Non-human primates in translational surgery.

IF 1.7 4区 医学 Q2 SURGERY
Jaco Bakker, Tim Buchholz, Melissa Ann de la Garza, Tommaso Virgilio, Thomas Hubert
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Abstract

Nonhuman primates (NHPs) play a unique role in translational science by bridging the gap between basic and clinical investigations and are often seen as a last step before clinical application. They are widely utilized in biomedical research due to their anatomical and physiological similarities to humans. Examples of commonly used species include the genera Macaca (macaques), Papio (baboons), Aotus (owl monkeys), Callithrix (marmosets), Saimiri (squirrel monkeys), and Chlorocebus (vervet monkeys). NHP models have played an instrumental role in the development of surgical techniques, each being balanced with a unique set of advantages and shortcomings. With the appropriate selection of species and anatomy, animal models can be used to provide insight into the pathophysiology of diseases, to confirm the feasibility of new surgery technologies, to assess the potential efficacy of new surgical techniques for specific clinical outcomes, and to establish reasonable safety of new techniques for specified clinical use. Robotics have augmented surgical precision for microinjections and a brain-spine robotic interface used in gait restoration, illustrating the translational potential of NHP models in human neurological research. Recent studies highlight protocols for procedures such as tubectomy and spinal cord access with minimal postoperative risk, expanding surgical possibilities. This review provides an overview of the recent advancements made in surgery in NHP models and the translation of these techniques to the clinical setting. Surgical refinements not only enhance animal welfare but also improve the quality of experimental outcomes. The integration of robotics, imaging, and personalized approaches signifies a transformative shift in NHP surgical models, encouraging collaboration among veterinary and research staff for continuous progress.

翻译外科中的非人类灵长类动物。
非人灵长类动物(NHPs)在转化科学中发挥着独特的作用,它弥合了基础研究和临床研究之间的差距,通常被视为临床应用前的最后一步。由于它们在解剖和生理上与人类相似,因此在生物医学研究中被广泛应用。常用的物种包括Macaca属(猕猴)、Papio属(狒狒)、Aotus属(猫头鹰猴)、Callithrix属(狨猴)、Saimiri属(松鼠猴)和Chlorocebus属(长尾猴)。NHP模型在外科技术的发展中发挥了重要作用,每种模型都有其独特的优点和缺点。通过适当的物种选择和解剖结构,动物模型可以深入了解疾病的病理生理,确认新手术技术的可行性,评估新手术技术对特定临床结果的潜在疗效,并建立新技术在特定临床应用中的合理安全性。机器人技术提高了显微注射的手术精度,并在步态恢复中使用脑-脊柱机器人接口,说明了NHP模型在人类神经学研究中的转化潜力。最近的研究强调了手术方案,如输卵管切除和脊髓通路,术后风险最小,扩大了手术的可能性。这篇综述概述了NHP模型手术的最新进展以及这些技术在临床环境中的应用。手术的改进不仅提高了动物的福利,而且提高了实验结果的质量。机器人技术、成像和个性化方法的整合标志着NHP手术模式的转型转变,鼓励兽医和研究人员之间的合作,不断取得进展。
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
CiteScore
2.30
自引率
6.20%
发文量
31
审稿时长
>12 weeks
期刊介绍: ''European Surgical Research'' features original clinical and experimental papers, condensed reviews of new knowledge relevant to surgical research, and short technical notes serving the information needs of investigators in various fields of operative medicine. Coverage includes surgery, surgical pathophysiology, drug usage, and new surgical techniques. Special consideration is given to information on the use of animal models, physiological and biological methods as well as biophysical measuring and recording systems. The journal is of particular value for workers interested in pathophysiologic concepts, new techniques and in how these can be introduced into clinical work or applied when critical decisions are made concerning the use of new procedures or drugs.
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