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Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography

Purpose: Evans Blue (EB) is an azo dye that binds quantitatively with serum albumin. With an albumin binding, NOTA conjugated truncated Evan's blue (NEB) dye derived PET tracer, we aimed to establish a strategy for evaluating vascular permeability in malignant tumors via non-invasive PET. Exper...

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Autores principales: Chen, Haojun, Tong, Xiao, Lang, Lixin, Jacobson, Orit, Yung, Bryant C., Yang, Xiangyu, Bai, Ruiliang, Kiesewetter, Dale O., Ma, Ying, Wu, Hua, Niu, Gang, Chen, Xiaoyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5525742/
https://www.ncbi.nlm.nih.gov/pubmed/28744320
http://dx.doi.org/10.7150/thno.19898
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author Chen, Haojun
Tong, Xiao
Lang, Lixin
Jacobson, Orit
Yung, Bryant C.
Yang, Xiangyu
Bai, Ruiliang
Kiesewetter, Dale O.
Ma, Ying
Wu, Hua
Niu, Gang
Chen, Xiaoyuan
author_facet Chen, Haojun
Tong, Xiao
Lang, Lixin
Jacobson, Orit
Yung, Bryant C.
Yang, Xiangyu
Bai, Ruiliang
Kiesewetter, Dale O.
Ma, Ying
Wu, Hua
Niu, Gang
Chen, Xiaoyuan
author_sort Chen, Haojun
collection PubMed
description Purpose: Evans Blue (EB) is an azo dye that binds quantitatively with serum albumin. With an albumin binding, NOTA conjugated truncated Evan's blue (NEB) dye derived PET tracer, we aimed to establish a strategy for evaluating vascular permeability in malignant tumors via non-invasive PET. Experimental design: Sixty-minute dynamic PET using [(18)F]FAl-NEB was performed in three xenograft tumor models including INS-1 rat insulinoma, UM-SCC-22B human head and neck carcinoma and U-87 MG human glioblastoma. Tumor vascular permeability was quantified by the difference of the slopes between tumor and blood time-activity curve (TACs, expressed as P(s)). The method was further substantiated by EB extraction and colorimetric assay and correlates with that calculated from dynamic contrast enhanced magnetic resonance imaging (DCE-MRI). The changes in tumor vasculature at different time points were assessed with NEB PET in U-87 MG and UM-SCC-22B tumor models after treatment with bevacizumab or doxorubicin. Result: The P(s) values calculated from tumor and blood TACs from multiple time-point static images are consistent with those from dynamic images. Moreover, the P(s) showed a positive and significant correlation with extracted EB concentration and K(PS-MRI) generated from DCE-MRI, which further confirmed the soundness of this methodology. The antiangiogenic effect of bevacizumab could be revealed by NEB PET in U-87 MG tumors as early as 8 hrs after therapy, demonstrated by a substantial decrease of P(s)(. )On the contrary, there was no significant change of P(s) in bevacizumab treated UM-SCC-22B tumors, compared with control group. However, the significant changes of P(s)were overestimated in doxorubicin treated UM-SCC-22B tumors. Conclusions: We successfully developed a relatively convenient and novel strategy to evaluate vascular permeability and blood volume using NEB PET. This method will be advantageous in evaluating vascular permeability, promoting drug delivery, and monitoring tumor response to therapeutics that affect tumor angiogenesis.
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spelling pubmed-55257422017-07-25 Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography Chen, Haojun Tong, Xiao Lang, Lixin Jacobson, Orit Yung, Bryant C. Yang, Xiangyu Bai, Ruiliang Kiesewetter, Dale O. Ma, Ying Wu, Hua Niu, Gang Chen, Xiaoyuan Theranostics Research Paper Purpose: Evans Blue (EB) is an azo dye that binds quantitatively with serum albumin. With an albumin binding, NOTA conjugated truncated Evan's blue (NEB) dye derived PET tracer, we aimed to establish a strategy for evaluating vascular permeability in malignant tumors via non-invasive PET. Experimental design: Sixty-minute dynamic PET using [(18)F]FAl-NEB was performed in three xenograft tumor models including INS-1 rat insulinoma, UM-SCC-22B human head and neck carcinoma and U-87 MG human glioblastoma. Tumor vascular permeability was quantified by the difference of the slopes between tumor and blood time-activity curve (TACs, expressed as P(s)). The method was further substantiated by EB extraction and colorimetric assay and correlates with that calculated from dynamic contrast enhanced magnetic resonance imaging (DCE-MRI). The changes in tumor vasculature at different time points were assessed with NEB PET in U-87 MG and UM-SCC-22B tumor models after treatment with bevacizumab or doxorubicin. Result: The P(s) values calculated from tumor and blood TACs from multiple time-point static images are consistent with those from dynamic images. Moreover, the P(s) showed a positive and significant correlation with extracted EB concentration and K(PS-MRI) generated from DCE-MRI, which further confirmed the soundness of this methodology. The antiangiogenic effect of bevacizumab could be revealed by NEB PET in U-87 MG tumors as early as 8 hrs after therapy, demonstrated by a substantial decrease of P(s)(. )On the contrary, there was no significant change of P(s) in bevacizumab treated UM-SCC-22B tumors, compared with control group. However, the significant changes of P(s)were overestimated in doxorubicin treated UM-SCC-22B tumors. Conclusions: We successfully developed a relatively convenient and novel strategy to evaluate vascular permeability and blood volume using NEB PET. This method will be advantageous in evaluating vascular permeability, promoting drug delivery, and monitoring tumor response to therapeutics that affect tumor angiogenesis. Ivyspring International Publisher 2017-06-14 /pmc/articles/PMC5525742/ /pubmed/28744320 http://dx.doi.org/10.7150/thno.19898 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Chen, Haojun
Tong, Xiao
Lang, Lixin
Jacobson, Orit
Yung, Bryant C.
Yang, Xiangyu
Bai, Ruiliang
Kiesewetter, Dale O.
Ma, Ying
Wu, Hua
Niu, Gang
Chen, Xiaoyuan
Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography
title Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography
title_full Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography
title_fullStr Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography
title_full_unstemmed Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography
title_short Quantification of Tumor Vascular Permeability and Blood Volume by Positron Emission Tomography
title_sort quantification of tumor vascular permeability and blood volume by positron emission tomography
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5525742/
https://www.ncbi.nlm.nih.gov/pubmed/28744320
http://dx.doi.org/10.7150/thno.19898
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