
معرفی
Ahmet Hoke, MD, PhD, is a Professor of Neurology and Neuroscience at the Johns Hopkins University School of Medicine, where he also serves as Director of the Neuromuscular Division. His work bridges clinical neurology and translational neuroscience, focusing on peripheral nervous system disorders.
Dr. Hoke's research centers on the mechanisms of peripheral neuropathies and nerve regeneration. His laboratory investigates conditions such as HIV-associated sensory neuropathy, chemotherapy-induced neuropathy, and diabetic neuropathy. Using both in vitro and in vivo models, his team explores axonal degeneration and regeneration, with a focus on Schwann cell biology and the development of nanofiber-based nerve grafts. His work also includes engineering stem cells for gene delivery to enhance nerve repair in chronic denervation scenarios, such as those seen in ALS and inherited neuropathies.
The recent publications highlight a strong focus on nerve regeneration, neuropathic mechanisms, and innovative therapeutic strategies. His work spans molecular neuroscience, bioengineering, and clinical neurology, reflecting a multidisciplinary approach to treating peripheral nerve disorders.
Scientific Awards:
- No specific awards mentioned in the provided text.
Dr. Hoke actively mentors graduate students, postdoctoral fellows, and research staff, contributing significantly to training the next generation of neuroscientists. His lab includes MD/PhD students and research associates engaged in diverse projects. While grant details are not listed, his sustained research output and lab structure suggest active funding. His collaborative work includes partnerships across neurology, oncology, radiology, and bioengineering disciplines.
Dr. Hoke leads an active research laboratory focused on peripheral nerve repair. The lab includes postdoctoral fellows, graduate students, and research technicians working on molecular mechanisms of neuropathy and regenerative strategies. The team utilizes advanced models of nerve injury and employs techniques in molecular biology, cell therapy, and biomaterials to develop novel treatments for nerve damage.



