掺锗磷酸钙陶瓷骨置换治疗犬管状骨碎片骨折的临床放射学、血液学和生化评价

T. Todosiuk, M. Rublenko
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引用次数: 0

摘要

摘要在动物的外科病理中,骨骼的各种创伤性损伤占据了相当大的份额,其后果是骨折。本文报道了犬骨碎片骨折的x线及血液生化指标。本研究的目的是在临床、放射学和病理化学上证明用掺锗磷酸钙陶瓷骨置换治疗犬骨碎片骨折的合理性。实验组(n=10)用掺锗磷酸钙陶瓷代替骨缺损(ГТлГег-700),对照组(n=10)用非合金陶瓷代替骨缺损(ГТг-700)。测定大鼠血清总碱性磷酸酶(ALP)及其骨同工酶(KiLP)、抗酒石酸酸性磷酸酶(TrKF)活性。使用Stat Fax 4500分光光度计进行测量。在第60天,实验组动物观察到x线密度高的再生材料填充骨缺损,无骨膜反应,表明骨折完全巩固,是拆除固定手段的原因。在对照组中,观察未填充再生骨的骨组织缺损区域。两组抗酒石酸酸性磷酸酶(TRP)活性均有升高的趋势。第14天,实验组动物TrKf活性达到峰值(33.8±0.31),分别是对照组的1.3倍(p<0.001)和临床健康动物的1.5倍(p<0.001)。在研究的第30天,实验组的TrCF水平比对照组下降了1.2倍(p<0.001),其中该指标在34.9±0.25单位/l时达到峰值。实验组骨同工酶碱性磷酸酶(KiLF)活性在修复成骨第14天达到最大值,为41.7±0.43单位/l,是对照组的1.2倍(p<0.001)。另一方面,在最后一组中,骨同工酶活性仅在第30天达到峰值(40.9±0.48单位/l),而实验动物的指标在此期间呈动态下降趋势。磷酸钙陶瓷用于狗的胫骨碎片骨折有助于减少修复性成骨的炎症吸收损伤强度,并将巩固速度提高1.4倍。骨代谢生化指标的动态变化证明了掺锗磷酸钙陶瓷骨缺损置换过程中修复性成骨的优化过程。关键词:生物陶瓷,锗,总碱性磷酸酶,碱性磷酸酶骨同工酶,抗酒石酸酸性磷酸酶,骨组织
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clinical-radiological, hematological and biochemical assessment of bone replacement with germanium-doped calcium-phosphate ceramics for fragment fractures of tubular bones in dogs
Abstract. Among surgical pathology in animals, asignificant share is occupied by various traumatic injuries of the skeleton, the consequence of which are bonefractures. The results of X-ray and biochemical indicators of blood for bone fragment fractures in dogs arepresented.The purpose of the work is to clinically, radiologically, and pathochemically justify bone replacementwith germanium-doped calcium-phosphate ceramicsfor bone fragment fractures in dogs.In the injured animals of the experimental group(n=10), bone defects were replaced with germanium-doped calcium-phosphate ceramics (ГТлГег-700),in the control group (n=10) with unalloyed ceramics(ГТг-700). The activity of total alkaline phosphatase (ALP)and its bone isoenzyme (KiLP), tartrate-resistant acidphosphatase (TrKF) was determined in blood serum.Measurements were made with a Stat Fax 4500 spectrophotometer.On the 60th day, in the animals of the experimentalgroup, the filling of the bone defect with regeneratedmaterial of high X-ray density was noted, with the absence of periosteal reaction, which indicated the complete consolidation of the fracture and was the reasonfor the removal of the means of fixation. In the control,the area of the bone tissue defect that was not filledwith regenerate was visualized.The activity of tartrate-resistant acid phosphatase(TRP) in both groups tended to increase. On the 14th day,the animals of the experimental group had a peak activity of TrKf (33.8±0.31), which was 1.3 times (p<0.001)higher than the level in the control group and 1.5 times(p<0.001) of clinically healthy animals, respectively. Onthe 30th day of research, a 1.2-fold (p<0.001) decreasein the level of TrCF was noted in the experimental groupcompared to the control group, in which the indicatorreached peak values at 34.9±0.25 units/l.The maximum activity of the bone isoenzyme alkaline phosphatase (KiLF) in the experimental groupwas observed on the 14th day of reparative osteogenesis and was 41.7±0.43 units/l, which is 1.2 times(p<0.001) higher than the indicator of the controlgroup. On the other hand, in the last group, the peakactivity of the bone isozyme was noted only on the30th day (40.9±0.48 units/l), while the indicator of theexperimental animals decreased dynamically duringthis period.The use of calcium-phosphate ceramics for fragment fractures of the bones of the tibia in dogs helpsto reduce the intensity of the inflammatory-resorptivestage of reparative osteogenesis and accelerates consolidation by 1.4 times. The dynamics of biochemicalmarkers of bone metabolism testifies to the optimizedcourse of reparative osteogenesis during osteoreplacement of bone defects with germanium-doped calcium-phosphate ceramics. Key words: bioceramics, germanium, total alkaline phosphatase, bone isoenzyme of alkaline phosphatase, tartrate-resistant acid phosphatase, bonetissue.
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