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Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking

Tissue-derived RNA, DNA and protein samples become more and more crucial for molecular detection in clinical research, personalized and targeted cancer therapy. This study evaluated how to biobanking colorectal tissues through examining the influences of cold ischemic time and freeze-thaw cycles on...

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Autores principales: Fan, Xin-Juan, Huang, Yan, Wu, Pei-Huang, Yin, Xin-Ke, Yu, Xi-Hu, Fu, Xin-Hui, Feng, Li-Li, Wang, Yun-Long, Yi, Hong-Jun, Chen, Zhi-Ting, Yin, Jun-Xiang, Zhang, Da-Lu, Feng, Wei-Xing, Bai, Shao-Mei, Kim, Taewan, Mills, Gordon B., Lu, Yi-Ling, Wan, Xiang-Bo, Wang, Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6775519/
https://www.ncbi.nlm.nih.gov/pubmed/31598170
http://dx.doi.org/10.7150/jca.29372
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author Fan, Xin-Juan
Huang, Yan
Wu, Pei-Huang
Yin, Xin-Ke
Yu, Xi-Hu
Fu, Xin-Hui
Feng, Li-Li
Wang, Yun-Long
Yi, Hong-Jun
Chen, Zhi-Ting
Yin, Jun-Xiang
Zhang, Da-Lu
Feng, Wei-Xing
Bai, Shao-Mei
Kim, Taewan
Mills, Gordon B.
Lu, Yi-Ling
Wan, Xiang-Bo
Wang, Lei
author_facet Fan, Xin-Juan
Huang, Yan
Wu, Pei-Huang
Yin, Xin-Ke
Yu, Xi-Hu
Fu, Xin-Hui
Feng, Li-Li
Wang, Yun-Long
Yi, Hong-Jun
Chen, Zhi-Ting
Yin, Jun-Xiang
Zhang, Da-Lu
Feng, Wei-Xing
Bai, Shao-Mei
Kim, Taewan
Mills, Gordon B.
Lu, Yi-Ling
Wan, Xiang-Bo
Wang, Lei
author_sort Fan, Xin-Juan
collection PubMed
description Tissue-derived RNA, DNA and protein samples become more and more crucial for molecular detection in clinical research, personalized and targeted cancer therapy. This study evaluated how to biobanking colorectal tissues through examining the influences of cold ischemic time and freeze-thaw cycles on RNA, DNA and protein integrity. Here, 144 pairs of tumor and normal colorectal tissues were used to investigate the impact of cold ischemic times (0-48h) on RNA, DNA and protein integrity at on ice or room temperature conditions. Additionally, 45 pairs of tissues experienced 0-9 freeze-thaw cycles, and then the RNA, DNA and protein quality were analyzed. On ice, RNA, DNA and protein from colorectal tumor and normal tissues were all stable up to 48h after surgery. At room temperature, RNA in colorectal tumor and normal tissues began to degrade at 8h and 24h, respectively. Meanwhile, the tumor tissues DNA degradation occurred at 24h after surgery at room temperature. Similarly, the protein expression level of tumor and normal tissues began to change at 24h after the surgery at room temperature. Interestingly, tissue RNA and DNA remained stable even after 9 freeze-thaw cycles, whereas the proteins levels were remarkably changed after 7 freeze-thaw cycles. This study provided a useful evidence on how to store human colorectal tissues for biobanking. Preserving the surgical colorectal tissue on ice was an effective way to prevent RNA, DNA and protein degradation. Importantly, more than 7 repeated freeze-thaw cycles were not recommended for colorectal tissues.
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spelling pubmed-67755192019-10-09 Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking Fan, Xin-Juan Huang, Yan Wu, Pei-Huang Yin, Xin-Ke Yu, Xi-Hu Fu, Xin-Hui Feng, Li-Li Wang, Yun-Long Yi, Hong-Jun Chen, Zhi-Ting Yin, Jun-Xiang Zhang, Da-Lu Feng, Wei-Xing Bai, Shao-Mei Kim, Taewan Mills, Gordon B. Lu, Yi-Ling Wan, Xiang-Bo Wang, Lei J Cancer Research Paper Tissue-derived RNA, DNA and protein samples become more and more crucial for molecular detection in clinical research, personalized and targeted cancer therapy. This study evaluated how to biobanking colorectal tissues through examining the influences of cold ischemic time and freeze-thaw cycles on RNA, DNA and protein integrity. Here, 144 pairs of tumor and normal colorectal tissues were used to investigate the impact of cold ischemic times (0-48h) on RNA, DNA and protein integrity at on ice or room temperature conditions. Additionally, 45 pairs of tissues experienced 0-9 freeze-thaw cycles, and then the RNA, DNA and protein quality were analyzed. On ice, RNA, DNA and protein from colorectal tumor and normal tissues were all stable up to 48h after surgery. At room temperature, RNA in colorectal tumor and normal tissues began to degrade at 8h and 24h, respectively. Meanwhile, the tumor tissues DNA degradation occurred at 24h after surgery at room temperature. Similarly, the protein expression level of tumor and normal tissues began to change at 24h after the surgery at room temperature. Interestingly, tissue RNA and DNA remained stable even after 9 freeze-thaw cycles, whereas the proteins levels were remarkably changed after 7 freeze-thaw cycles. This study provided a useful evidence on how to store human colorectal tissues for biobanking. Preserving the surgical colorectal tissue on ice was an effective way to prevent RNA, DNA and protein degradation. Importantly, more than 7 repeated freeze-thaw cycles were not recommended for colorectal tissues. Ivyspring International Publisher 2019-08-27 /pmc/articles/PMC6775519/ /pubmed/31598170 http://dx.doi.org/10.7150/jca.29372 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Fan, Xin-Juan
Huang, Yan
Wu, Pei-Huang
Yin, Xin-Ke
Yu, Xi-Hu
Fu, Xin-Hui
Feng, Li-Li
Wang, Yun-Long
Yi, Hong-Jun
Chen, Zhi-Ting
Yin, Jun-Xiang
Zhang, Da-Lu
Feng, Wei-Xing
Bai, Shao-Mei
Kim, Taewan
Mills, Gordon B.
Lu, Yi-Ling
Wan, Xiang-Bo
Wang, Lei
Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking
title Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking
title_full Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking
title_fullStr Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking
title_full_unstemmed Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking
title_short Impact of Cold Ischemic Time and Freeze-Thaw Cycles on RNA, DNA and Protein Quality in Colorectal Cancer Tissues Biobanking
title_sort impact of cold ischemic time and freeze-thaw cycles on rna, dna and protein quality in colorectal cancer tissues biobanking
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6775519/
https://www.ncbi.nlm.nih.gov/pubmed/31598170
http://dx.doi.org/10.7150/jca.29372
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