A Fibrous-Porous Microsphere-Based Composite Filler for Synchronized Immediate and Long-Term Soft Tissue Restoration.

ACS applied materials & interfaces 2026 Vol.18(15) p. 22424-22437

Lian R, Li Q, Zhou D, Yuan X, Bai ZS, Li Y

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Abstract

Current injectable fillers often suffer from a transient efficacy and insufficient early stage improvement. To address this, we developed a composite dermal filler consisting of hyaluronic acid (HA) and poly-L-lactic acid-methoxypolyethyleneglycol (PLLA-mPEG) microspheres with a unique fibrous porous structure. This distinctive architecture enabled a rapid initial release of lactic acid, effectively accelerating early cell proliferation and fundamentally overcoming the challenge of poor initial skin improvement. In a rat model, the composite filler demonstrated superior performance by orchestrating a pro-regenerative microenvironment, eliciting controlled macrophage infiltration, upregulating TGF-β expression, and significantly stimulating endogenous collagen regeneration, which leads to sustained volume restoration. By ingeniously coupling the instant filling effect of HA with the structurally enhanced bioactive function of PLLA-mPEG microspheres, this composite filler represents a breakthrough strategy that synchronizes immediate correction with long-term tissue remodeling, holding great promise for treating skin laxity and soft tissue defects.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 filler 필러 주입술 dict 3
재료 ha 히알루론산 dict 2
재료 plla 폴리락트산 dict 2
시술 dermal filler 필러 주입술 dict 1
재료 hyaluronic acid 히알루론산 dict 1
재료 poly-l-lactic acid 폴리락트산 dict 1

MeSH Terms

Animals; Microspheres; Rats; Hyaluronic Acid; Porosity; Polyesters; Polyethylene Glycols; Dermal Fillers; Skin; Biocompatible Materials; Rats, Sprague-Dawley; Male; Cell Proliferation

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