Kotha Arun K, Nicholson John W, Booth Samantha E
Department of Pharmaceutical Sciences, College of Pharmacy, Mercer University, Atlanta, GA 30341, USA.
Bluefield Centre for Biomaterials, 152-160 City Road, London EC1V 2NX, UK.
Biomedicines. 2023 Jan 18;11(2):250. doi: 10.3390/biomedicines11020250.
Zinc phosphate cement is used in dentistry to lute crowns and bridges. So far, its biocompatibility for other applications has not been studied. This paper reports the biocompatibility of zinc phosphate towards MG63 cells, testing both the material (discs; 3 mm diameter × 1 mm thick) and leachate from the cement. Cell viability was determined using an MTT assay, and cytotoxicity from the effects of leachate, studied in triplicate. Microscopy (optical and scanning electron) determined the morphology and proliferation of cells attached to zinc phosphate. ICP-OES measured element release into leachate, and anti-microbial behaviour was determined against cultured on a Brain Heart Infusion agar using cement discs (3 mm diameter × 1 mm thick). Zones of inhibition were measured after 72 h. MG63 cells proliferated on zinc phosphate surfaces and retained their morphology. The cells were healthy and viable as shown by an MTT assay, both on cement and in leachate. High levels of phosphorus but low levels of zinc were released into leachate. The cement showed minimal antimicrobial activity against , probably due to the long maturation times used. Zinc phosphate cement was found to be biocompatible towards MG63 cells, which indicates that it may be capable of use in bone contact applications.
磷酸锌水门汀在牙科用于粘结牙冠和牙桥。到目前为止,尚未研究其在其他应用中的生物相容性。本文报道了磷酸锌对MG63细胞的生物相容性,测试了该材料(直径3毫米×厚1毫米的圆盘)以及水门汀浸出液。使用MTT法测定细胞活力,对浸出液的影响进行细胞毒性研究,一式三份。显微镜检查(光学显微镜和扫描电子显微镜)确定了附着在磷酸锌上的细胞的形态和增殖情况。电感耦合等离子体发射光谱法测量元素释放到浸出液中的情况,并使用直径3毫米×厚1毫米的水门汀圆盘在脑心浸液琼脂上培养,测定其抗菌性能。72小时后测量抑菌圈。MG63细胞在磷酸锌表面增殖并保持其形态。MTT法显示,无论是在水门汀上还是在浸出液中,细胞都是健康且有活力的。浸出液中释放出高水平的磷但低水平的锌。该水门汀对[具体菌种未提及]显示出最小的抗菌活性,可能是由于使用的成熟时间较长。发现磷酸锌水门汀对MG63细胞具有生物相容性,这表明它可能能够用于与骨接触的应用中。