LUNGBANK:为肺癌多组学综合分析和 P-medicine 应用量身定制的新型生物库策略。

Turkish journal of biology = Turk biyoloji dergisi Pub Date : 2024-05-28 eCollection Date: 2024-01-01 DOI:10.55730/1300-0152.2696
Dilek Demircan Çeker, Volkan Baysungur, Serdar Evman, İlker Kolbaş, Abdurrahim Gördebil, Sinem M Nalbantoğlu, Yusuf Tambağ, Ömer Kaçar, Ahmet Midi, Hatice Aslanoğlu, Nülüfer Kara, Nilgün Algan, Ayberk Boyacioğlu, Betül Karademir Yilmaz, Ali Şahin, Hivda Ülbeği Polat, Abidin Şehitoğullari, Ali Osman Çibikdiken, Mücahit Büyükyilmaz, İbrahim Berkan Aydilek, Abdulkerim Eneş, Sevde Küçüker, Fatih Karakaya, İhsan Boyaci, Mahmut Gümüş, Onur Şenol, Merve Öztuğ, Evren Saban, Ömer Soysal, Nur Büyükpinarbaşili, Akif Turna, Mehmet Zeki Günlüoğlu, Aslı Çakir, Şaban Tekin, Uygar Tazebay, Abdullah Karadağ
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引用次数: 0

摘要

背景/目的:LUNGBANK 是 LUNGMARK 项目的一部分,是专门用于肺癌研究的生物样本库的先驱。它采用尖端技术简化生物样本的处理,确保获得高质量的样本。这一基础设施还具备强大的数据管理能力,能够无缝整合各种数据集。LUNGBANK 的功能不仅仅是一个储存库,它还是一个对推动肺癌研究至关重要的先进平台,有望促进重大发现:LUNGBANK 经过精心设计,优化了生物样本处理的每个阶段,从收集、储存到处理。严谨的标准操作程序和严格的质量控制措施保证了所采集生物样本的完整性。先进的数据管理协议有助于有效整合和分析各种数据集,提高肺癌研究的深度和广度:结果:LUNGBANK 已经积累了全面的生物样本,这对揭示肺癌错综复杂的分子机制至关重要。先进技术的整合确保了顶级数据的获取,促进了转化研究和组织学研究的突破。此外,LUNGBANK 患者衍生系统的建立也凸显了其在个性化医疗方法中的关键作用:LUNGBANK 的建立是应对肺癌研究重大挑战的一个重要里程碑。通过为研究人员提供高质量的生物样本和先进的研究工具,LUNGBANK 不仅支持了 LUNGMARK 项目的目标,还为更广泛的个性化医疗做出了贡献。它有望增强我们对肺癌发病、进展和针对患者个体需求的治疗干预的了解,从而推动该领域朝着更有效的诊断和治疗策略迈进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LUNGBANK: a novel biorepository strategy tailored for comprehensive multiomics analysis and P-medicine applications in lung cancer.

Background/aim: LUNGBANK was established as part of Project LUNGMARK, pioneering a biorepository dedicated exclusively to lung cancer research. It employs cutting-edge technologies to streamline the handling of biospecimens, ensuring the acquisition of high-quality samples. This infrastructure is fortified with robust data management capabilities, enabling seamless integration of diverse datasets. LUNGBANK functions not merely as a repository but as a sophisticated platform crucial for advancing lung cancer research, poised to facilitate significant discoveries.

Materials and methods: LUNGBANK was meticulously designed to optimize every stage of biospecimen handling, from collection and storage to processing. Rigorous standard operating procedures and stringent quality control measures guarantee the integrity of collected biospecimens. Advanced data management protocols facilitate the efficient integration and analysis of various datasets, enhancing the depth and breadth of research possibilities in lung cancer.

Results: LUNGBANK has amassed a comprehensive collection of biospecimens essential for unraveling the intricate molecular mechanisms of lung cancer. The integration of state-of-the-art technologies ensures the acquisition of top-tier data, fostering breakthroughs in translational and histological research. Moreover, the establishment of patient-derived systems by LUNGBANK underscores its pivotal role in personalized medicine approaches.

Conclusion: The establishment of LUNGBANK marks a significant milestone in addressing the critical challenges of lung cancer research. By providing researchers with high-quality biospecimens and advanced research tools, LUNGBANK not only supports Project LUNGMARK's objectives but also contributes extensively to the broader landscape of personalized medicine. It promises to enhance our understanding of lung cancer initiation, progression, and therapeutic interventions tailored to individual patient needs, thereby advancing the field towards more effective diagnostic and therapeutic strategies.

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