Haykal Diala, Haddad Alessandra, Cartier Hugues, Avelar Luiz
Aesthet Surg J. 2025 Sep 16;45(10):1065-1072. doi: 10.1093/asj/sjaf121.
Over the past decade, poly-L-lactic acid (PLLA), a synthetic, biodegradable, and biocompatible polymer, has evolved from a volumizing solution for HIV-associated lipoatrophy into a foundational tool in regenerative aesthetic dermatology. In this systematic review, the authors explore PLLA's transformation across clinical generations, emphasizing its role as a biostimulatory scaffold rather than a conventional filler. Through an extensive literature review, the authors identify and analyze 63 studies published between January 2013 and March 2025. Findings confirm that PLLA induces a regenerative cascade marked by M2 macrophage polarization, transforming growth factor beta 1-mediated fibroblast activation, and sustained neocollagenesis, thereby promoting long-term remodeling of the extracellular matrix, improved dermal density, and enhanced skin quality. The applications of PLLA have extended beyond facial volumization to full-body rejuvenation, with significant roles in post-glucagon-like peptide-1 therapy restoration and preventive ("prejuvenation") strategies. Protocol refinements, including optimized dilutions and cannula techniques, have enhanced safety and efficacy. In this review, the authors also highlight the emerging areas such as PLLA's integration with energy-based devices, digital imaging, artificial intelligence diagnostics, and microbiome-focused care. Collectively, the evidence supports PLLA's utility as a versatile biostimulatory agent that bridges aesthetic innovation and regenerative dermatology. Level of Evidence: 3 (Therapeutic).
在过去十年中,聚-L-乳酸(PLLA),一种合成的、可生物降解且具有生物相容性的聚合物,已从用于治疗与HIV相关脂肪萎缩的填充剂发展成为再生美容皮肤科的基础工具。在本系统评价中,作者探讨了PLLA在不同临床阶段的转变,强调其作为生物刺激支架而非传统填充剂的作用。通过广泛的文献综述,作者识别并分析了2013年1月至2025年3月期间发表的63项研究。研究结果证实,PLLA可诱导以M2巨噬细胞极化、转化生长因子β1介导的成纤维细胞活化和持续的新胶原形成为特征的再生级联反应,从而促进细胞外基质的长期重塑、改善真皮密度并提升皮肤质量。PLLA的应用已从面部填充扩展到全身年轻化,在胰高血糖素样肽-1治疗后修复及预防(“预年轻化”)策略中发挥着重要作用。包括优化稀释和套管技术在内的方案改进提高了安全性和有效性。在本综述中,作者还强调了一些新兴领域,如PLLA与基于能量的设备、数字成像、人工智能诊断以及以微生物群为重点的护理的整合。总体而言,证据支持PLLA作为一种多功能生物刺激剂的效用,它架起了美学创新与再生皮肤科之间的桥梁。证据级别:3(治疗性)