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生物刺激剂的免疫谱及其临床重要性。

The Immunologic Spectrum of Biostimulators and Its Clinical Importance.

作者信息

Corduff Niamh, Goldie Kate

机构信息

From the RiverEnd Aesthetics, Newtown, Victoria, Australia.

European Medical Aesthetics Ltd., London, United Kingdom.

出版信息

Plast Reconstr Surg Glob Open. 2025 Aug 5;13(8):e7001. doi: 10.1097/GOX.0000000000007001. eCollection 2025 Aug.

Abstract

BACKGROUND

Biostimulators have become important tools in aesthetic medicine to address age-related volume loss and tissue changes. They stimulate the body's natural processes to produce collagen and other components that contribute to a youthful appearance. Understanding the immunologic mechanisms underlying these processes is crucial for achieving optimal clinical outcomes. We thus sought to review the immunologic mechanisms underlying the action of biostimulators and their implications in clinical practice in aesthetic medicine.

METHODS

A comprehensive literature review was conducted to examine the diverse immunologic mechanisms triggered by commonly used biostimulators, including poly-l-lactic acid, polycaprolactone, and calcium hydroxylapatite, with a particular focus on their physicochemical properties and clinical effects.

RESULTS

Biostimulators elicit variable wound-healing immune responses based on their physicochemical properties. Injecting a biomaterial recognized immunologically as nonself will follow a foreign body pathway, producing outcomes that can vary from those of an immunologically familiar biomaterial. The extent of tissue regeneration is influenced primarily by the injected biomaterial's physicochemical properties, and particle size and shape. Other factors (eg, injection technique and contamination) can also influence outcomes. Biostimulator choice depends on specific clinical goals and patient characteristics. All of these factors require consideration when formulating treatment strategies for tissue regeneration.

CONCLUSIONS

Biostimulators elicit a spectrum of immunologic responses dependent on their physicochemical properties, ultimately producing clinical outcomes tending toward replacement or regeneration of native tissue. Understanding their immunologic mechanisms allows for optimal selection and use to achieve desired outcomes. Further research is needed to elucidate the complex immune responses to different biostimulators.

摘要

背景

生物刺激剂已成为美容医学中解决与年龄相关的容量损失和组织变化的重要工具。它们刺激身体的自然过程以产生胶原蛋白和其他有助于呈现年轻外观的成分。了解这些过程背后的免疫机制对于实现最佳临床效果至关重要。因此,我们试图综述生物刺激剂作用背后的免疫机制及其在美容医学临床实践中的意义。

方法

进行了一项全面的文献综述,以研究常用生物刺激剂引发的多种免疫机制,包括聚左旋乳酸、聚己内酯和羟基磷灰石钙,特别关注它们的物理化学性质和临床效果。

结果

生物刺激剂根据其物理化学性质引发不同的伤口愈合免疫反应类型。注射一种在免疫学上被识别为非自身的生物材料会遵循异物途径,产生的结果可能与免疫学上熟悉的生物材料不同。组织再生的程度主要受注射生物材料的物理化学性质、颗粒大小和形状的影响。其他因素(如注射技术和污染)也会影响结果。生物刺激剂的选择取决于特定的临床目标和患者特征。在制定组织再生治疗策略时,所有这些因素都需要考虑。

结论

生物刺激剂根据其物理化学性质引发一系列免疫反应,最终产生倾向于替代或再生天然组织的临床结果。了解它们的免疫机制有助于进行最佳选择和使用,以实现预期结果。需要进一步研究来阐明对不同生物刺激剂的复杂免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5df/12323983/c65951c29216/gox-13-e7001-g001.jpg

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