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选择性冷冻溶脂的小鼠模型

Mouse model of selective cryolipolysis.

作者信息

Salma Nunciada, Wang-Evers Michael, Casper Malte Johannes, Karasik Daniel, Andrade Yanek Jiménez, Tannous Zeina, Manstein Dieter

机构信息

Department of Dermatology, Cutaneous Biology Research Center (CBRC), Massachusetts General Hospital, Harvard Medical School, Charlestown, Massachusetts, USA.

Department of Biomedical Engineering, Laboratory for Functional Optical Imaging, Columbia University, New York, New York, USA.

出版信息

Lasers Surg Med. 2023 Jan;55(1):126-134. doi: 10.1002/lsm.23573. Epub 2022 Jul 12.

Abstract

BACKGROUND

Cryolipolysis is a noninvasive method of destroying adipocytes using controlled cooling, thereby enabling localized and targeted fat reduction. Due to their greater vulnerability to cold injury, adipocytes are selectively targeted, while other cell types are spared.

OBJECTIVES

This study aims to develop a mouse model of cryolipolysis to offer a reliable and convenient alternative to human models, providing a methodology to validate clinical hypotheses in-depth with relative ease, low cost, and efficiency. This further facilitates comprehensive studies of the molecular mechanisms involved in cryolipolysis.

MATERIALS AND METHODS

Mice (C57BL/6J) were placed under general anesthesia and were treated using our custom, miniaturized cryolipolysis system. A thermoelectric cooling probe was applied to the inguinal (ING) area for either a cold exposure of -10°C, or for a room temperature exposure for 10 minutes. The thickness of the subcutaneous fat of the mice was quantified using an optical coherence tomography (OCT) imaging system before and after the treatment. Histological analyses were performed before and after cryolipolysis at multiple time points.

RESULTS

OCT analysis showed that mice that underwent cold cryolipolysis treatment induced a significantly greater reduction of subcutaneous fat thickness 1 month after treatment than the control mice. The mice that received cold treatment had no skin injuries. The selective damage of adipocytes stimulated cold panniculitis that was characterized histologically by infiltration of immune cells 2 and 3 days after treatment.

CONCLUSION

This study shows that cryolipolysis performed in mice yields reproducible and measurable subcutaneous fat reduction, consistent with previous studies conducted in humans and pigs. Future studies can utilize the model of selective cryolipolysis developed by our group to further elucidate the cellular and molecular mechanisms of fat cell loss and improve clinical outcomes in humans.

摘要

背景

冷冻溶脂是一种通过控制冷却来破坏脂肪细胞的非侵入性方法,从而实现局部和有针对性的减脂。由于脂肪细胞对冷损伤更敏感,因此被选择性地靶向作用,而其他细胞类型则不受影响。

目的

本研究旨在建立一种冷冻溶脂小鼠模型,为人体模型提供一种可靠且便捷的替代方案,提供一种相对轻松、低成本且高效地深入验证临床假设的方法。这进一步促进了对冷冻溶脂所涉及分子机制的全面研究。

材料与方法

将小鼠(C57BL/6J)置于全身麻醉下,使用我们定制的小型化冷冻溶脂系统进行处理。将热电冷却探头应用于腹股沟(ING)区域,进行-10°C的冷暴露,或在室温下暴露10分钟。在处理前后使用光学相干断层扫描(OCT)成像系统对小鼠皮下脂肪厚度进行定量。在冷冻溶脂前后的多个时间点进行组织学分析。

结果

OCT分析显示,接受冷冷冻溶脂处理的小鼠在处理后1个月皮下脂肪厚度的减少明显大于对照小鼠。接受冷处理的小鼠没有皮肤损伤。脂肪细胞的选择性损伤引发了冷性脂膜炎,其组织学特征是在处理后2至3天免疫细胞浸润。

结论

本研究表明,在小鼠中进行的冷冻溶脂可产生可重复且可测量的皮下脂肪减少,这与先前在人类和猪身上进行的研究一致。未来的研究可以利用我们团队开发的选择性冷冻溶脂模型,进一步阐明脂肪细胞丢失的细胞和分子机制,并改善人类的临床结果。

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