Pelvic organ prolapse (POP) is a condition that affects the integrity, structure, and mechanical support of the pelvic floor. The organs in the pelvic floor are supported by different anatomical structures, including muscles, ligaments, and pelvic fascia. The uterosacral ligament (USL) is a critical load-bearing structure, and injury to the USL results in a higher risk of developing POP. The present protocol describes the dissection of murine USLs and the pelvic floor organs alongside the acquisition of unique data on the USL biochemical composition and function using Raman spectroscopy and the evaluation of mechanical behavior. Mice are an invaluable model for preclinical research, but dissecting the murine USL is a difficult and intricate process. This procedure presents an approach to guide the dissection of murine pelvic floor tissues, including the USL, to enable multiple assessments and characterization. This work aims to aid the dissection of pelvic floor tissues by basic scientists and engineers, thus expanding the accessibility of research on the USL and pelvic floor conditions and the preclinical study of women's health using mouse models.
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http://dx.doi.org/10.3791/65074 | DOI Listing |
Adv Healthc Mater
January 2025
Gansu Provincial Maternity and Child-Care Hospital, Lanzhou, 730050, China.
Implantation of a mesh loaded with mesenchymal stem cells (MSCs) is a common approach for the treatment of pelvic organ prolapse (POP). The mesh provides effective support to pelvic floor, enhancing muscle contraction of pelvic organs while reducing inflammation. In this study, a fully degradable mesh is designed for the treatment of POP, utilizing MSCs stimulated by a galvanic battery-powered electric field.
View Article and Find Full Text PDFUrogynecology (Phila)
December 2024
University of Pittsburgh, Pittsburgh, PA.
Importance: Wound complications after obstetric anal sphincter injury (OASI) can amplify morbidity and affect quality of life.
Objective: The objective of this study was to evaluate for characteristics associated with wound complications after OASI.
Study Design: This was a retrospective cohort study of patients with an OASI who were evaluated in a postpartum pelvic floor healing clinic between November 1, 2020, and May 16, 2023.
Urogynecology (Phila)
January 2025
From the Division of Urogynecology and Reconstructive Pelvic Surgery, TriHealth, Cincinnati, OH.
Importance: This study is important as it challenges the effectiveness of silver-coated catheters in reducing urinary tract infections (UTIs) after pelvic floor surgery (PFS).
Objective: The aim of this study was to investigate the incidence of UTIs in patients using silver-coated silicone transurethral indwelling catheters (TICs) compared with standard silicone TICs among women with postoperative urinary retention following PFS.
Study Design: This was a double-blind, randomized controlled trial of women undergoing PFS between June 2022 and February 2024 with postoperative urinary retention.
Front Public Health
January 2025
School of Obstetrics and Childcare, Faculty of Medicine, Universidad Andrés Bello, Santiago, Chile.
Background: Urinary incontinence (UI), which can be classified as stress, urgency, or mixed, represents a public health problem that mainly affects adult women. This study aimed to determine the prevalence, association of sociodemographic and obstetric factors with the types of UI as well as the perceived impact on quality of life of women attending primary health facilities in the Tacna region from Peru.
Methods: A quantitative, non-experimental, correlational, and cross-sectional study was conducted.
Theranostics
January 2025
Lab of Molecular Imaging and Translational Medicine (MITM), Engineering Research Center of Molecular and Neuro Imaging, Ministry of Education, School of Life Science and Technology, Xidian University & International Joint Research Center for Advanced Medical Imaging and Intelligent Diagnosis and Treatment, Xi'an, Shaanxi, 710126, P. R. China.
The quick and accurate detection of colorectal cancer (CRC) is essential for improving the treatment efficacy and patient survival, which nevertheless remains challenging due to low specificity and sensitivity of current CRC diagnostic approaches. Therefore, providing a robust solution for real-time and accurate tumor delineation is highly desirable. We report a novel polyacrylic acid-mediated strategy to develop the endogenous hydrogen sulfide (HS)-activated NIR-II probe DCNP@PB for specific visualization of CRC and image-guided tumor surgery.
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