Medical- and Non-Medical-Grade Polycaprolactone Mesh Printing for Prolapse Repair: Establishment of Melt Electrowriting Prototype Parameters

被引:4
作者
Vaz, Maria F. R. [1 ]
Martins, Joana A. P. [1 ]
Pinheiro, Fabio [1 ,2 ]
Ferreira, Nuno M. [1 ,3 ]
Brandao, Sofia [4 ,5 ]
Alves, Jorge L. [1 ,3 ]
Fernandes, Antonio A. [1 ,3 ]
Parente, Marco P. L. [1 ,3 ]
Silva, Maria E. T. [1 ]
机构
[1] INEGI, LAETA, Campus FEUP R Dr Roberto Frias 400, P-4200465 Porto, Portugal
[2] Inst Biomed Sci Abel Salazar, R Jorge de Viterbo Ferreira 228, P-4050313 Porto, Portugal
[3] Univ Porto, Fac Engn, S-N R Dr Roberto Frias, P-4200455 Porto, Portugal
[4] Vale Ave Higher Sch Hlth, Cooperat Ensino Super Politecn & Univ, Polytech Hlth Inst North, Dept Diag & Therapeut Technol, P-4585116 Gandra, Portugal
[5] Vale Ave Higher Sch Hlth, Polytech Hlth Inst North, Dept Diag & Therapeut Technol, H2M Hlth & Human Movement Res Unit, P-4585116 Porto, Portugal
来源
APPLIED SCIENCES-BASEL | 2024年 / 14卷 / 21期
关键词
pelvic organ prolapse; non-medical- and medical-grade polycaprolactone; melt electrowriting; meshes; uniaxial tensile tests; PELVIC ORGAN PROLAPSE;
D O I
10.3390/app14219670
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Pelvic organ prolapse (POP) occurs due to inadequate support of female pelvic organs and is often treated with synthetic implants. However, complications like infections, mesh shrinkage, and tissue erosion can arise due to biomechanical incompatibilities with native tissue. This study aimed to optimize the melt electrowriting process using medical-grade biodegradable Poly(epsilon-caprolactone) (PCL) with a pellet extruder to print meshes that mimic the mechanical properties of vaginal tissue. Square and diagonal mesh designs with filament diameters of 80 mu m, 160 mu m, and 240 mu m were produced and evaluated through mechanical testing, comparing them to a commercial mesh and sheep vaginal tissue. The results showed that when comparing medical-grade with non-medical-grade square meshes, there was a 54% difference in the Secant modulus, with the non-medical-grade meshes falling short of matching the properties of vaginal tissue. The square-shaped medical-grade PCL mesh closely approximated vaginal tissue, showing only a 13.7% higher Secant modulus and a maximum stress of 0.29 MPa, indicating strong performance. Although the diagonal-shaped mesh exhibited a 14% stress difference, its larger Secant modulus discrepancy of 45% rendered it less suitable. In contrast, the commercial mesh was significantly stiffer, measuring 77.5% higher than vaginal tissue. The diagonal-shaped mesh may better match the stress-strain characteristics of vaginal tissue, but the square-shaped mesh offers stronger support due to its higher stress-strain curve. Overall, meshes printed with medical-grade PCL show superior performance compared to non-medical-grade meshes, suggesting that they are a promising avenue for future advancements in the field of POP repair.
引用
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页数:16
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