4.7 Article

Integration of nondegradable polystyrene and degradable gelatin in a core-sheath nanofibrous patch for pelvic reconstruction

Journal

INTERNATIONAL JOURNAL OF NANOMEDICINE
Volume 10, Issue -, Pages 3193-3201

Publisher

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S75802

Keywords

core-sheath nanofibrous patch; polystyrene; gelatin; pelvic reconstruction

Funding

  1. International Science and Technology Cooperation Program of China [2013DFA31820]
  2. International Science and Technology Cooperation Program of Chongqing [CSTC2013gjhz80002]
  3. Chongqing Basic Scientific Research grant [cstc2013jcyjC80001]
  4. Chongqing Agriculture Development Grant [14408, 12402]
  5. China 863 Project NSERC [2014AA021602]
  6. CIHR Manitoba Partnership

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Pelvic organ prolapse (POP) is a serious health issue affecting many adult women. Complications of POP include pelvic pressure, pelvic pain, and problems in emptying their bowels or bladder. Sometimes, POP may even cause urinary outflow obstruction and lead to bladder or kidney infections. Currently, synthetic and naturally derived materials have been chosen for treatment of POP to reduce the high recurrence rates after surgical interventions. However, existing materials for POP treatment cannot meet the clinical requirements in terms of biocompatibility, mechanics, and minimal risk of rejection. Especially, erosion in synthetic polymers and rapid degradation in natural polymers limit their further applications in clinics. To address these concerns, we report a novel POP replacement using core-sheath polystyrene/gelatin electrospun nanofiber mesh. The outside gelatin sheath provides a hydrophilic surface and implantable integrity between host and guest, while the inner PS core offers the necessary mechanical support. The composite mesh shows graft accommodation in pelvic submucosa after implantation in vivo, as shown in hematoxylin-eosin staining and T helper cell phenotype and macrophage phenotype stainings. Qualitative analysis of inducible nitric oxide synthase, arginase, interferon-gamma, and interleukin-10 gene expressions also indicates that the implanted composite mesh switches to accommodation mode 2 weeks postimplantation. Thus, these novel core-sheath polystyrene/gelatin nanofibrous membranes are promising in pelvic reconstruction.

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