Microscopic and elemental analysis of jaw bone tissue in injury

N. N. Kataeva, N. G. Sarkisyan, N. S. Chumakov, K. A. Khlystova, O. Medvedeva, A. S. Shmygalev
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Abstract

Since the jawbone tissue is injured at the stage of metal dental implant introduction, the problem of inflammatory complication development leading to a breakdown in osseointegration remains relevant. Of interest are the immunological mechanisms of inflammatory process development during the emission of metal nanoparticles, as well as the mechanisms of its subsidence after the removal of a metal object. Microscopic and elemental analysis of the bone tissue of the Wistar rat lower jaw after artificial traumatization was carried out. During the experiment, the situation of presence of a metal foreign body in the bone bed was simulated. An insulin needle was injected into the connective tissue of the lower jaw, followed by its removal after seven days. Microscopic analysis of bone tissue was performed using a Tesscan Vega 4 scanning electron microscope. The teeth alveoli cortical layer surface, connection of the jaws with a gap, stratification of the cartilaginous layer were determined at low magnification in direct projection. Using higher magnification in the direct projection there are visible dense-structural crystalline inclusions, foci of necrosis in the area of junctions of the jaws alveolar processes. The elemental composition of bone tissue was obtained by atomic emission spectroscopy by iCAP 6300 Duo. In the test sample, the quantitative ratio of calcium and phosphorus was 1.68, which slightly exceeds the optimal value of 1.67. An upward change in this ratio indicates a decrease in phosphorus level, which can be interpreted as local osteoporosis. In addition, the following elements were found: Bi, Ga, Pb, Ti, Zn in the amount of 0.03-0.06 mass percent. The list of these elements corresponds to the chemical composition of an insulin needle, indicating the penetration of metal particles into bone bed tissues. The emission of nanoparticles and their subsequent association to micro- and submicron sizes, their persistence, as well as biocorrosion in areas of active bone formation can be a trigger for the development of an aseptic inflammatory process. This effect is due to both a direct damaging factor and an indirect effect through specific signal molecules produced in response to tissue damage.
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损伤颌骨组织的显微及元素分析
由于颌骨组织在金属种植体植入阶段受到损伤,炎症并发症的发展导致骨整合的破坏仍然是相关的问题。令人感兴趣的是在金属纳米颗粒发射过程中炎症过程发展的免疫学机制,以及金属物体移除后其沉降的机制。对人工创伤后Wistar大鼠下颌骨骨组织进行了显微和元素分析。在实验过程中,模拟了骨床中存在金属异物的情况。将胰岛素针注射到下颚的结缔组织中,7天后取出。使用Tesscan Vega 4扫描电子显微镜对骨组织进行显微分析。低倍镜下直接投影测定牙槽皮质层表面、颌骨间隙连接、软骨层分层。用高倍镜直接投影可见结构致密的结晶包裹体,在颌骨牙槽突连接处可见坏死灶。采用icap6300 Duo原子发射光谱法测定骨组织的元素组成。在试验样品中,钙磷定量比值为1.68,略高于最佳值1.67。该比值上升表明磷水平下降,可解释为局部骨质疏松。此外,还发现了Bi、Ga、Pb、Ti、Zn等元素的质量分数为0.03 ~ 0.06%。这些元素的列表对应于胰岛素针的化学成分,表明金属颗粒渗透到骨床组织中。纳米颗粒的发射及其随后与微微米和亚微米尺寸的关联,它们的持久性以及活性骨形成区域的生物腐蚀可能是无菌性炎症过程发展的触发因素。这种影响是由于直接的损伤因素和通过响应组织损伤而产生的特定信号分子的间接影响。
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来源期刊
Medical Immunology (Russia)
Medical Immunology (Russia) Medicine-Immunology and Allergy
CiteScore
0.70
自引率
0.00%
发文量
88
审稿时长
12 weeks
期刊介绍: The journal mission is to promote scientific achievements in fundamental and applied immunology to various medical fields, the publication of reviews, lectures, essays by leading domestic and foreign experts in the field of fundamental and experimental immunology, clinical immunology, allergology, immunodiagnostics and immunotherapy of infectious, allergy, autoimmune diseases and cancer.
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