Effect of single-nanofibrous materials for epidural scar prevention after laminectomy: An experimental study in an animal model
Status Publisher Jazyk angličtina Země Německo Médium print-electronic
Typ dokumentu časopisecké články
PubMed
41099756
DOI
10.1007/s00586-025-09471-y
PII: 10.1007/s00586-025-09471-y
Knihovny.cz E-zdroje
- Klíčová slova
- Epidural scar, Nanofibers, Polycaprolactone, Polyvinyliden fluoride, Spinal surgery,
- Publikační typ
- časopisecké články MeSH
Charles University Hradec Kralove Czech Republic
Technical University of Liberec Liberec Czech Republic
University Hospital Hradec Kralove Hradec Kralove Czech Republic
Zobrazit více v PubMed
Cabukoglu C et al (2004) Effect of sagittal plane deformity of the lumbar spine on epidural fibrosis formation after laminectomy: an experimental study in the rat. Spine 29(20):2242–2247 PubMed DOI
Guyer RD, Patterson M, Ohnmeiss DD (2006) Failed back surgery syndrome: diagnostic evaluation. JAAOS-Journal Am Acad Orthop Surg 14(9):534–543 DOI
Cruccu G et al (2007) EFNS guidelines on neurostimulation therapy for neuropathic pain. Eur J Neurol 14(9):952–970 PubMed DOI
Erdyneev KT et al (2021) The use of various materials and drugs for the prevention of the development of postoperative lumbar epidural fibrosis: literature review. Хирургия позвоночника 18(2):83–92 DOI
Wang H et al (2018) Update on biomaterials for prevention of epidural adhesion after lumbar laminectomy. J Orthop Translation 13:41–49 DOI
Wang X, Ding B, Li B (2013) Biomimetic electrospun nanofibrous structures for tissue engineering. Mater Today 16(6):229–241 DOI
Hao D (2020) and Extracellular matrix mimicking nanofibrous scaffolds modified with mesenchymal stem Cell-Derived extracellular vesicles for improved vascularization. Front Bioeng Biotechnol 8:633
Cheng G (2021) Extracellular matrix imitation utilizing nanofibers-embedded biomimetic scaffolds for facilitating cartilage regeneration. Chem Eng J 410:128379 DOI
Ghajarieh A, Habibi S, Talebian A (2021) Biomedical applications of nanofibers. Russ J Appl Chem 94:847–872 DOI
Yan B et al (2022) Electrospun nanofibrous membrane for biomedical application. SN Appl Sci 4(6):172 PubMed DOI PMC
Shahriar SS et al (2019) Electrospinning nanofibers for therapeutics delivery. Nanomaterials 9(4):532 PubMed DOI PMC
Garg T, Rath G, Goyal AK (2015) Biomaterials-based nanofiber scaffold: targeted and controlled carrier for cell and drug delivery. J Drug Target 23(3):202–221 PubMed DOI
Anusiya G, Jaiganesh R (2022) A review on fabrication methods of nanofibers and a special focus on application of cellulose nanofibers. Carbohydr Polym Technol Appl 4:100262
Yu F et al (2015) Reconstructing spinal dura-like tissue using electrospun Poly (lactide-co-glycolide) membranes and dermal fibroblasts to seamlessly repair spinal dural defects in goats. J Biomater Appl 30(3):311–326 PubMed DOI
Liu S (2017) Electrospun fibrous membranes featuring sustained release of ibuprofen reduce adhesion and improve neurological function following lumbar laminectomy. J Controlled Release 264:1–13 DOI
Wang W (2021) Celecoxib-Loaded electrospun fibrous antiadhesion membranes reduce COX-2/PGE2 induced inflammation and epidural fibrosis in a rat failed back surgery syndrome model. Neural Plast 2021(1):6684176 PubMed PMC
Huang Y (2018) Icariin-loaded electrospun PCL/gelatin sub-microfiber mat for preventing epidural adhesions after laminectomy. Int J Nanomed 13:4831–4844 DOI
Shi R (2020) Effective delivery of mitomycin-C and meloxicam by double-layer electrospun membranes for the prevention of epidural adhesions. J Biomedical Mater Res B Appl Biomaterials 108(2):353–366 DOI
Fan Q, Wu H, Kong Q (2022) Superhydrophilic PLGA-Graft-PVP/PC nanofiber membranes for the prevention of epidural adhesion. Int J Nanomed 17:1423–1435 DOI
Teboho M (2024) and Electrospun PCL-Based materials for Health‐Care applications: an overview. Macromol Mater Eng 309.8 (2024): 2300388.
Rosendorf J (2021) Reinforcement of colonic anastomosis with improved ultrafine nanofibrous patch: experiment on pig. Biomedicines 9(2):102 PubMed DOI PMC
Hujerova M et al (2020) Novel double-layered planar scaffold combining electrospun PCL fibers and PVA hydrogels with high shape integrity and water stability. Mater Lett 263:127281 DOI
Rosendorf J (2021) Double-layered nanofibrous patch for prevention of anastomotic leakage and peritoneal Adhesions, experimental study. Vivo 35(2):731–741 DOI
Hujerova M (2022) Biomimetic hierarchical nanofibrous surfaces inspired by superhydrophobic Lotus leaf structure for preventing tissue adhesions. Mater Des 217:110661 DOI
Concha VOC (2024) Properties, characterization and biomedical applications of polyvinylidene fluoride (PVDF): a review. J Mater Sci 59(31):14185–14204 DOI
Klapstova A (2021) A PVDF electrospun antifibrotic composite for use as a glaucoma drainage implant. Mater Sci Eng C 119:111637 DOI
Nonwoven Standard, Procedures (2024) NWSP 120.1.R0 standard for Thickness of Nonwoven Fabrics
ČSN EN (2010) ISO 10993-5