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大鼠模型中用于软组织增强的羟基磷灰石/羧甲基纤维素(CaHA/CMC)基质的表征与比较研究

Characterization and Comparative Investigation of Hydroxyapatite/Carboxymethyl Cellulose (CaHA/CMC) Matrix for Soft Tissue Augmentation in a Rat Model.

作者信息

Karatas Erkan, Koc Kubra, Yilmaz Mehmet, Aydin Halil Murat

机构信息

Department of Molecular Biology and Genetics, Erzurum Technical University, 25100 Erzurum, Turkey.

Bioengineering Division, Institute of Science, Hacettepe University, 06800 Ankara, Turkey.

出版信息

ACS Omega. 2024 Jul 12;9(29):31586-31600. doi: 10.1021/acsomega.4c01503. eCollection 2024 Jul 23.

Abstract

This study endeavors to develop an injectable subdermal implant material tailored for soft tissue repair and enhancement. The material consists of a ceramic phase of calcium hydroxyapatite (CaHA), which is biocompatible, 20-60 μm in size, known for its biocompatibility and minimal likelihood of causing foreign body reactions, antigenicity, and minimal inflammatory response, dispersed in a carrier phase composed of carboxymethyl cellulose (CMC), glycerol, and water for injection. The gel formulation underwent comprehensive characterization various analytical techniques. X-ray diffraction (XRD) was employed to identify crystalline phases and investigate the structural properties of ceramic particles, while thermogravimetric analysis (TGA) was conducted to evaluate the thermal stability and decomposition behavior of the final formulation. Scanning electron microscopy (SEM) was utilized to examine the surface morphology and particle size distribution, confirming the homogeneous dispersion of spherical CaHA particles within the matrix. SEM analysis revealed particle sizes ranging from approximately 20-60 μm. Elemental analysis confirmed a stoichiometric Ca/P ratio of 1.65 in the hydroxyapatite (HA) structure. Heavy metal content exhibited suitability for surgical implant use without posing toxicity risks. Rheological analysis revealed a storage modulus of 58.6 and 68.9 kPa and a loss modulus of 21.7 and 24.8 kPa at the frequencies of 2 and 5 Hz, respectively. 150 μL of sterilized CaHA/CMC was injected subcutaneously into rats and compared with a similar product, Crystalys, to assess its effects on soft tissues. Skin tissue samples of rats were collected at specific intervals throughout the study (30, 45, 60, 90 and 120 days), and examined histologically. Results demonstrated that CaHA/CMC gel led to a significant increase in dermal thickness, elastic fibers, and collagen density. Based on the findings, the formulated CaHA/CMC gel was found to be biocompatible, biodegradable, nonimmunogenic, nontoxic, safe, and effective, and represents a promising option for soft tissue repair and augmentation.

摘要

本研究致力于开发一种用于软组织修复和增强的可注射皮下植入材料。该材料由羟基磷灰石(CaHA)陶瓷相组成,其具有生物相容性,尺寸为20 - 60μm,以其生物相容性、引起异物反应的可能性极小、无抗原性以及最小的炎症反应而闻名,分散于由羧甲基纤维素(CMC)、甘油和注射用水组成的载体相中。该凝胶制剂通过各种分析技术进行了全面表征。采用X射线衍射(XRD)来识别晶相并研究陶瓷颗粒的结构特性,同时进行热重分析(TGA)以评估最终制剂的热稳定性和分解行为。利用扫描电子显微镜(SEM)检查表面形态和粒径分布,证实球形CaHA颗粒在基质中均匀分散。SEM分析显示粒径范围约为20 - 60μm。元素分析证实羟基磷灰石(HA)结构中的钙磷摩尔比为1.65。重金属含量显示适合手术植入使用,无毒性风险。流变学分析表明,在2Hz和5Hz频率下,储能模量分别为58.6和68.9kPa,损耗模量分别为21.7和24.8kPa。将150μL灭菌的CaHA/CMC皮下注射到大鼠体内,并与类似产品Crystalys进行比较,以评估其对软组织的影响。在整个研究过程中的特定时间间隔(30、45、60、90和120天)收集大鼠的皮肤组织样本,并进行组织学检查。结果表明,CaHA/CMC凝胶导致真皮厚度、弹性纤维和胶原蛋白密度显著增加。基于这些发现,所制备的CaHA/CMC凝胶被发现具有生物相容性、可生物降解、无免疫原性、无毒、安全且有效,是软组织修复和增大的一个有前景的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e268/11270726/580c21e61923/ao4c01503_0001.jpg

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