496
Views
14
CrossRef citations to date
0
Altmetric
Plenary

Heat-treated human platelet pellet lysate modulates microglia activation, favors wound healing and promotes neuronal differentiation in vitro

ORCID Icon, ORCID Icon, ORCID Icon, , ORCID Icon, ORCID Icon, , ORCID Icon & ORCID Icon show all
Pages 226-237 | Received 07 Dec 2019, Accepted 13 Feb 2020, Published online: 27 Feb 2020

References

  • Leiter O, Walker TL. Platelets: the missing link between the blood and brain? Prog Neurobiol 2019;183:101695. doi:10.1016/j.pneurobio.2019.101695.
  • Gouel F, Rolland A-S, Devedjian J-C, Burnouf T, Devos D. Past and future of neurotrophic growth factors therapies in ALS: from single neurotrophic growth factor to stem cells and human platelet lysates. Front Neurol 2019;10:835. doi:10.3389/fneur.2019.00835.
  • Blair P, Flaumenhaft R. Platelet alpha-granules: basic biology and clinical correlates. Blood Rev 2009;23(4):177–189. doi:10.1016/j.blre.2009.04.001.
  • Nurden AT. The biology of the platelet with special reference to inflammation, wound healing and immunity. Front Biosci (Landmark Ed) 2018;23:726–751. doi:10.2741/4613.
  • Santos SCNDS, Sigurjonsson ÓE, Custódio CDA, Mano JFCDL. Blood plasma derivatives for tissue engineering and regenerative medicine therapies. Tissue Eng Part B 2018;24(6):454–462. doi:10.1089/ten.teb.2018.0008.
  • Chou ML, Wu J-W, Gouel F, Jonneaux A, Timmerman K, Renn T-Y, Laloux C, Chang H-M, Lin L-T, Devedjian J-C. Tailor-made purified human platelet lysate concentrated in neurotrophins for treatment of Parkinson’s disease. Biomaterials 2017;142:77–89. doi:10.1016/j.biomaterials.2017.07.018.
  • Gouel F, Do Van B, Chou M-L, Jonneaux A, Moreau C, Bordet R, Burnouf T, Devedjian J-C, Devos D. The protective effect of human platelet lysate in models of neurodegenerative disease: involvement of the Akt and MEK pathways. J Tissue Eng Regen Med 2017;11(11):3236–3240. doi:10.1002/term.v11.11.
  • Anitua E, Pascual C, Pérez-Gonzalez R, Orive G, Carro E. Intranasal PRGF-Endoret enhances neuronal survival and attenuates NF-kappaB-dependent inflammation process in a mouse model of Parkinson’s disease. J Control Release 2015;203:170–180. doi:10.1016/j.jconrel.2015.02.030.
  • Nebie O, Devos D, Vingtdeux V, Barro L, Devedjian J-C, Jonneaux A, Chou M-L, Bordet R, Buée L, Knutson F. The neuroprotective activity of heat-treated human platelet lysate biomaterials manufactured from outdated pathogen-reduced (amotosalen/UVA) platelet concentrates. J Biomed Sci 2019;26(1):89. doi:10.1186/s12929-019-0579-9.
  • Anitua E, Pascual C, Pérez-Gonzalez R, Antequera D, Padilla S, Orive G, Carro E. Intranasal delivery of plasma and platelet growth factors using PRGF-Endoret system enhances neurogenesis in a mouse model of Alzheimer’s disease. PLoS One 2013;8(9):e73118. doi:10.1371/journal.pone.0073118.
  • Dukhinova M, Kuznetsova I, Kopeikina E, Veniaminova E, Yung AWY, Veremeyko T, Levchuk K, Barteneva NS, Wing-Ho KK, Yung W-H. Platelets mediate protective neuroinflammation and promote neuronal plasticity at the site of neuronal injury. Brain Behav Immun 2018;74:7–27. doi:10.1016/j.bbi.2018.09.009.
  • Hayon Y, Dashevsky O, Shai E, Varon D, Leker R. Platelet lysates stimulate angiogenesis, neurogenesis and neuroprotection after stroke. Thromb Haemost 2013;110(2):323–330. doi:10.1160/TH12-11-0875.
  • Chung JY, Kim HJ, Kim M. The protective effect of growth hormone on Cu/Zn superoxide dismutase-mutant motor neurons. BMC Neurosci 2015;16:1. doi:10.1186/s12868-015-0140-z.
  • Schallmoser K, Henschler R, Gabriel C, Koh MBC, Burnouf T. et al. Production and quality requirements of human platelet lysate: a position statement from the working party on cellular therapies of the international society of blood transfusion. Trends Biotechnol 2020;38:13-23. doi:10.1016/j.tibtech.2019.06.002.
  • Rutter S, Snyder EL. How do we … integrate pathogen reduced platelets into our hospital blood bank inventory? Transfusion 2019;59(5):1628–1636. doi:10.1111/trf.2019.59.issue-5.
