Literature DB >> 23190263

Systemic administration of human adipose-derived stem cells reverts nociceptive hypersensitivity in an experimental model of neuropathy.

Paola Sacerdote1, Stefania Niada, Silvia Franchi, Elena Arrigoni, Alice Rossi, Vijay Yenagi, Laura de Girolamo, Alberto Emilio Panerai, Anna Teresa Brini.   

Abstract

Over the last decade, it has been proved that mesenchymal stem cells (MSCs) elicit anti-inflammatory effects. MSCs from adipose tissue (hASCs) differentiate into cells of the mesodermal lineage and transdifferentiate into ectodermal-origin cells. Although there are various etiologies to chronic pain, one common feature is that painful states are associated with increased inflammation. We believe in hASCs as a therapeutic tool also in pathologies involving neuroinflammation and neuronal tissue damage. We have investigated the effect of hASCs injected in a model of neuropathic pain [(mouse sciatic nerve chronic constriction injury (CCI)]. hASCs from 5 donors were characterized, and no major differences were depicted. hASCs were cryopreserved and grown on demand. About 1×10(6), 3×10(6), and 6×10(6) hASCs were intravenously injected into normal immunocompetent mice. No mouse died, and no macroscopic toxicity or behavioral changes were observed, confirming the safety of hASCs. hASCs, intravenously (i.v.) injected into C57BL/6 mice when the neuropathic pain was already established, induced a significant reduction in mechanical allodynia and a complete reversion of thermal hyperalgesia in a dose-response fashion, already 1 day after administration. Moreover, the hASCs effect can be boosted by repeated administrations, allowing a prolonged therapeutic effect. Treatment decreased the level of the CCI-induced proinflammatory cytokine interleukin (IL)-1β and activated the anti-inflammatory cytokine IL-10 in the lesioned nerve. hASCs treatment also restored normal inducible nitric oxide synthase expression in the spinal cord of CCI animals. Our data suggest that hASCs are worthy of further studies as an anti-inflammatory therapy in the treatment of neuropathic pain or chronic inflammatory diseases.

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Year:  2013        PMID: 23190263      PMCID: PMC3613970          DOI: 10.1089/scd.2012.0398

Source DB:  PubMed          Journal:  Stem Cells Dev        ISSN: 1547-3287            Impact factor:   3.272


  69 in total

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Review 2.  Harnessing the mesenchymal stem cell secretome for the treatment of cardiovascular disease.

Authors:  Sudhir H Ranganath; Oren Levy; Maneesha S Inamdar; Jeffrey M Karp
Journal:  Cell Stem Cell       Date:  2012-03-02       Impact factor: 24.633

3.  Wnt5a-mediating neurogenesis of human adipose tissue-derived stem cells in a 3D microfluidic cell culture system.

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5.  Immunologic consequences of multiple, high-dose administration of allogeneic mesenchymal stem cells to baboons.

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6.  Human adipose-derived stem cells isolated from young and elderly women: their differentiation potential and scaffold interaction during in vitro osteoblastic differentiation.

Authors:  Laura de Girolamo; Silvia Lopa; Elena Arrigoni; Matteo F Sartori; Franz W Baruffaldi Preis; Anna T Brini
Journal:  Cytotherapy       Date:  2009       Impact factor: 5.414

7.  Adipose-derived mesenchymal stem cells ameliorate chronic experimental autoimmune encephalomyelitis.

Authors:  Gabriela Constantin; Silvia Marconi; Barbara Rossi; Stefano Angiari; Laura Calderan; Elena Anghileri; Beatrice Gini; Simone Dorothea Bach; Marianna Martinello; Francesco Bifari; Mirco Galiè; Ermanna Turano; Simona Budui; Andrea Sbarbati; Mauro Krampera; Bruno Bonetti
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8.  Basic fibroblast growth factor autocrine loop controls human osteosarcoma phenotyping and differentiation.

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9.  Transient early expression of TNF-alpha in sciatic nerve and dorsal root ganglia in a mouse model of painful peripheral neuropathy.

Authors:  Paola Sacerdote; Silvia Franchi; Anna Elisa Trovato; Anna Elisa Valsecchi; Alberto E Panerai; Mariapia Colleoni
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10.  Long-lasting effects of human mesenchymal stem cell systemic administration on pain-like behaviors, cellular, and biomolecular modifications in neuropathic mice.

Authors:  Dario Siniscalco; Catia Giordano; Umberto Galderisi; Livio Luongo; Vito de Novellis; Francesco Rossi; Sabatino Maione
Journal:  Front Integr Neurosci       Date:  2011-12-01
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  28 in total

Review 1.  Current progress in use of adipose derived stem cells in peripheral nerve regeneration.

Authors:  Shomari Dl Zack-Williams; Peter E Butler; Deepak M Kalaskar
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2.  New trends in pain research: from basic research to clinical translation.

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Journal:  Funct Neurol       Date:  2012 Oct-Dec

3.  Wharton's Jelly-derived mesenchymal stem cells alleviate memory deficits and reduce amyloid-β deposition in an APP/PS1 transgenic mouse model.

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5.  Doxorubicin Cardiotoxicity and Cardiac Function Improvement After Stem Cell Therapy Diagnosed by Strain Echocardiography.

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6.  Nasal administration of mesenchymal stem cells reverses chemotherapy-induced peripheral neuropathy in mice.

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Review 7.  Cellular kinetics of perivascular MSC precursors.

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8.  A preliminary report on stem cell therapy for neuropathic pain in humans.

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Review 9.  Stem Cell Therapy for Modulating Neuroinflammation in Neuropathic Pain.

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Review 10.  Adult stem cell as new advanced therapy for experimental neuropathic pain treatment.

Authors:  Silvia Franchi; Mara Castelli; Giada Amodeo; Stefania Niada; Daniela Ferrari; Angelo Vescovi; Anna Teresa Brini; Alberto Emilio Panerai; Paola Sacerdote
Journal:  Biomed Res Int       Date:  2014-08-13       Impact factor: 3.411

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