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硫酸钙临床应用中的局限性与改进措施

Limitations and modifications in the clinical application of calcium sulfate.

作者信息

Lun Deng-Xing, Li Si-Ying, Li Nian-Nian, Mou Le-Ming, Li Hui-Quan, Zhu Wan-Ping, Li Hong-Fei, Hu Yong-Cheng

机构信息

Department of Spinal Degeneration and Oncology, Weifang People's Hospital, Weifang City, Shandong, China.

Department of Bone Oncology, Tianjin Hospital, Tianjin, China.

出版信息

Front Surg. 2024 Feb 29;11:1278421. doi: 10.3389/fsurg.2024.1278421. eCollection 2024.

Abstract

Calcium sulfate and calcium sulfate-based biomaterials have been widely used in non-load-bearing bone defects for hundreds of years due to their superior biocompatibility, biodegradability, and non-toxicity. However, lower compressive strength and rapid degradation rate are the main limitations in clinical applications. Excessive absorption causes a sharp increase in sulfate ion and calcium ion concentrations around the bone defect site, resulting in delayed wound healing and hypercalcemia. In addition, the space between calcium sulfate and the host bone, resulting from excessively rapid absorption, has adverse effects on bone healing or fusion techniques. This issue has been recognized and addressed. The lack of sufficient mechanical strength makes it challenging to use calcium sulfate and calcium sulfate-based biomaterials in load-bearing areas. To overcome these defects, the introduction of various inorganic additives, such as calcium carbonate, calcium phosphate, and calcium silicate, into calcium sulfate is an effective measure. Inorganic materials with different physical and chemical properties can greatly improve the properties of calcium sulfate composites. For example, the hydrolysis products of calcium carbonate are alkaline substances that can buffer the acidic environment caused by the degradation of calcium sulfate; calcium phosphate has poor degradation, which can effectively avoid the excessive absorption of calcium sulfate; and calcium silicate can promote the compressive strength and stimulate new bone formation. The purpose of this review is to review the poor properties of calcium sulfate and its complications in clinical application and to explore the effect of various inorganic additives on the physicochemical properties and biological properties of calcium sulfate.

摘要

硫酸钙及硫酸钙基生物材料因其卓越的生物相容性、生物降解性和无毒性,已在非承重骨缺损领域广泛应用了数百年。然而,较低的抗压强度和快速的降解速率是其临床应用中的主要限制因素。过度吸收会导致骨缺损部位周围硫酸根离子和钙离子浓度急剧增加,从而导致伤口愈合延迟和高钙血症。此外,由于吸收过快,硫酸钙与宿主骨之间的间隙会对骨愈合或融合技术产生不利影响。这个问题已得到认识和解决。缺乏足够的机械强度使得在承重区域使用硫酸钙及硫酸钙基生物材料具有挑战性。为了克服这些缺陷,将各种无机添加剂,如碳酸钙、磷酸钙和硅酸钙,引入硫酸钙中是一种有效的措施。具有不同物理和化学性质的无机材料可以极大地改善硫酸钙复合材料的性能。例如,碳酸钙的水解产物是碱性物质,可以缓冲硫酸钙降解引起的酸性环境;磷酸钙降解性较差,可以有效避免硫酸钙的过度吸收;而硅酸钙可以提高抗压强度并刺激新骨形成。本综述的目的是回顾硫酸钙的不良性能及其在临床应用中的并发症,并探讨各种无机添加剂对硫酸钙物理化学性质和生物学性质的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08a1/10937423/7f4be0580bc2/fsurg-11-1278421-g001.jpg

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