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4. Multimodal Comparison of Diabetic Neuropathy in Aged Streptozotocin-Treated Sprague–Dawley and Zucker Diabetic Fatty Rats

5. High-dose intravenous immunoglobulins reduce nerve macrophage infiltration and the severity of bortezomib-induced peripheral neurotoxicity in rats

6. Islet Transplantation and Insulin Administration Relieve Long-Term Complications and Rescue the Residual Endogenous Pancreatic β Cells

7. Therapeutic potential of Mesenchymal Stem Cells for the treatment of diabetic peripheral neuropathy

9. Systems Pharmacology Modeling Identifies a Novel Treatment Strategy for Bortezomib-Induced Neuropathic Pain

10. Multimodal Comparison of Diabetic Neuropathy in Aged Streptozotocin-Treated Sprague–Dawley and Zucker Diabetic Fatty Rats.

15. USING A 3D APPROACH TO DESCRIBE CELL POPULATIONS IN THE RAT DORSAL ROOT GANGLIA

16. Human Intravenous Immunoglobulin Alleviates Neuropathic Symptoms in a Rat Model of Paclitaxel-Induced Peripheral Neurotoxicity

17. USING A 3D APPROACH TO DESCRIBE CELL POPULATIONS IN THE RAT DORSAL ROOT GANGLIA

20. The Neuroprotective Effect of Erythropoietin in Docetaxel-Induced Peripheral Neuropathy Causes No Reduction of Antitumor Activity in 13762 Adenocarcinoma-Bearing Rats

22. The relevance of multimodal assessment in experimental oxaliplatin-induced peripheral neurotoxicity

23. Topiramate prevents oxaliplatin-related axonal hyperexcitability and oxaliplatin induced peripheral neurotoxicity

25. Human Intravenous Immunoglobulin Alleviates Neuropathic Symptoms in a Rat Model of Paclitaxel-Induced Peripheral Neurotoxicity

26. The relevance of multimodal assessment in experimental oxaliplatin-induced peripheral neurotoxicity

27. Reply to a Comment Paper on the Published Paper by Canta, A. et al: “Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity”—Antioxidants 2020, 9, 594

28. Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity

29. Topiramate prevents oxaliplatin-related axonal hyperexcitability and oxaliplatin induced peripheral neurotoxicity.

33. Global transcriptomic profile of dorsal root ganglion and physiological correlates of cisplatin-induced peripheral neuropathy

34. High-dose intravenous immunoglobulins reduce nerve macrophage infiltration and the severity of bortezomib-induced peripheral neurotoxicity in rats

35. Age-related structural changes of the peripheral nervous system in mice: a morphological study

37. Animal Models for the Study of Human Central and Peripheral Nervous System Diseases

38. Multimodal experimental approach to the study of human neurological diseases

40. Therapeutic potential of Mesenchymal Stem Cells for the treatment of diabetic peripheral neuropathy

41. Animal Models for the Study of Human Central and Peripheral Nervous System Diseases

42. An innovative traslational approach to oxaliplatin induced peripheral neurotoxicity in animal models: nerve excitability testing.

43. Multimodal experimental approach to the study of human neurological diseases

44. A Possible role of OCT2 gene in the development of peripheral neurotoxicity induced by cisplatin

45. A new animal model of chemotherapy induced peripheral neurotoxicity: the immune-deficient mouse

47. Oxaliplatin-Induced Peripheral Neurotoxicity: Morphological Characterization In Different Mouse Strains

48. A Possible role of OCT2 gene in the development of peripheral neurotoxicity induced by cisplatin

49. Age-related changes in the function and structure of the peripheral sensory pathway in mice

50. Toward the identification of neuroprotective agents: G-scale synthesis, pharmacokinetic evaluation and CNS distribution of (R)-RC-33, a promising SIGMA1 receptor agonist

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