Enhancing Biodegradable Bone Plate Performance: Stereocomplex Polylactic Acid for Improved Mechanical Properties and Near-Infrared Transparency

  • Park, Su Jeong
  • Lim, Ho-Kyung
  • Lee, Sung-Jae
  • Im, Seung Hyuk
  • Lee, Jong min
  • ... Shim, Ji-Seok
  • 외 5명
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초록

The use of biodegradable materials in bone plates offers remarkable advantages; however, their application in bone fixation is limited by their brittleness. Moreover, treatments tailored to patient conditions are needed in orthopedics. In this study, bone plates were fabricated with stereocomplex polylactic acid (scPLA) and the effects of poly(d-lactic acid) molecular weight and scPLA blending ratios were analyzed. Although modulus values of poly(l-lactic acid) (PLLA) and scPLA were similar, strain resistance improved at higher scPLA proportions. The enhanced elongation was owing to the presence of tie molecules within the scPLA as opposed to single PLA chains. The fabricated scPLA bone plates exhibited improved mechanical properties and transparency in the optical and near-infrared ranges. scPLA was characterized by a smaller crystallite size. These properties of scPLA combined with its biocompatibility indicate potential for various diagnostic and therapeutic orthopedic applications. Comparisons with commercial PLLA-based bone plates show no significant differences in in vivo bone-healing ability.

키워드

CollagenEnrofloxacinHydroxyapatiteKetoprofenPolylactic AcidPolylactidePovidone IodineXylazineBiocompatible MaterialsPoly(lactide)PolyestersPolymersBoneCrystallite SizeBone PlateInfrared TransparencyMechanicalNear InfraredNear-infraredPerformancePoly(l-lactic Acid)Poly-l-lactic AcidsPropertyStereocomplexesLactic AcidCollagenEnrofloxacinHydroxyapatiteKetoprofenPolylactic AcidPolylactidePovidone IodineXylazineBiomaterialPolyesterPolymerAnimal CellAnimal ExperimentAnimal ModelArticleBiocompatibilityBone RegenerationBone VolumeControlled StudyCrystal StructureDifferential Scanning CalorimetryEnthalpyFirst PremolarFlexural StrengthFourier Transform Infrared SpectroscopyFracture HealingGel Permeation ChromatographyHydrogen BondLeporidaeLight ScatteringMandible FractureMc3t3-e1 Cell LineMental ForamenMicro-computed TomographyMolecular WeightMorphometryNonhumanParticle SizePolymerizationPostoperative InfectionPostoperative PainX Ray DiffractionAnimalBone PlateChemistryMaterials TestingAnimalsBiocompatible MaterialsBone PlatesMaterials TestingPolyestersPolymersENANTIOMERIC POLY(LACTIC ACID)SMODULUSGROWTH
제목
Enhancing Biodegradable Bone Plate Performance: Stereocomplex Polylactic Acid for Improved Mechanical Properties and Near-Infrared Transparency
저자
Park, Su JeongLim, Ho-KyungLee, Sung-JaeIm, Seung HyukLee, Jong minJung, YoungmeeKim, Soo HyunShim, Ji-SeokWon, Jong-eunChung, Justin J.Song, In-Seok
DOI
10.1021/acs.biomac.4c01768
발행일
2025-03-25
유형
Article
저널명
Biomacromolecules
26
4
페이지
2390 ~ 2401