Open Access. Powered by Scholars. Published by Universities.®
Biomedical and Dental Materials Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Institution
- Keyword
-
- Bacterial inhibition (1)
- Bio-imaging (1)
- Biomaterials (1)
- Biomedicine (1)
- Blood coagulation disorders (1)
-
- Cancer therapy (1)
- E. coli (1)
- Gynecology (1)
- Hemostatics (1)
- Immune response (1)
- Laparoscopy (1)
- M1 macrophages (1)
- M2 macrophages (1)
- MRSA (1)
- MXene/polymer nanocomposites (1)
- Macrophage polarization (1)
- Material properties (1)
- Nitric oxide (1)
- Obstetrics (1)
- Operative surgical procedures (1)
- S. epidermidis (1)
- SNAP-PDMS (1)
- Surgery (1)
- Tissue engineering (1)
- Tissue regeneration (1)
- Publication
- Publication Type
Articles 1 - 4 of 4
Full-Text Articles in Biomedical and Dental Materials
Use Of Topical Hemostatic Agents In A Gynecologic Patient With Coagulopathy, Alexis O'Connell, Syeda Zainab Shah
Use Of Topical Hemostatic Agents In A Gynecologic Patient With Coagulopathy, Alexis O'Connell, Syeda Zainab Shah
HCA Healthcare Journal of Medicine
Introduction
The use of topical hemostatic agents has become common during surgical interventions. There is a wide variety of substances available to augment clotting, ranging from physical agents to topical thrombin combinations. Application of these agents in gynecologic surgery in patients with existing coagulopathies has not been studied.
Case Presentation
A 62-year-old woman with an inferior vena cava filter and a history of multiple deep vein thromboses presented to the clinic with pelvic pain, stress urinary incontinence, and uterovaginal prolapse. She underwent a total vaginal hysterectomy, sacral colpopexy, tension-free vaginal tape sling, and cystourethroscopy. Warfarin was cross titrated to enoxaparin …
The Impact Of Biomaterial Characteristics On Macrophage Phenotypes In Tissue Engineering: A Review, Julian Jackson, Hani Samarah, William Palmer, Zachary Kaplan, Marianna Nicodem, Parvesh Kumar, Spenser Short, Kelly Bridgham, Larry Harshyne, Joseph Curry
The Impact Of Biomaterial Characteristics On Macrophage Phenotypes In Tissue Engineering: A Review, Julian Jackson, Hani Samarah, William Palmer, Zachary Kaplan, Marianna Nicodem, Parvesh Kumar, Spenser Short, Kelly Bridgham, Larry Harshyne, Joseph Curry
Department of Otolaryngology - Head and Neck Surgery Faculty Papers
Macrophages are highly plastic cells central to pathogen removal, tissue regeneration, and inflammation, making them key targets in biomaterial design for improved clinical outcomes. Foreign body responses (FBRs) to implanted biomaterials often involve excessive macrophage-mediated inflammation, leading to fibrotic encapsulation, infection, and implant failure. Advances in tissue engineering demonstrate that macrophage polarization - the transition from pro-inflammatory M1 to anti-inflammatory M2 phenotypes - can be influenced by biomaterial properties to mitigate these responses and enhance regeneration. This review synthesizes the relationship between biomaterial properties, such as surface chemistry, structure, and stiffness, and their ability to modulate macrophage behavior. Key innovations, …
Biomedical Mxene-Polymer Nanocomposites: Advancing Photothermal Therapy, Antibacterial Action, And Smart Drug Delivery: A Review, Ali Mohammad Amani, Lobat Tayebi, Ehsan Vafa, Mohammad Javad Azizli, Milad Abbasi, Ahmad Vaez, Hesam Kamyab, Daniel Simancas-Racines, Shreeshivadasan Chelliapan
Biomedical Mxene-Polymer Nanocomposites: Advancing Photothermal Therapy, Antibacterial Action, And Smart Drug Delivery: A Review, Ali Mohammad Amani, Lobat Tayebi, Ehsan Vafa, Mohammad Javad Azizli, Milad Abbasi, Ahmad Vaez, Hesam Kamyab, Daniel Simancas-Racines, Shreeshivadasan Chelliapan
Electrical & Computer Engineering Faculty Publications
MXenes are hydrophilic, conductive, tunable, and biocompatible two-dimensional ceramic materials prepared by etching the 'A' layer from their precursor MAX phases. Although MXenes show exceptional promise in photothermal therapy, biosensing, and regenerative medicine, they face challenges such as oxidative instability in physiological environments, limited drug-loading capacity, and unpredictable immune responses. To address these limitations, MXene/polymer nanocomposites incorporating both synthetic polymers (e.g., polyethylene glycol (PEG), polyvinyl alcohol (PVA), polyvinylpyrrolidone (PVP), and polylactic-co-glycolic acid (PLGA)) and natural biopolymers (e.g., cellulose nanofiber, gelatin, chitosan, hyaluronic acid, and soybean phospholipids) have been developed. These composites enhance functionality for biomedical applications such as photothermal cancer …
Inhibition Of Bacterial Growth And Prevention Of Bacterial Adhesion With Localized Nitric Oxide Delivery, Julia Osborne
Inhibition Of Bacterial Growth And Prevention Of Bacterial Adhesion With Localized Nitric Oxide Delivery, Julia Osborne
Dissertations, Master's Theses and Master's Reports
Bacterial infections continue to be a problem at the site of an indwelling medical device, and over the years, various bacterial strains have become more resistant to current antibiotic treatments. Bacterial infection at an indwelling medical device can be dangerous and affect the performance of the medical device which can ultimately lead to the failure of the device due to bacterial resistance to treatment.
Nitric Oxide (NO) has been shown to possess antibacterial properties to prevent and inhibit bacterial growth. NO releasing coatings on indwelling medical devices could provide a reduction in bacterial infections that occur at the device site …