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一种用于冷冻骨肿瘤自体骨重建中保护关节软骨的冷冻保护剂-凝胶复合材料:一项基于动物的研究。

A Cryoprotectant-Gel Composite Designed to Preserve Articular Cartilage during Frozen Osteoarticular Autograft Reconstruction for Malignant Bone Tumors: An Animal-Based Study.

机构信息

Department of Orthopaedic & Traumatology, Taipei Veterans General Hospital, Taipei City, Taiwan.

Therapeutical and Research Center of Musculoskeletal Tumor, Taipei Veterans General Hospital, Taipei City, Taiwan.

出版信息

Cartilage. 2022 Jul-Sep;13(3):19476035221109228. doi: 10.1177/19476035221109228.

Abstract

OBJECTIVE

We designed a highly adhesive cryoprotectant-gel composite (CGC), based on regular liquid-form cryoprotectant base (CB), aiming to protect cartilage tissue during frozen osteoarticular autograft reconstruction for high-grade sarcoma around the joint. This study aimed to evaluate its effectiveness in rat and porcine distal femur models.

DESIGN

Fresh articular cartilage samples harvested from distal rat and porcine femurs were divided into 4 test groups: untreated control group, liquid nitrogen (LN) freezing group, LN freezing group pretreated with CB (CB group), and LN freezing group pretreated with CGC (CGC group). Microscopic and macroscopic evaluation of cartilage condition, TUNEL (terminal deoxynucleotidyl transferase dUTP nick end labeling) assay, and apoptotic protein analysis of chondrocytes were performed to confirm our results.

RESULTS

In the rat model, CGC could prevent articular cartilage from roughness and preserve more proteoglycans when compared with the LN freezing and CB groups. Western blot analysis showed CGC could prevent cartilage from LN-induced apoptosis supported by caspase-3/8 apoptotic signaling cascade. Macroscopically, we observed CGC could reduce both articular clefting and loss of articular luminance after freezing in the porcine model. In both models, CGC could reduce articular chondrocytes from degeneration. Fewer TUNEL-positive apoptotic and more viable chondrocytes in cartilage tissue were observed in the CGC group in our animal models.

CONCLUSION

Our study proved that CGC could effectively prevent cartilage surface and chondrocytes from cryoinjury after LN freezing. Freezing articular cartilage surrounded with high concentration of CGC can be a better alternative to preserve articular cartilage during limb salvage surgery for malignant bone tumor.

摘要

目的

我们设计了一种高粘性的冷冻保护剂-凝胶复合材料(CGC),基于常规的液体形式冷冻保护剂基础(CB),旨在保护关节周围高级别肉瘤冷冻骨关节自体移植物重建过程中的软骨组织。本研究旨在评估其在大鼠和猪的股骨远端模型中的有效性。

设计

从大鼠和猪的股骨远端采集新鲜关节软骨样本,分为 4 个实验组:未处理对照组、液氮(LN)冷冻组、LN 冷冻组预处理 CB(CB 组)和 LN 冷冻组预处理 CGC(CGC 组)。对软骨状况进行显微镜和宏观评估、TUNEL(末端脱氧核苷酸转移酶 dUTP 缺口末端标记)检测和软骨细胞凋亡蛋白分析,以证实我们的结果。

结果

在大鼠模型中,与 LN 冷冻和 CB 组相比,CGC 可以防止关节软骨变粗糙并保留更多的糖胺聚糖。Western blot 分析显示,CGC 可以通过 caspase-3/8 凋亡信号级联来防止软骨受到 LN 诱导的凋亡。宏观上,我们观察到 CGC 可以减少冷冻引起的猪模型中的关节裂隙和关节亮度丧失。在两种模型中,CGC 都可以减少关节软骨细胞的退变。在我们的动物模型中,CGC 组的软骨组织中 TUNEL 阳性凋亡的软骨细胞较少,存活的软骨细胞较多。

结论

我们的研究证明,CGC 可以有效地防止 LN 冷冻后软骨表面和软骨细胞受到冷冻损伤。在保肢手术中,冷冻富含高浓度 CGC 的关节软骨可以更好地保存关节软骨,用于治疗恶性骨肿瘤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0728/9393690/faabc4b812b2/10.1177_19476035221109228-fig1.jpg

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