1 Department of Human Anatomy, College of Medicine, Federal University Lokoja, Kogi State, Nigeria.
2 Department of Medical Laboratory Science, Ladoke Akintola University of Technology, Ogbomosho, Nigeria.
3 Department of Environmental Science, Georgia Southern University, Georgia, USA.
4 Department of Biochemistry, Umaru Musa Yaradua University, Katsina, Nigeria.
5 Department of Biomedical Ethics, CIS, Hamad Bin Khalifa University, Doha, Qatar.
6 Department of Microbiology and Parasitology, David Umahi Federal University of Health Sciences, Uburu, Nigeria.
7 Department of Pharmacology, Bayero University Kano, Nigeria.
World Journal of Biology Pharmacy and Health Sciences, 2025, 22(01), 112-138
Article DOI: 10.30574/wjbphs.2025.22.1.0327
Received on 26 February 2025; revised on 05 April 2025; accepted on 07 April 2025
Cancer remains a leading global health challenge, with early detection and precise monitoring playing a crucial role in improving patient outcomes. Traditional tissue biopsies, while essential for diagnosis, are invasive, limited in scope, and often fail to capture tumor heterogeneity or track disease progression dynamically. Liquid biopsy technologies have emerged as a transformative alternative, offering a minimally invasive approach to cancer detection and management by analyzing circulating tumor DNA (ctDNA), circulating tumor cells (CTCs), extracellular vesicles, and tumor-derived exosomes in bodily fluids. This review explores the technological advancements that have enhanced the sensitivity and specificity of liquid biopsies, including next-generation sequencing (NGS), droplet digital PCR (ddPCR), and machine learning-driven bioinformatics. The clinical applications of liquid biopsies are vast, encompassing early cancer detection, monitoring of therapeutic responses, identification of minimal residual disease (MRD), and real-time tracking of resistance mutations. These capabilities support the paradigm shift toward precision oncology, allowing clinicians to tailor treatments based on a dynamic understanding of tumor evolution. Despite their promise, liquid biopsies face challenges such as low biomarker abundance, standardization issues, cost barriers, and regulatory complexities, which hinder widespread clinical implementation. However, emerging innovations, including single-cell liquid biopsies, point-of-care diagnostic devices, and AI-assisted biomarker analysis, are set to overcome these limitations. As research advances, liquid biopsies are poised to revolutionize cancer diagnostics, providing a non-invasive, comprehensive, and personalized approach to cancer management that could significantly enhance survival rates and treatment efficacy.
Liquid biopsy; Circulating tumor DNA; Cancer diagnostics; Treatment monitoring; Precision oncology; Minimal residual disease; Next-generation sequencing; Biomarker detection
Preview Article PDF
Fagbemi Oluwaseyi Ajibola, Toluwani Samuel Ogunmoyero, Taiwo Bakare-Abidola, Abubakar Rawayau Mannir, Aminat Bukola Kehinde, Esther Chigbaziru Nwojiji and Rofiat Oyiza Abdulkareem. Breakthroughs and challenges in liquid biopsy technologies for cancer diagnosis and treatment monitoring. World Journal of Biology Pharmacy and Health Sciences, 2025, 22(01), 112-138. Article DOI: https://doi.org/10.30574/wjbphs.2025.22.1.0327.