Neuroprotective Effect of Polyvalent Immunoglobulins on Mouse Models of Chemotherapy-Induced Peripheral Neuropathy
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F. Sturtz | Flavien Bessaguet | C. Demiot | A. Nizou | M. Mroué | Aurore Danigo | L. Magy | Laurence Richard | Sylvie Bourthoumieu
[1] A. Artemiadis,et al. Immunoglobulin Use for the Management of Painful Peripheral Neuropathy: A Systematic Review and Meta-Analysis , 2022, Pain and Therapy.
[2] T. Chao,et al. Intravenous Immunoglobulin to Suppress Progression in a Patient With Advanced Breast Cancer , 2022, Journal of breast cancer.
[3] Jing Zhu,et al. Berberine Alleviate Cisplatin-Induced Peripheral Neuropathy by Modulating Inflammation Signal via TRPV1 , 2022, Frontiers in Pharmacology.
[4] A. Marshall,et al. Chemotherapy-Induced Peripheral Neuropathy: Epidemiology, Pathomechanisms and Treatment , 2021, Oncology and Therapy.
[5] M. Kajii,et al. Intravenous Immunoglobulin Suppresses Chemotherapy-induced Peripheral Neurotoxicity via Macrophage Modulation in Rats and Mice , 2021, Medical Research Archives.
[6] L. Richard,et al. Ramipril Alleviates Oxaliplatin-Induced Acute Pain Syndrome in Mice , 2021, Frontiers in Pharmacology.
[7] K. Schroder,et al. Vincristine-induced peripheral neuropathy is driven by canonical NLRP3 activation and IL-1β release , 2021, The Journal of experimental medicine.
[8] R. Fischer,et al. Role of Peripheral Immune Cells for Development and Recovery of Chronic Pain , 2021, Frontiers in Immunology.
[9] B. Vollmar,et al. Pharmaceutical immunoglobulin G impairs anti-carcinoma activity of oxaliplatin in colon cancer cells , 2021, British Journal of Cancer.
[10] R. Rigolio,et al. Neuroinflammatory Process Involved in Different Preclinical Models of Chemotherapy-Induced Peripheral Neuropathy , 2021, Frontiers in Immunology.
[11] G. Cavaletti,et al. Human Intravenous Immunoglobulin Alleviates Neuropathic Symptoms in a Rat Model of Paclitaxel-Induced Peripheral Neurotoxicity , 2021, International journal of molecular sciences.
[12] M. Taphoorn,et al. Systemic anticancer therapy-induced peripheral and central neurotoxicity: ESMO-EONS-EANO Clinical Practice Guidelines for diagnosis, prevention, treatment and follow-up†. , 2020, Annals of oncology : official journal of the European Society for Medical Oncology.
[13] Thomas J. Smith,et al. Prevention and Management of Chemotherapy-Induced Peripheral Neuropathy in Survivors of Adult Cancers: ASCO Guideline Update. , 2020, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[14] T. Berta,et al. Paclitaxel-activated astrocytes produce mechanical allodynia in mice by releasing tumor necrosis factor-α and stromal-derived cell factor 1 , 2019, Journal of Neuroinflammation.
[15] N. Staff,et al. Platinum‐induced peripheral neurotoxicity: From pathogenesis to treatment , 2019, Journal of the peripheral nervous system : JPNS.
[16] A. Zuercher,et al. Next-generation Fc receptor-targeting biologics for autoimmune diseases. , 2019, Autoimmunity reviews.
[17] J. Gu,et al. Nonspecific immunoglobulin G is effective in preventing and treating cancer in mice , 2019, Cancer management and research.
[18] G. Cavaletti,et al. High-dose intravenous immunoglobulins reduce nerve macrophage infiltration and the severity of bortezomib-induced peripheral neurotoxicity in rats , 2018, Journal of Neuroinflammation.
[19] A. Desmoulière,et al. Neuroprotective effect of angiotensin II type 2 receptor stimulation in vincristine-induced mechanical allodynia , 2018, Pain.
[20] Xuefeng Wang,et al. Adverse Effects of Immunoglobulin Therapy , 2018, Front. Immunol..
[21] K. Jacobson,et al. Chemotherapy-induced pain is promoted by enhanced spinal adenosine kinase levels through astrocyte-dependent mechanisms , 2018, Pain.
[22] Bao-Ping Tian,et al. Melatonin Attenuates Pain Hypersensitivity and Decreases Astrocyte-Mediated Spinal Neuroinflammation in a Rat Model of Oxaliplatin-Induced Pain , 2017, Inflammation.
[23] D. Goldstein,et al. Immune-mediated processes implicated in chemotherapy-induced peripheral neuropathy. , 2017, European journal of cancer.
[24] Ivan K. Chinn,et al. Update on the use of immunoglobulin in human disease: A review of evidence , 2017, The Journal of allergy and clinical immunology.
