Literature DB >> 31811874

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

Paola Alberti1, Annalisa Canta2, Alessia Chiorazzi2, Giulia Fumagalli3, Cristina Meregalli2, Laura Monza4, Eleonora Pozzi3, Elisa Ballarini2, Virginia Rodriguez-Menendez2, Norberto Oggioni2, Giulio Sancini5, Paola Marmiroli2, Guido Cavaletti2.   

Abstract

Oxaliplatin (OHP) Induced Peripheral Neurotoxicity (OIPN) is one of the dose-limiting toxicities of the drug and these adverse effects limit cancer therapy with L-OHP, used for colorectal cancer treatment. Acute neurotoxicity consists of symptoms that are the hallmarks of a transient axonal hyperexcitability; chronic neurotoxicity has a clinical picture compatible with a length-dependent sensory neuropathy. Acute OIPN pathogenesis has been linked to sodium voltage-operated channels (Na + VOC) dysfunction and it has been advocated as a possible predisposing factor to chronic neurotoxicity. We tested if topiramate (TPM), a well-known Na + VOC modulator, was able to modify acute as well as chronic OIPN. The project was divided into two parts. In Experiment 1 we tested by means of Nerve Excitability Testing (NET) a cohort of female Wistar rats to assess TPM effects after a single OHP administration (5 mg/kg, iv). In Experiment 2 we assessed TPM effects after chronic OHP treatment (5 mg/kg, 2qw4ws, iv) using NET, nerve conduction studies (NCS), behavioral tests and neuropathology (caudal nerve morphometry and morphology and Intraepidermal Nerve Fiber [IENF] density). In Experiment 1 TPM was able to prevent OHP effects on Na + VOC: OHP treatment induced a highly significant reduction of the sensory nerve's threshold, during the superexcitability period (p-value = 0.008), whereas TPM co-administration prevented this effect. In Experiment 2 we verified that TPM was able to prevent not only acute phenomena, but also to completely prevent chronic OIPN. This latter observation was supported by a multimodal approach: in fact, only OHP group showed altered findings compared to CTRL group at a neurophysiological (proximal caudal nerve sensory nerve action potential [SNAP] amplitude, p-value = 0.001; distal caudal nerve SNAP amplitude, p-value<0.001, distal caudal nerve sensory conduction velocity, p-value = 0.04), behavioral (mechanical threshold, p-value 0.003) and neuropathological levels (caudal nerve fibers density, p-value 0.001; IENF density, p-value <0.001). Our data show that TPM is a promising drug to prevent both acute and chronic OIPN. These findings have a high translational potential, since they were obtained using outcome measures that match clinical practice and TPM is already approved for clinical use being free from detrimental interaction with OHP anticancer properties.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Animal models; Cancer; Nerve excitability testing; Neurophysiology; Neuroprotection; Oxaliplatin neuropathy; Oxaliplatin neurotoxicity; Prevention; Topiramate; Translational medicine

Mesh:

Substances:

Year:  2019        PMID: 31811874     DOI: 10.1016/j.neuropharm.2019.107905

Source DB:  PubMed          Journal:  Neuropharmacology        ISSN: 0028-3908            Impact factor:   5.250


  11 in total

1.  Management of Side Effects in the Personalized Medicine Era: Chemotherapy-Induced Peripheral Neurotoxicity.

Authors:  Eleonora Pozzi; Paola Alberti
Journal:  Methods Mol Biol       Date:  2022

Review 2.  Current and Emerging Pharmacotherapeutic Interventions for the Treatment of Peripheral Nerve Disorders.

Authors:  Jeremy Chung Bo Chiang; Ria Arnold; Roshan Dhanapalaratnam; Maria Markoulli; Arun V Krishnan
Journal:  Pharmaceuticals (Basel)       Date:  2022-05-15

3.  Acute chemotherapy-induced peripheral neuropathy due to oxaliplatin administration without cold stimulation.

Authors:  Yoshiko Matsumoto; Yoichiro Yoshida; Sachiko Kiba; Shizuka Yamashiro; Haruka Nogami; Noriko Ohashi; Ryuji Kajitani; Taro Munechika; Hideki Nagano; Akira Komono; Naoya Aisu; Gumpei Yoshimatsu; Suguru Hasegawa
Journal:  Support Care Cancer       Date:  2020-03-06       Impact factor: 3.603

Review 4.  Methods for in vivo studies in rodents of chemotherapy induced peripheral neuropathy.

Authors:  Jordi Bruna; Paola Alberti; Aina Calls-Cobos; Martial Caillaud; M Imad Damaj; Xavier Navarro
Journal:  Exp Neurol       Date:  2019-12-15       Impact factor: 5.330

5.  Cholinergic neuroplasticity in asthma driven by TrkB signaling.

Authors:  Guilherme Dragunas; Manon E Woest; Susan Nijboer; Sophie T Bos; Janet van Asselt; Anne P de Groot; Eva Vohlídalová; Corneel J Vermeulen; Benedikt Ditz; Judith M Vonk; Gerard H Koppelman; Maarten van den Berge; Nick H T Ten Hacken; Wim Timens; Carolina D Munhoz; Y S Prakash; Reinoud Gosens; Loes E M Kistemaker
Journal:  FASEB J       Date:  2020-04-11       Impact factor: 5.191

6.  Targeting lysosomal cysteine protease cathepsin S reveals immunomodulatory therapeutic strategy for oxaliplatin-induced peripheral neuropathy.

Authors:  Szu-Jung Chen; Li-Hsien Chen; Yu-Min Yeh; Chou-Ching K Lin; Peng-Chan Lin; Han-Wei Huang; Meng-Ru Shen; Bo-Wen Lin; Jeng-Chang Lee; Cheng-Che Lee; Yueh-Feng Lee; Huai-Chueh Chiang; Jang-Yang Chang
Journal:  Theranostics       Date:  2021-03-04       Impact factor: 11.556

7.  Addressing the Need of a Translational Approach in Peripheral Neuropathy Research: Morphology Meets Function.

Authors:  Laura Monza; Giulia Fumagalli; Alessia Chiorazzi; Paola Alberti
Journal:  Brain Sci       Date:  2021-01-22

Review 8.  Targeting strategies for oxaliplatin-induced peripheral neuropathy: clinical syndrome, molecular basis, and drug development.

Authors:  Yang Yang; Bing Zhao; Xuejiao Gao; Jinbing Sun; Juan Ye; Jun Li; Peng Cao
Journal:  J Exp Clin Cancer Res       Date:  2021-10-22

Review 9.  Pathological Mechanisms and Preventive Strategies of Oxaliplatin-Induced Peripheral Neuropathy.

Authors:  Nobuaki Egashira
Journal:  Front Pain Res (Lausanne)       Date:  2021-12-08

Review 10.  Chemotherapy-induced peripheral neuropathy-part 2: focus on the prevention of oxaliplatin-induced neurotoxicity.

Authors:  Kinga Sałat
Journal:  Pharmacol Rep       Date:  2020-04-28       Impact factor: 3.919

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