Di Tinco Rosanna, Consolo Ugo, Pisciotta Alessandra, Orlandi Giulia, Bertani Giulia, Nasi Milena, Bertacchini Jessika, Carnevale Gianluca
Department of Surgery, Medicine, Dentistry and Morphological Sciences with Interest in Transplant, Oncology and Regenerative Medicine, University of Modena and Reggio Emilia, 41125 Modena, Italy.
Operative Unit of Dentistry and Maxillofacial Surgery, Department Integrated Activity-Specialist Surgeries, University-Hospital of Modena, 41125 Modena, Italy.
Polymers (Basel). 2022 May 30;14(11):2223. doi: 10.3390/polym14112223.
Bone substitute biomaterials (BSBs) represent a promising alternative to bone autografts, due to their biocompatibility, osteoconduction, slow resorption rates, and the ability to define and maintain volume for bone gain in dentistry. Many biomaterials are tailored to provide structural and biological support for bone regeneration, and allow the migration of bone-forming cells into the bone defect. Neural crest-derived stem cells isolated from human dental pulp (hDPSCs) represent a suitable stem cell source to study the biological effects of BSBs on osteoprogenitor cells involved in the physiological bone regenerative processes. This study aimed to evaluate how three different BSBs affect the stem cell properties, osteogenic differentiation, and inflammatory properties of hDPSCs. Our data highlight that BSBs do not alter cell proliferation and stemness markers expression, nor induce any inflammatory responses. Bone metabolism data show that hDPSCs exposed to the three BSBs distinctively secrete the factors supporting osteoblast activity and osteoclast activity. Our data indicate that (i) hDPSCs are a suitable stem cell source to study the effects of BSBs, and that (ii) the formulation of BSBs may condition the biological properties of stem cells, suggesting their versatile suitability to different dentistry applications.
骨替代生物材料(BSBs)由于其生物相容性、骨传导性、缓慢的吸收速率以及在牙科中为增加骨量而确定和维持体积的能力,代表了一种有前景的自体骨替代物。许多生物材料经过定制,可为骨再生提供结构和生物学支持,并允许成骨细胞迁移到骨缺损处。从人牙髓(hDPSCs)中分离出的神经嵴衍生干细胞是一种合适的干细胞来源,可用于研究BSBs对参与生理性骨再生过程的骨祖细胞的生物学效应。本研究旨在评估三种不同的BSBs如何影响hDPSCs的干细胞特性、成骨分化和炎症特性。我们的数据表明,BSBs不会改变细胞增殖和干性标志物的表达,也不会诱导任何炎症反应。骨代谢数据显示,暴露于三种BSBs的hDPSCs分别分泌支持成骨细胞活性和破骨细胞活性的因子。我们的数据表明,(i)hDPSCs是研究BSBs效应的合适干细胞来源,并且(ii)BSBs的配方可能会调节干细胞的生物学特性,表明它们对不同牙科应用具有广泛的适用性。