we investigate the osteogenic efficiency of hybrid scaffolds based on composites of a biodegradable and biocompatible polymer, poly(3-hydroxybutyrate) (PHB) with hydroxyapatite (HA) filled with alginate (ALG) hydrogel containing mesenchymal stem cells (MSCs) on the regeneration of the critical-sized radial defect of the parietal bone in rats. The scaffolds based on PHB and PHB/HA with desired shapes were prepared by two-stage salt leaching technique using a mold obtained by three-dimensional printing. To obtain PHB/HA/ALG/MSC scaffolds seeded with MSCs, the scaffolds were filled with ALG hydrogel containing MSCs; acellular PHB/ALG and PHB/ALG filled with empty ALG hydrogel were prepared for comparison. The produced scaffolds have high porosity and irregular interconnected pore structure. PHB/HA scaffolds supported MSC growth and induced cell osteogenic differentiation in a regular medium in vitro that was manifested by an increase in ALP activity and expression of the CD45 phenotype marker. The data of computed tomography and histological studies showed 94% and 92%, respectively, regeneration of critical-sized calvarial bone defect in vivo at 28th day after implantation of MSC-seeded PHB/HA/ALG/MSC scaffolds with 3.6 times higher formation of the main amount of bone tissue at 22-28 days in comparison with acellular PHB/HA/ALG scaffolds that was shown at the first time by fluorescent microscopy using the original technique of intraperitoneal administration of fluorescent dyes to living postoperative rats. The obtained in vivo results can be associated with the MSC-friendly microstructure and in vitro osteogenic properties of PHB/HA base-scaffolds. Thus, the obtained data demonstrate the potential of MSCs encapsulated in the bioactive biopolymer/mineral/hydrogel scaffold to improve the bone regeneration process in critical-sized bone defects.
利用大鼠临界尺寸的颅骨缺损来揭示生物材料的骨诱导特性。在本研究中,我们研究了基于可生物降解且生物相容的聚合物聚(3-羟基丁酸酯)(PHB)与羟基磷灰石(HA)的复合材料,并填充含有间充质干细胞(MSC)的海藻酸盐(ALG)水凝胶的混合支架对大鼠顶骨临界尺寸径向缺损再生的成骨效率。通过使用三维打印获得的模具,采用两步盐析技术制备了具有所需形状的基于PHB和PHB/HA的支架。为了获得接种有MSC的PHB/HA/ALG/MSC支架,将支架填充含有MSC的ALG水凝胶;制备无细胞的PHB/ALG和填充有空ALG水凝胶的PHB/ALG用于比较。所制备的支架具有高孔隙率和不规则的相互连接的孔结构。PHB/HA支架在体外常规培养基中支持MSC生长并诱导细胞成骨分化,这表现为碱性磷酸酶(ALP)活性增加和CD45表型标志物表达。计算机断层扫描和组织学研究数据显示,在植入接种有MSC的PHB/HA/ALG/MSC支架后第28天,体内临界尺寸颅骨缺损的再生率分别为94%和92%,与无细胞的PHB/HA/ALG支架相比,在22 - 28天主要骨组织形成量高出3.6倍,这是首次通过使用向术后存活大鼠腹腔内注射荧光染料的原始技术的荧光显微镜观察到的。体内获得的结果可能与PHB/HA基础支架对MSC友好的微观结构和体外成骨特性有关。因此,所获得的数据证明了封装在生物活性生物聚合物/矿物质/水凝胶支架中的MSC在改善临界尺寸骨缺损的骨再生过程中的潜力。