[25] A. Zuercher,et al. IVIG in autoimmune disease - Potential next generation biologics. , 2016, Autoimmunity reviews.
[26] P. Dougherty,et al. Dorsal Root Ganglion Infiltration by Macrophages Contributes to Paclitaxel Chemotherapy-Induced Peripheral Neuropathy. , 2016, The journal of pain : official journal of the American Pain Society.
[27] F. Goldwasser,et al. Acquired Type II von Willebrand Syndrome in Locally Advanced Bladder Cancer Successfully Treated With Intravenous Immunoglobulin and Chemotherapy. , 2016, Clinical genitourinary cancer.
[28] B. Gelfand,et al. Intravenous immune globulin suppresses angiogenesis in mice and humans , 2016, Signal Transduction and Targeted Therapy.
[29] H. Hartung,et al. Immunoglobulins stimulate cultured Schwann cell maturation and promote their potential to induce axonal outgrowth , 2015, Journal of Neuroinflammation.
[30] C. Loprinzi,et al. Neuropathic symptoms, quality of life, and clinician perception of patient care in medical oncology outpatients with colorectal, breast, lung, and prostate cancer , 2015, Journal of Cancer Survivorship.
[31] Gillian L. Currie,et al. Incidence, prevalence, and predictors of chemotherapy-induced peripheral neuropathy: A systematic review and meta-analysis , 2014, PAIN®.
[32] A. Fiaschi,et al. Vincristine-Related Neuropathy Versus Acute Inflammatory Demyelinating Polyradiculoneuropathy in Children With Acute Lymphoblastic Leukemia , 2012, Journal of child neurology.
[33] David J Mooney,et al. Can tissue engineering concepts advance tumor biology research? , 2010, Trends in biotechnology.
[34] C. Raison,et al. Neurobiology of depression, fibromyalgia and neuropathic pain. , 2009, Frontiers in bioscience.
[35] T. Kondo,et al. The critical role of invading peripheral macrophage-derived interleukin-6 in vincristine-induced mechanical allodynia in mice. , 2008, European journal of pharmacology.
[36] Y. Shoenfeld,et al. Attenuation of Colon Carcinoma Tumor Spread by Intravenous Immunoglobulin , 2007, Annals of the New York Academy of Sciences.
[37] J. Schachter,et al. Efficacy and Safety of Intravenous Immunoglobulin in Patients with Metastatic Melanoma , 2007, Annals of the New York Academy of Sciences.
[38] S. Monfardini,et al. Oxaliplatin-related neurotoxicity: how and why? , 2006, Critical reviews in oncology/hematology.
[39] S. Phuphanich,et al. Neurologic Improvement after High-dose Intravenous Immunoglobulin Therapy in Patients with Paraneoplastic Cerebellar Degeneration Associated with Anti-Purkinje Cell Antibody , 2006, Journal of Neuro-Oncology.
[40] Y. Shoenfeld,et al. Facing the enigma of immunomodulatory effects of intravenous immunoglobulin , 2005, Clinical reviews in allergy & immunology.
[41] M. Nolano,et al. EFNS guidelines on the use of skin biopsy in the diagnosis of peripheral neuropathy , 2005, European journal of neurology.
[42] C. Woolf,et al. Detection of cold pain, cold allodynia and cold hyperalgesia in freely behaving rats , 2005, Molecular pain.
[43] L. McWilliams,et al. Mood and anxiety disorders associated with chronic pain: an examination in a nationally representative sample , 2003, Pain.
[44] P. Fishman,et al. A possible role for IVIg in the treatment of soft tissue sarcoma: a clinical case and an experimental model. , 2002, International journal of oncology.
[45] A. Angiolillo,et al. Long‐term treatment of refractory thrombocytopenia in a patient with wiskott‐aldrich syndrome with vincristine, immunoglobulin, and methylprednisolone , 1999, American journal of hematology.
[46] S. Kaveri,et al. Therapeutic preparations of normal polyspecific IgG (IVIg) induce apoptosis in human lymphocytes and monocytes: a novel mechanism of action of IVIg involving the Fas apoptotic pathway. , 1998, Journal of immunology.
[47] R. Koike,et al. Effect of intravenous immunoglobulin in Lambert–Eaton myasthenic syndrome with small‐cell lung cancer: Correlation with the titer of anti–voltage‐gateo calcium channel antibody , 1994, Muscle & nerve.
[48] T. Yaksh,et al. Quantitative assessment of tactile allodynia in the rat paw , 1994, Journal of Neuroscience Methods.
[49] Ruiwen Zhang,et al. Anti-Inflammatory Agents for Cancer Therapy. , 2009, Molecular and cellular pharmacology.
[50] Y. Shoenfeld,et al. Intravenous immunoglobulin treatment for fibrosis, atherosclerosis, and malignant conditions. , 2005, Methods in molecular medicine.