  • Irsch J, Lin L. Pathogen inactivation of platelet and plasma blood components for transfusion using the INTERCEPT blood system. Transfus Med Hemother 2011;38(1):19–31. doi:10.1159/000323937.
  • Strandberg G, Sellberg F, Sommar P, Ronaghi M, Lubenow N, Knutson F, Berglund D. Standardizing the freeze-thaw preparation of growth factors from platelet lysate. Transfusion 2017;57(4):1058–1065. doi:10.1111/trf.2017.57.issue-4.
  • Park B-K, Kim YH, Kim YR, Choi JJ, Yang C, Jang I-S, Lee MY. Antineuroinflammatory and neuroprotective effects of Gyejibokryeong-Hwan in lipopolysaccharide-stimulated BV2 Microglia. Evidence-Based Complementary Altern Med 2019;2019:7585896. doi:10.1155/2019/7585896.
  • Liang -C-C, Park AY, Guan J-L. In vitro scratch assay: a convenient and inexpensive method for analysis of cell migration in vitro. Nat Protoc 2007;2(2):329–333. doi:10.1038/nprot.2007.30.
  • Miglio G, Rattazzi L, Rosa AC, Fantozzi R. PPARγ stimulation promotes neurite outgrowth in SH-SY5Y human neuroblastoma cells. Neurosci Lett 2009;454(2):134–138. doi:10.1016/j.neulet.2009.03.014.
  • Zuckerman SH, Evans GF, Snyder YM, Roeder WD. Endotoxin-macrophage interaction: post-translational regulation of tumor necrosis factor expression. J Immunol 1989;143(4):1223–1227.
  • Zhu J, Li S, Zhang Y, Ding G, Zhu C, Huang S, Zhang A, Jia Z, Li M. COX-2 contributes to LPS-induced Stat3 activation and IL-6 production in microglial cells. Am J Transl Res 2018;10(3):966–974.
  • Burnouf T, Goubran HA, Chen T-M, Ou K-L, El-Ekiaby M, Radosevic M. Blood-derived biomaterials and platelet growth factors in regenerative medicine. Blood Rev 2013;27(2):77–89. doi:10.1016/j.blre.2013.02.001.
  • De Pascale MR, Sommese L, Casamassimi A, Napoli C. Platelet derivatives in regenerative medicine: an update. Transfus Med Rev 2015;29(1):52–61. doi:10.1016/j.tmrv.2014.11.001.
  • Burnouf T, Strunk D, Koh MBC, Schallmoser K. Human platelet lysate: replacing fetal bovine serum as a gold standard for human cell propagation? Biomaterials 2016;76:371–387. doi:10.1016/j.biomaterials.2015.10.065.
  • Dessels C, Durandt C, Pepper MS. Comparison of human platelet lysate alternatives using expired and freshly isolated platelet concentrates for adipose-derived stromal cell expansion. Platelets 2019;30(3):356–367. doi:10.1080/09537104.2018.1445840.
  • Chahla J, Cole BJ. Editorial commentary: platelet-rich plasma for knee osteoarthritis: a “novel” and effective symptomatic approach. Arthroscopy 2019;35(1):118–120. doi:10.1016/j.arthro.2018.07.036.
  • Li Y, Gao Y, Gao Y, Chen D, Wang C, Liu G, Yang X, Ran X. Autologous platelet-rich gel treatment for diabetic chronic cutaneous ulcers: A meta-analysis of randomized controlled trials. J Diabetes 2019;11(5):359–369. doi:10.1111/jdb.2019.11.issue-5.
  • Alsousou J, Ali A, Willett K, Harrison P. The role of platelet-rich plasma in tissue regeneration. Platelets 2013;24(3):173–182. doi:10.3109/09537104.2012.684730.
  • D’Asta F, Halstead F, Harrison P, Zecchi Orlandini S, Moiemen N, Lord J. The contribution of leucocytes to the antimicrobial activity of platelet-rich plasma preparations: a systematic review. Platelets 2018;29(1):9–20. doi:10.1080/09537104.2017.1317731.
  • Harrison P, P. Subcommittee on Platelet. The use of platelets in regenerative medicine and proposal for a new classification system: guidance from the SSC of the ISTH. J Thromb Haemost 2018;16(9):1895–1900. doi:10.1111/jth.2018.16.issue-9.
  • Pavlovic D, Pekic S, Stojanovic M, Popovic V. Traumatic brain injury: neuropathological, neurocognitive and neurobehavioral sequelae. Pituitary 2019;22(3):270–282. doi:10.1007/s11102-019-00957-9.
  • Bramlett HM, Dietrich WD. Long-term consequences of traumatic brain injury: current status of potential mechanisms of injury and neurological outcomes. J Neurotrauma 2014;32(23):1834–1848. doi:10.1089/neu.2014.3352.
  • Mouzon BC, Bachmeier C, Ferro A, Ojo J-O, Crynen G, Acker CM, Davies P, Mullan M, Stewart W, Crawford F. Chronic neuropathological and neurobehavioral changes in a repetitive mild traumatic brain injury model. Ann Neurol 2014;75(2):241–254. doi:10.1002/ana.24064.
