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牙龈成纤维细胞和口腔黏膜角质形成细胞对3D打印口腔器械的体外细胞毒性和炎症反应

In Vitro Cytotoxic and Inflammatory Response of Gingival Fibroblasts and Oral Mucosal Keratinocytes to 3D Printed Oral Devices.

作者信息

Kollmuss Maximilian, Edelhoff Daniel, Schwendicke Falk, Wuersching Sabina Noreen

机构信息

Department of Conservative Dentistry and Periodontology, University Hospital, LMU Munich, Goethestrasse 70, 80336 Munich, Germany.

Department of Prosthetic Dentistry, University Hospital, LMU Munich, Goethestrasse 70, 80336 Munich, Germany.

出版信息

Polymers (Basel). 2024 May 9;16(10):1336. doi: 10.3390/polym16101336.

Abstract

The purpose of this study was to examine the biocompatibility of 3D printed materials used for additive manufacturing of rigid and flexible oral devices. Oral splints were produced and finished from six printable resins (pairs of rigid/flexible materials: KeySplint Hard [KR], KeySplint Soft [KF], V-Print Splint [VR], V-Print Splint Comfort [VF], NextDent Ortho Rigid [NR], NextDent Ortho Flex [NF]), and two types of PMMA blocks for subtractive manufacturing (Tizian Blank PMMA [TR], Tizian Flex Splint Comfort [TF]) as controls. The specimens were eluted in a cell culture medium for 7d. Human gingival fibroblasts (hGF-1) and human oral mucosal keratinocytes (hOK) were exposed to the eluates for 24 h. Cell viability, glutathione levels, apoptosis, necrosis, the cellular inflammatory response (IL-6 and PGE secretion), and cell morphology were assessed. All eluates led to a slight reduction of hGF-1 viability and intracellular glutathione levels. The strongest cytotoxic response of hGF-1 was observed with KF, NF, and NR eluates ( < 0.05 compared to unexposed cells). Viability, caspase-3/7 activity, necrosis levels, and IL-6/PGE secretion of hOK were barely affected by the materials. All materials showed an overall acceptable biocompatibility. hOK appeared to be more resilient to noxious agents than hGF-1 in vitro. There is insufficient evidence to generalize that flexible materials are more cytotoxic than rigid materials. From a biological point of view, 3D printing seems to be a viable alternative to milling for producing oral devices.

摘要

本研究的目的是检验用于增材制造刚性和柔性口腔器械的3D打印材料的生物相容性。使用六种可打印树脂(刚性/柔性材料对:KeySplint Hard [KR]、KeySplint Soft [KF]、V-Print Splint [VR]、V-Print Splint Comfort [VF]、NextDent Ortho Rigid [NR]、NextDent Ortho Flex [NF])制作并完成口腔夹板,并使用两种用于减材制造的PMMA块(Tizian Blank PMMA [TR]、Tizian Flex Splint Comfort [TF])作为对照。将标本在细胞培养基中洗脱7天。将人牙龈成纤维细胞(hGF-1)和人口腔黏膜角质形成细胞(hOK)暴露于洗脱液中24小时。评估细胞活力、谷胱甘肽水平、细胞凋亡、坏死、细胞炎症反应(IL-6和PGE分泌)以及细胞形态。所有洗脱液均导致hGF-1活力和细胞内谷胱甘肽水平略有降低。KF、NF和NR洗脱液对hGF-1的细胞毒性反应最强(与未暴露细胞相比,P<0.05)。hOK的活力、caspase-3/7活性、坏死水平以及IL-6/PGE分泌几乎不受材料影响。所有材料总体上显示出可接受的生物相容性。在体外,hOK似乎比hGF-1对有害物质更具抵抗力。没有足够的证据可以一概而论地说柔性材料比刚性材料的细胞毒性更大。从生物学角度来看,3D打印似乎是一种可行的替代铣削的口腔器械生产方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1221/11125196/100e1e8f4838/polymers-16-01336-g003.jpg

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