Jen X Xu, Frank Z Xu, Amelia Furbish, Yuri K Peterson, Patrick M Woster, Alicia M Braxton
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Such adverse events can compromise animal welfare, confound study results, and necessitate additional animals to achieve study objectives. As such, it is imperative to develop proper injection techniques to prevent complications, especially in longitudinal studies that require multiple, repeated intra-articular injections. Using the presented methodology, five guinea pigs received bilateral knee injections under general anesthesia. Seven days after injection, animals were humanely euthanized for analysis of osteoarthritis severity. No adverse events occurred following anesthesia or knee injections, including limping, pain, or infection. X-ray micro-computed tomography analysis of the knee can detect pathologic changes associated with osteoarthritis. Micro-computed tomography data indicates osteoarthritis is more severe in older animals, as indicated by increased bone mineral density and trabecular thickness with age. These results are consistent with histologic changes and Modified Mankin scores, an established and widely used scoring system to assess arthritis severity in these same animals. 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引用次数: 0
摘要
本方案旨在指导研究人员在触诊引导下对豚鼠膝关节进行关节内注射,并使用微型计算机断层扫描进行评估。Dunkin-Hartley 豚鼠的膝关节会自发出现骨关节炎,因此是骨关节炎研究的可靠模型。关节内给药是研究研究药物体内效应的常用方法。在人体中,通过关节内注射给药可缓解疼痛并延缓骨关节炎的进一步发展。与任何物种一样,将针头插入关节间隙有可能造成损伤,从而导致疼痛、跛行或感染。此类不良事件可能会损害动物福利,影响研究结果,并需要额外的动物来实现研究目标。因此,必须开发正确的注射技术以防止并发症的发生,尤其是在需要多次重复关节内注射的纵向研究中。利用所介绍的方法,五只豚鼠在全身麻醉的情况下接受了双侧膝关节注射。注射七天后,动物被人道安乐死,以分析骨关节炎的严重程度。麻醉或膝关节注射后未发生任何不良反应,包括跛行、疼痛或感染。膝关节的 X 射线微型计算机断层扫描分析可检测出与骨关节炎相关的病理变化。微型计算机断层扫描数据显示,骨关节炎在年龄较大的动物中更为严重,这表现在骨矿物质密度和骨小梁厚度随着年龄的增长而增加。这些结果与组织学变化和 "改良曼金评分 "一致,"改良曼金评分 "是一种成熟且广泛使用的评分系统,用于评估这些动物的关节炎严重程度。该方案可用于改进豚鼠的关节内注射。
Micro-Computed Tomography Analysis of the Knee in Aged Dunkin-Hartley Guinea Pigs after Intra Articular Injection.
The purpose of this protocol is to guide researchers in performing a palpation-guided technique of intra-articular knee injection in guinea pigs and assessment using micro-computed tomography. Dunkin-Hartley guinea pigs are robust models for osteoarthritis research as they spontaneously develop osteoarthritis in their knees. Intra-articular drug delivery is a common method to study the effects of an investigational drug in vivo. In humans, therapeutic agents administered via intra-articular injection can offer pain relief and delay further progression of osteoarthritis. As with any species, the introduction of a needle into a joint space has the potential to cause injury, which can result in pain, lameness, or infection. Such adverse events can compromise animal welfare, confound study results, and necessitate additional animals to achieve study objectives. As such, it is imperative to develop proper injection techniques to prevent complications, especially in longitudinal studies that require multiple, repeated intra-articular injections. Using the presented methodology, five guinea pigs received bilateral knee injections under general anesthesia. Seven days after injection, animals were humanely euthanized for analysis of osteoarthritis severity. No adverse events occurred following anesthesia or knee injections, including limping, pain, or infection. X-ray micro-computed tomography analysis of the knee can detect pathologic changes associated with osteoarthritis. Micro-computed tomography data indicates osteoarthritis is more severe in older animals, as indicated by increased bone mineral density and trabecular thickness with age. These results are consistent with histologic changes and Modified Mankin scores, an established and widely used scoring system to assess arthritis severity in these same animals. This protocol can be utilized to refine intra-articular injections in guinea pigs.
期刊介绍:
JoVE, the Journal of Visualized Experiments, is the world''s first peer reviewed scientific video journal. Established in 2006, JoVE is devoted to publishing scientific research in a visual format to help researchers overcome two of the biggest challenges facing the scientific research community today; poor reproducibility and the time and labor intensive nature of learning new experimental techniques.