Reproductive tract infections researchMolecular Biology Techniques and ApplicationsBiosensors and Analytical Detection

Carolina Otonelo, Carla Layana, Elisa de Sousa, Luciana Juncal, Melina D. Ibarra, Constanza Toledo, A. Melamed, K. Salcedo Rodríguez, Patricia L. Schilardi, Lucia Poleri, C. Golijow, Sheila Ons, Pedro Mendoza Zélis, Claudia E. Rodríguez Torres

2026.1.27Magnetochemistry

DOI: 10.3390/magnetochemistry12020016

tlooto सारांश

Overall, the method represents a low-cost, safe, and sustainable alternative for routine clinical and epidemiological applications, compared to methods based on chaotropic salt buffers, and it reduces reliance on imported commercial consumables and minimizes the handling of hazardous reagents.

सारांश

In this work, we evaluate the efficiency of a DNA purification protocol from gynecological samples using locally synthesized Fe3O4@SiO2 magnetic microparticles and a low-cost, guanidinium thiocyanate (GITC)-free lysis buffer. The microparticles were characterized by SEM, EDS, FTIR, and magnetic measurements, confirming the formation of compact silica-coated aggregates with suitable magnetic responsiveness for rapid and complete capture. Using this material in combination with a simple, GITC-free lysis buffer, we achieved DNA extraction yields comparable to those obtained with standard methods based on chaotropic salts. The purified DNA showed high compatibility with molecular assays for the detection of Chlamydia trachomatis, Ureaplasma urealyticum, Mycoplasma hominis, and human papilloma virus. Clinical validation demonstrated excellent diagnostic performance, with only a few discrepancies observed in samples near the detection threshold of qPCR, a limitation shared with commercial kits. Overall, the method represents a low-cost, safe, and sustainable alternative for routine clinical and epidemiological applications, compared to methods based on chaotropic salt buffers. Furthermore, it reduces reliance on imported commercial consumables and minimizes the handling of hazardous reagents.

साइटेशन फॉर्मेट

OTONELO, Carolina, et al. Development of a cost-effective magnetic microparticle protocol for DNA purification in molecular diagnosis of gynecological infections. Magnetochemistry, 2026, 12(2): 16.