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Updated: Jan 13, 2026

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Published on: August 2, 2022
Nanorobots que cruzan la barrera hematoencefálica para quimioterapia dirigida: la próxima frontera
Muhammad Khizar1, Muhammad Zaib1, Raghabendra Kumar Mahato2
1Faculty of Medicine, Georgian American University, Tbilisi, Georgia.
Abstract:
The impermeability of the blood-brain barrier (BBB) remains one of the greatest challenges in neuro-oncology, limiting the effectiveness of chemotherapeutic delivery to malignant brain tumors. Programmable nanorobots, nanoscale devices with autonomous or guided motion have emerged as a transformative technology capable of actively crossing the BBB and releasing cytotoxic drugs directly at tumor sites. By integrating biomimetic coatings, enzymatic propulsion, and PH-responsive targeting, these systems achieve selective tumor accumulation while minimizing systemic toxicity. Preclinical studies from China, the United States, and Europe demonstrate significant advances in nanorobot-assisted chemotherapy, heralding a paradigm shift in glioblastoma management. Despite promising results, clinical translation requires careful attention to safety, biocompatibility, and regulatory oversight. This letter outlines current progress, key technical strategies, and future directions in nanorobotic chemotherapy. The approach holds profound implications for precision medicine and offers renewed hope for patients with intractable brain malignancies.
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