Zobrazeno 1 - 10
of 34
pro vyhledávání: '"Nina, Bionda"'
Publikováno v:
International Journal of Biomaterials, Vol 2021 (2021)
Objective. Preliminary biological activity assessment of a novel bioengineered wound product (APIS®, SweetBio, Inc., Memphis, TN, USA), a synthesis of gelatin, Manuka honey, and hydroxyapatite, with in vitro indications to protect, instill balance t
Externí odkaz:
https://doaj.org/article/aa887e42dcab4e07be9b9098884affcb
Publikováno v:
International journal of molecular sciences. 23(18)
Many commercially available wound products focus on improving one stage of the wound healing cascade. While this targeted approach works for specific wounds, there is a need for products that can reliably and comprehensively progress a wound through
Autor:
Mark L Jewell, Nina Bionda, Alison V Moran, Elizabeth J Bevels, Hillary L Jewell, Sara Hariri, Braden K Leung
Publikováno v:
Aesthetic Surgery Journal
Background Biofilm-associated bacteria have been observed in both breast implant revision and tissue expander-implant exchange surgeries. The utilization of antimicrobial solutions in breast surgery, especially those containing triple antibiotics (TA
Publikováno v:
Wound Management & Prevention. 66:31-42
Biofilms are believed to be a source of chronic inflammation in non-healing wounds. PURPOSE: In this study, the pre-clinical anti-biofilm efficacy of several wound cleansers was examined using the Calgary minimum biofilm eradication concentration (MB
Autor:
Marta M. Duarte, Inês V. Silva, Anthony R. Eisenhut, Nina Bionda, Ana Rita C. Duarte, Ana L. Oliveira
Publikováno v:
Materials horizons. 9(3)
The demand for tissue and organ transplantation worldwide has led to an increased interest in the development of new therapies to restore normal tissue function through transplantation of injured tissue with biomedically engineered matrices. Among th
Autor:
Nina Bionda, Lasse Saaby, Rikke Heidemann Olsen, Jørn B. Christensen, Ellen E Lantz, Søren W Svenningsen, Maria F Aragao, Troels Ronco, Anders Permin
Publikováno v:
Ronco, T, Aragao, M F, Svenningsen, S, Christensen, J B, Permin, A, Saaby, L, Bionda, N, Lantz, E E & Olsen, R H 2021, ' Efficacy of a novel antimicrobial hydrogel for eradication of Staphylococcus epidermidis, Staphylococcus aureus and Cutibacterium acnes from preformed biofilm and treatment performance in an in vivo MRSA wound model ', JAC-Antimicrobial Resistance, vol. 3, no. 3, dlab108 . https://doi.org/10.1093/jacamr/dlab108
Background Bacterial biofilm formation is a complicating factor in the antimicrobial treatment of bacterial infections. Objectives In this study, we assessed the impact of a novel hydrogel with the active antimicrobial compound JBC 1847 on eradicatio
Autor:
Troels, Ronco, Maria F, Aragao, Søren, Svenningsen, Jørn B, Christensen, Anders, Permin, Lasse, Saaby, Nina, Bionda, Ellen E, Lantz, Rikke H, Olsen
Publikováno v:
JAC-Antimicrobial Resistance
Background Bacterial biofilm formation is a complicating factor in the antimicrobial treatment of bacterial infections. Objectives In this study, we assessed the impact of a novel hydrogel with the active antimicrobial compound JBC 1847 on eradicatio
Publikováno v:
International Journal of Biomaterials, Vol 2021 (2021)
International Journal of Biomaterials
International Journal of Biomaterials
Objective. Preliminary biological activity assessment of a novel bioengineered wound product (APIS®, SweetBio, Inc., Memphis, TN, USA), a synthesis of gelatin, Manuka honey, and hydroxyapatite, with in vitro indications to protect, instill balance t
Autor:
Ann Beal, Salamone, Joseph C, Salamone, Rebecca Erin, McMahon, Suprena, Poleon, Nina, Bionda, Peter, D'Arpa
Publikováno v:
Wounds : a compendium of clinical research and practice. 32(8)
Biofilm in chronic wounds impedes the wound healing process. Each biofilm has differing characteristics requiring a multifaceted approach for removal while maintaining a surrounding environment conducive to wound healing.In this study, 3 of the compo
Autor:
Yangmei Li, Nina Bionda, Renee Fleeman, Hongjie Wang, Richard A. Houghten, Akihiko Ozawa, Lindsey N. Shaw
Publikováno v:
Bioorganic & Medicinal Chemistry. 24:5633-5638
In an effort to develop novel antimicrobial agents against drug-resistant bacterial infections, 5,6-dihydroimidazo[2,1- b ]thiazole compounds were synthesized and tested for their antimicrobial activity. Eight compounds comprised by two sub-scaffolds