Exploring the current landscape of single‐cell RNA sequencing applications in gastric cancer research

Author:

Awuah Wireko Andrew1,Roy Sakshi2ORCID,Tan Joecelyn Kirani3ORCID,Adebusoye Favour Tope1,Qiang Zekai4ORCID,Ferreira Tomas5,Ahluwalia Arjun2,Shet Vallabh6,Yee Amanda Leong Weng7,Abdul‐Rahman Toufik1,Papadakis Marios8

Affiliation:

1. Faculty of Medicine Sumy State University Sumy Ukraine

2. School of Medicine Queen's University Belfast Belfast UK

3. Faculty of Medicine University of St Andrews St Andrews UK

4. Department of Oncology & Metabolism The University of Sheffield Sheffield UK

5. Department of Clinical Neurosciences, School of Clinical Medicine University of Cambridge Cambridge UK

6. Faculty of Medicine Bangalore Medical College and Research Institute Bangalore Karnataka India

7. Faculty of Medicine University of Malaya Kuala Lumpur Malaysia

8. Department of Surgery II, University Hospital Witten‐Herdecke University of Witten‐Herdecke Wuppertal Germany

Abstract

AbstractGastric cancer (GC) represents a major global health burden and is responsible for a significant number of cancer‐related fatalities. Its complex nature, characterized by heterogeneity and aggressive behaviour, poses considerable challenges for effective diagnosis and treatment. Single‐cell RNA sequencing (scRNA‐seq) has emerged as an important technique, offering unprecedented precision and depth in gene expression profiling at the cellular level. By facilitating the identification of distinct cell populations, rare cells and dynamic transcriptional changes within GC, scRNA‐seq has yielded valuable insights into tumour progression and potential therapeutic targets. Moreover, this technology has significantly improved our comprehension of the tumour microenvironment (TME) and its intricate interplay with immune cells, thereby opening avenues for targeted therapeutic strategies. Nonetheless, certain obstacles, including tumour heterogeneity and technical limitations, persist in the field. Current endeavours are dedicated to refining protocols and computational tools to surmount these challenges. In this narrative review, we explore the significance of scRNA‐seq in GC, emphasizing its advantages, challenges and potential applications in unravelling tumour heterogeneity and identifying promising therapeutic targets. Additionally, we discuss recent developments, ongoing efforts to overcome these challenges, and future prospects. Although further enhancements are required, scRNA‐seq has already provided valuable insights into GC and holds promise for advancing biomedical research and clinical practice.

Publisher

Wiley

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