In Vivo feature of the regenerative potential of chitosan and alginate based osteoplastic composites doped with calcium phosphates, zinc ions, and vitamin D2

IF 2 3区 医学 Q2 ANATOMY & MORPHOLOGY
Olexii Korenkov, Liudmyla Sukhodub , Mariia Kumeda, Leonid Sukhodub
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引用次数: 0

Abstract

Purpose

In vivo comparison of the regenerative potential of two calcium phosphate-biopolymer osteoplastic composites: а) based on alginate (Alg) and hydroxyapatite (HA) – Alg/HA/CS/Zn/D2, b) based on chitosan (CS) and brushite (DCPD) – CS/DCPD/D2.

Materials and methods

36 white male laboratory rats aged six months were used. A defect to the bone marrow canal in the middle of the femur diaphysis was made with a dental bur of 2 mm. The bone defect healed under the blood clot (control) in the different animal groups and was filled with Alg/HA/CS/Zn/D2 and CS/DCPD/D2. The regeneration of the bone defect was studied on the 30th, 90th, and 140th days by computer tomography (CT).

Results

On the 30th day, all groups' implantation site optical density (OD) was significantly lower than that of the adjacent maternal bone (MB). Intensity of bone formation for Alg/HA/CS/Zn/D2 exceeds CS/DCPD/D2. On the 90th day, the bone trauma site OD with Alg/HA/CS/Zn/D2 (1725.4 ± 86 HU) and CS/DCPD/D2 (1484.9 ± 69 HU) exceeded the OD of the control (942.5 ± 55 HU). On the 140th day, the OD of Alg/HA/CS/Zn/D2 and CS/DCPD/D2 implantation sites was higher than Control and MB OD. Visually, the area of the past injury with the Alg/HA/CS/Zn/D2 could be detected only by the presence of an endosteal bone callus and in the case of CS/DCPD/D2 - by the shadow of the remaining biomaterial in the bone marrow canal.

Conclusions

According to CT data, Alg/HA/CS/Zn/D2 and CS/DCPD/D2 contribute to the complete healing of the femoral diaphysis defect in 140 days, but the regenerative potential of Alg/HA/CS/Zn/D2 from 30 days to 140 days is higher than CS/DCPD/D2 biomaterial.

掺入磷酸钙、锌离子和维生素 D2 的壳聚糖和海藻酸骨塑复合材料再生潜力的体内特征
目的:在体内比较两种磷酸钙-生物聚合物骨塑复合材料的再生潜力:а)基于海藻酸盐(Alg)和羟基磷灰石(HA)的复合材料--Alg/HA/CS/Zn/D2;b)基于壳聚糖(CS)和刷状石(DCPD)的复合材料--CS/DCPD/D2。用 2 毫米的牙科锉刀在股骨干骺端中部造成骨髓管缺损。不同动物组的骨缺损在血凝块(对照组)下愈合,并用 Alg/HA/CS/Zn/D2 和 CS/DCPD/D2 填充。第 30 天、第 90 天和第 140 天,通过计算机断层扫描(CT)研究骨缺损的再生情况:结果:在第 30 天,所有组的植入部位光密度(OD)都明显低于邻近的母体骨(MB)。Alg/HA/CS/Zn/D2 的骨形成强度超过 CS/DCPD/D2。第 90 天,Alg/HA/CS/Zn/D2(1725.4 ± 86 HU)和 CS/DCPD/D2 (1484.9 ± 69 HU)的骨创伤部位 OD 超过对照组(942.5 ± 55 HU)。第 140 天,Alg/HA/CS/Zn/D2 和 CS/DCPD/D2 植入部位的透光率高于对照组和 MB 的透光率。从外观上看,Alg/HA/CS/Zn/D2 过去的损伤区域只能通过骨膜内骨胼胝的存在来检测,而 CS/DCPD/D2 的情况则是通过骨髓管中剩余生物材料的阴影来检测:根据 CT 数据,Alg/HA/CS/Zn/D2 和 CS/DCPD/D2 有助于股骨头干骺端缺损在 140 天内完全愈合,但 Alg/HA/CS/Zn/D2 在 30 天至 140 天内的再生潜力高于 CS/DCPD/D2 生物材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annals of Anatomy-Anatomischer Anzeiger
Annals of Anatomy-Anatomischer Anzeiger 医学-解剖学与形态学
CiteScore
4.40
自引率
22.70%
发文量
137
审稿时长
33 days
期刊介绍: Annals of Anatomy publish peer reviewed original articles as well as brief review articles. The journal is open to original papers covering a link between anatomy and areas such as •molecular biology, •cell biology •reproductive biology •immunobiology •developmental biology, neurobiology •embryology as well as •neuroanatomy •neuroimmunology •clinical anatomy •comparative anatomy •modern imaging techniques •evolution, and especially also •aging
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