  • Nonaka M, Chen XH, Pierce JE, Leoni MJ, McIntosh TK, Wolf JA, Smith DH. Prolonged activation of NF-κB following traumatic brain injury in rats. J Neurotrauma 1999;16(11):1023–1034. doi:10.1089/neu.1999.16.1023.
  • Mayer CL, Huber BR, Peskind E. Traumatic brain injury, neuroinflammation, and post-traumatic headaches. Headache 2013;53(9):1523–1530.
  • Leiter O, Seidemann S, Overall RW, Ramasz B, Rund N, Schallenberg S, Grinenko T, Wielockx B, Kempermann G, Walker TL. Exercise-induced activated platelets increase adult hippocampal precursor proliferation and promote neuronal differentiation. Stem Cell Rep 2019;12(4):667–679. doi:10.1016/j.stemcr.2019.02.009.
  • Chen NF, Sung CS, Wen ZH, Chen CH, Feng CW, Hung HC, Yang SN, Tsui KH, Chen WF. Therapeutic effect of platelet-rich plasma in rat spinal cord injuries. Front Neurosci 2018;12:252. doi:10.3389/fnins.2018.00252.
  • Renn TY, Kao YH, Wang CC, Burnouf T. Anti-inflammatory effects of platelet biomaterials in a macrophage cellular model. Vox Sang 2015;109(2):138–147. doi:10.1111/vox.12264.
  • Woodcock T, Morganti-Kossmann MC. The role of markers of inflammation in traumatic brain injury. Front Neurol 2013;4(18):18. doi:10.3389/fneur.2013.00018.
  • Nurden AT. Platelets, inflammation and tissue regeneration. Thromb Haemost 2011;105(Suppl 1):S13–33. doi:10.1160/THS10-11-0720.
  • Barsotti MC, Losi P, Briganti E, Sanguinetti E, Magera A, Al Kayal T, Feriani R, Di Stefano R, Soldani G. Effect of platelet lysate on human cells involved in different phases of wound healing. PLoS One 2013;8(12):e84753–e84753.
  • Baez-Jurado E, Hidalgo-Lanussa O, Guio-Vega G, Ashraf GM, Echeverria V, Aliev G, Barreto GE. Conditioned medium of human adipose mesenchymal stem cells increases wound closure and protects human astrocytes following scratch assay in vitro. Mol Neurobiol 2018;55(6):5377–5392. doi:10.1007/s12035-017-0771-4.
  • Torrente D, Avila MF, Cabezas R, Morales L, Gonzalez J, Samudio I, Barreto GE. Paracrine factors of human mesenchymal stem cells increase wound closure and reduce reactive oxygen species production in a traumatic brain injury in vitro model. Hum Exp Toxicol 2013;33(7):673–684. doi:10.1177/0960327113509659.
  • Barsotti MC, Losi P, Briganti E, Sanguinetti E, Magera A, Al Kayal T, Feriani R, Di Stefano R, Soldani G. Effect of platelet lysate on human cells involved in different phases of wound healing. PLoS One 2013;8(12):e84753. doi:10.1371/journal.pone.0084753.
  • Anitua E, Andia I, Ardanza B, Nurden P, Nurden A. Autologous platelets as a source of proteins for healing and tissue regeneration. Thromb Haemost 2004;91(01):4–15. doi:10.1160/TH03-07-0440.
  • Pola S, Cattaneo MG, Vicentini LM. Anti-migratory and anti-invasive effect of somatostatin in human neuroblastoma cells: involvement of Rac and MAP kinase activity. J Biol Chem 2003;278(42):40601–40606. doi:10.1074/jbc.M306510200.
  • Xie HR, Hu LS, Li GY. SH-SY5Y human neuroblastoma cell line: in vitro cell model of dopaminergic neurons in Parkinson’s disease. Chin Med J (Engl) 2010;123(8):1086–1092.
  • Jamsa A, Hasslund K, Cowburn RF, Bäckström A, Vasänge M. The retinoic acid and brain-derived neurotrophic factor differentiated SH-SY5Y cell line as a model for Alzheimer’s disease-like tau phosphorylation. Biochem Biophys Res Commun 2004;319(3):993–1000. doi:10.1016/j.bbrc.2004.05.075.
  • Dwane S, Durack E, Kiely PA. Optimising parameters for the differentiation of SH-SY5Y cells to study cell adhesion and cell migration. BMC Res Notes 2013;6:6–366. doi:10.1186/1756-0500-6-366.
  • Ivankovic-Dikic I, Grönroos E, Blaukat A, Barth BU, Dikic I. Pyk2 and FAK regulate neurite outgrowth induced by growth factors and integrins. Nat Cell Biol 2000;2(9):574–581. doi:10.1038/35023515.
  • Smith JM, Lunga P, Story D, Harris N, Le Belle J, James MF, Pickard JD, Fawcett JW. Inosine promotes recovery of skilled motor function in a model of focal brain injury. Brain 2007;130(Pt 4):915–925. doi:10.1093/brain/awl393.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.