相信你的直觉:建立对胃肠道模型的信心--科学现状和使用环境概述。

IF 4.5 2区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL Altex-Alternatives To Animal Experimentation Pub Date : 2024-01-01 Epub Date: 2024-05-15 DOI:10.14573/altex.2403261
Susan Debad, David Allen, Omari Bandele, Colin Bishop, Michaela Blaylock, Paul Brown, Maureen K Bunger, Julia Y Co, Lynn Crosby, Amber B Daniel, Steve S Ferguson, Kevin Ford, Gonçalo Gamboa da Costa, Kristin H Gilchrist, Matthew W Grogg, Maureen Gwinn, Thomas Hartung, Simon P Hogan, Ye Eun Jeong, George En Kass, Elaina Kenyon, Nicole C Kleinstreuer, Ville Kujala, Patrik Lundquist, Joanna Matheson, Shaun D McCullough, Angela Melton-Celsa, Steven Musser, Ilung Oh, Oluwakemi B Oyetade, Sarita U Patil, Elijah J Petersen, Nakissa Sadrieh, Christie M Sayes, Benjamin S Scruggs, Yu-Mei Tan, Bill Thelin, M Tyler Nelson, José V Tarazona, John F Wambaugh, Jun-Young Yang, Changwoo Yu, Suzanne Fitzpatrick
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引用次数: 0

摘要

题为 "相信你的肠道 "的系列网络研讨会和讲习班:建立对胃肠道模型的信心--科学现状和使用背景概述》由 NICEATM、NIEHS、FDA、EPA、CPSC、DoD 和约翰霍普金斯大学动物试验替代品中心 (CAAT) 共同组织,于 2023 年 10 月 11-12 日在美国马里兰州贝塞斯达的国立卫生研究院举办。用于评估与胃肠道 (GIT) 相关的毒性问题的新方法 (NAM) 有望解决与动物评估相关的一些局限性。胃肠道新方法的复杂程度各不相同,从基于二维单层细胞系的系统到源自人类原代细胞的复杂三维类器官系统。尽管 GIT NAMs 取得了进步,但在完全复制人类 GIT 内发生的复杂相互作用和过程方面仍然存在挑战。演讲和讨论涉及将 NAMs 纳入风险评估框架的监管需求、挑战和创新;探讨了使用 NAMs 评估全身毒性、了解吸收和药代动力学、评估 GIT 毒性和评估潜在过敏性的科学现状;讨论了 GIT NAMs 的优势、局限性和数据缺口,以及在监管环境中使用这些模型建立信心所需的步骤。
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Trust your gut: Establishing confidence in gastrointestinal models - An overview of the state of the science and contexts of use.

The webinar series and workshop titled “Trust Your Gut: Establishing Confidence in Gastrointestinal Models – An Overview of the State of the Science and Contexts of Use” was co-organized by NICEATM, NIEHS, FDA, EPA, CPSC, DoD, and the Johns Hopkins Center for Alternatives to Animal Testing (CAAT) and hosted at the National Institutes of Health in Bethesda, MD, USA on October 11-12, 2023. New approach methods (NAMs) for assessing issues of gastrointestinal tract (GIT)- related toxicity offer promise in addressing some of the limitations associated with animal-based assessments. GIT NAMs vary in complexity, from two-dimensional monolayer cell line-based systems to sophisticated 3-dimensional organoid systems derived from human primary cells. Despite advances in GIT NAMs, challenges remain in fully replicating the complex interactions and pro­cesses occurring within the human GIT. Presentations and discussions addressed regulatory needs, challenges, and innovations in incorporating NAMs into risk assessment frameworks; explored the state of the science in using NAMs for evaluating systemic toxicity, understanding absorption and pharmacokinetics, evaluating GIT toxicity, and assessing potential allergenicity; and discussed strengths, limitations, and data gaps of GIT NAMs as well as steps needed to establish confidence in these models for use in the regulatory setting.

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来源期刊
Altex-Alternatives To Animal Experimentation
Altex-Alternatives To Animal Experimentation MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
7.70
自引率
8.90%
发文量
89
审稿时长
2 months
期刊介绍: ALTEX publishes original articles, short communications, reviews, as well as news and comments and meeting reports. Manuscripts submitted to ALTEX are evaluated by two expert reviewers. The evaluation takes into account the scientific merit of a manuscript and its contribution to animal welfare and the 3R principle.
期刊最新文献
Systematic analysis of read-across adaptations in testing proposal evaluations by the European Chemicals Agency. Impact of gut permeability on estimation of oral bioavailability for chemicals in commerce and the environment. Software tools for systematic review literature screening and data extraction: Qualitative user experiences from succinct formal tests. The Virtual Human Platform for Safety Assessment (VHP4Safety) project: Next generation chemical safety assessment based on human data. Characterization of the C17.2 cell line as testing system for endocrine disruption-induced developmental neurotoxicity.
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