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Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model

Purpose. Using the classical Ankaferd Blood Stopper (ABS) solution to create active hemostasis during partial nephrectomy (PN) may not be so effective due to insufficient contact surface between the ABS hemostatic liquid agent and the bleeding area. In order to broaden the contact surface, we genera...

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Autores principales: Huri, Emre, Beyazit, Yavuz, Mammadov, Rashad, Toksoz, Sila, Tekinay, Ayse B., Guler, Mustafa O., Ustun, Huseyin, Kekilli, Murat, Dadali, Mumtaz, Celik, Tugrul, Astarci, Müzeyyen, Haznedaroglu, Ibrahim C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3590747/
https://www.ncbi.nlm.nih.gov/pubmed/23509463
http://dx.doi.org/10.1155/2013/949460
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author Huri, Emre
Beyazit, Yavuz
Mammadov, Rashad
Toksoz, Sila
Tekinay, Ayse B.
Guler, Mustafa O.
Ustun, Huseyin
Kekilli, Murat
Dadali, Mumtaz
Celik, Tugrul
Astarci, Müzeyyen
Haznedaroglu, Ibrahim C.
author_facet Huri, Emre
Beyazit, Yavuz
Mammadov, Rashad
Toksoz, Sila
Tekinay, Ayse B.
Guler, Mustafa O.
Ustun, Huseyin
Kekilli, Murat
Dadali, Mumtaz
Celik, Tugrul
Astarci, Müzeyyen
Haznedaroglu, Ibrahim C.
author_sort Huri, Emre
collection PubMed
description Purpose. Using the classical Ankaferd Blood Stopper (ABS) solution to create active hemostasis during partial nephrectomy (PN) may not be so effective due to insufficient contact surface between the ABS hemostatic liquid agent and the bleeding area. In order to broaden the contact surface, we generated a chimeric hemostatic agent, ABS nanohemostat, via combining a self-assembling peptide amphiphile molecule with the traditional Ankaferd hemostat. Materials and Methods. In order to generate ABS nanohemostat, a positively charged Peptide Amphiphile (PA) molecule was synthesized by using solid phase peptide synthesis. For animal experiments, 24 Wistar rats were divided into the following 4 groups: Group 1: control; Group 2: conventional PN with only 0.5 ml Ankaferd hemostat; Group 3: conventional PN with ABS + peptide gel; Group 4: conventional PN with only 0.5 ml peptide solution. Results. Mean warm ischemia times (WITs) were 232.8  ±  56.3, 65.6 ± 11.4, 75.5 ± 17.2, and 58.1 ± 17.6 seconds in Group 1 to Group 4, respectively. Fibrosis was not different among the groups, while inflammation was detected to be significantly different in G3 and G4. Conclusions. ABS nanohemostat has comparable hemostatic efficacy to the traditional Ankaferd hemostat in the partial nephrectomy experimental model. Elucidation of the cellular and tissue effects of this chimeric compound may establish a catalytic spark and open new avenues for novel experimental and clinical studies in the battlefield of hemostasis.
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spelling pubmed-35907472013-03-18 Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model Huri, Emre Beyazit, Yavuz Mammadov, Rashad Toksoz, Sila Tekinay, Ayse B. Guler, Mustafa O. Ustun, Huseyin Kekilli, Murat Dadali, Mumtaz Celik, Tugrul Astarci, Müzeyyen Haznedaroglu, Ibrahim C. Int J Biomater Research Article Purpose. Using the classical Ankaferd Blood Stopper (ABS) solution to create active hemostasis during partial nephrectomy (PN) may not be so effective due to insufficient contact surface between the ABS hemostatic liquid agent and the bleeding area. In order to broaden the contact surface, we generated a chimeric hemostatic agent, ABS nanohemostat, via combining a self-assembling peptide amphiphile molecule with the traditional Ankaferd hemostat. Materials and Methods. In order to generate ABS nanohemostat, a positively charged Peptide Amphiphile (PA) molecule was synthesized by using solid phase peptide synthesis. For animal experiments, 24 Wistar rats were divided into the following 4 groups: Group 1: control; Group 2: conventional PN with only 0.5 ml Ankaferd hemostat; Group 3: conventional PN with ABS + peptide gel; Group 4: conventional PN with only 0.5 ml peptide solution. Results. Mean warm ischemia times (WITs) were 232.8  ±  56.3, 65.6 ± 11.4, 75.5 ± 17.2, and 58.1 ± 17.6 seconds in Group 1 to Group 4, respectively. Fibrosis was not different among the groups, while inflammation was detected to be significantly different in G3 and G4. Conclusions. ABS nanohemostat has comparable hemostatic efficacy to the traditional Ankaferd hemostat in the partial nephrectomy experimental model. Elucidation of the cellular and tissue effects of this chimeric compound may establish a catalytic spark and open new avenues for novel experimental and clinical studies in the battlefield of hemostasis. Hindawi Publishing Corporation 2013 2013-02-20 /pmc/articles/PMC3590747/ /pubmed/23509463 http://dx.doi.org/10.1155/2013/949460 Text en Copyright © 2013 Emre Huri et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Huri, Emre
Beyazit, Yavuz
Mammadov, Rashad
Toksoz, Sila
Tekinay, Ayse B.
Guler, Mustafa O.
Ustun, Huseyin
Kekilli, Murat
Dadali, Mumtaz
Celik, Tugrul
Astarci, Müzeyyen
Haznedaroglu, Ibrahim C.
Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model
title Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model
title_full Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model
title_fullStr Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model
title_full_unstemmed Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model
title_short Generation of Chimeric “ABS Nanohemostat” Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model
title_sort generation of chimeric “abs nanohemostat” complex and comparing its histomorphological in vivo effects to the traditional ankaferd hemostat in controlled experimental partial nephrectomy model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3590747/
https://www.ncbi.nlm.nih.gov/pubmed/23509463
http://dx.doi.org/10.1155/2013/949460
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