Level D· Scientific groundwork from lab and animal studiesLaboratory StudyPubMed

L-Ascorbic Acid 2-Phosphate-Releasing Poly(trimethylene carbonate) Increases Cell Proliferation and Collagen Production: A Novel Material for Pelvic Organ Prolapse Tissue Engineering.

Ala-Mononen K., Grijpma D., Efimov A., Mustakoski S., Kuismanen K., Miettinen S.

Laboratory Study on Face & Skin, published in Tissue Eng Regen Med (2026) — summary generated from the PubMed abstract.

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Level D· Scientific groundwork from lab and animal studiesEvidence level of this study

Evidence from laboratory and animal studies provides groundwork for understanding mechanisms and potential before human studies continue.

  • Level A · Stronger Clinical Evidence
  • Level B · Emerging clinical evidence with positive signals
  • Level C · Early human research exploring benefits
  • Level D · Scientific groundwork from lab and animal studies
  • Emerging · Emerging topic under active research
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This page is generated from the PubMed record. The Thai description is an automated summary of bibliographic fields and the abstract, not a full translation, and is not medical advice.

Study type
Laboratory Study
Journal
Tissue Eng Regen Med (2026)
Country
Korea (South)
Reported sample size
—
Source database
PubMed
PMID
42446835
DOI
10.1007/s13770-026-00831-3

Abstract (original English)

Background Pelvic organ prolapse (POP) occurs due to the weakening of the pelvic floor connective tissues and their decreased collagen content, leading to the descent of pelvic organs into or through vagina. Therefore, biodegradable materials designed to enhance collagen production could be a future option for POP treatment. Methods Here, we studied novel L-ascorbic acid 2-phosphate (A2P)-releasing biodegradable poly(trimethylene carbonate) (PTMC) materials. The effects of varying A2P concentrations (0, 5 or 10 wt%) were evaluated regarding material characteristics, such as component release and mechanical and surface properties. Further, materials' effect on proliferation, collagen production and attachment of human vaginal stromal cells (hVSCs) and human adipose-derived stromal cells (hASCs) were analyzed during 14-day culture period. Results A2P-releasing PTMC had good handling characteristics and mechanical properties, such as high tensile and suture retention strength. Rapid, yet controlled release of A2P from the PTMC was observed in in vitro release studies. Our results demonstrate that A2P-releasing PTMC significantly increased the proliferation and total collagen content of both hVSCs and hASCs. Further, genetic expression of collagen types I (COL I) and III (COL III) significantly increased on A2P-releasing PTMC membranes, and extracellular COL I fibers were visible i

What this study does not prove

  • • This study does not prove SVF is an approved treatment or a replacement for standard care.
  • • This is preclinical work; animal or laboratory results cannot be applied to humans.

Evidence level

Evidence from laboratory and animal studies provides groundwork for understanding mechanisms and potential before human studies continue.

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