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Neuronal Growth Factors from Tumours of Von Recklinghausen Neurofibromatosis

Published online by Cambridge University Press:  18 September 2015

Richard J. Riopelle*
Affiliation:
Department of Medicine (Neurology), Queen's University, Kingston, Ontario, Canada, and The Department of Medicine and Neurofibromatosis Program, Baylor College of Medicine, Houston, Texas
Vincent M. Riccardi
Affiliation:
Department of Medicine (Neurology), Queen's University, Kingston, Ontario, Canada, and The Department of Medicine and Neurofibromatosis Program, Baylor College of Medicine, Houston, Texas
*
La Salle Building, Queen's University, Kingston, Ontario, Canada K7L 3N6
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Abstract:

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Explants of 21 neurofibromas from 16 patients with Von Recklinghausen neurofibromatosis (NF-I) plus tumour tissue from 5 comparison patients and normal tissue from one of the NF-I patients were assayed for neuronal growth factor(s) using dissociated embryonic sensory neurons from chick embryo. Twenty-one of 21 neurofibroma explants released detectable quantities of neuronal growth factors, but only 2 of 8 non-neurofibroma tissue explants released activity.

While antiserum to mouse nerve growth factor (NGF) fractionally inhibited neurite outgrowth induced by some of the neurofibromas, overall differences between assays containing antibody and controls reached statistical significance in 3 cases; in one case, explants of a separate tumourfrom the same patient had no detectable NGF-like activity.

These data support the hypothesis that local release of neuronal growth factors in neurofibromas are responsible for neurites observed within these tumours. Further evidence that endoneurial tissue of peripheral nerve is a rich source of heterogeneous neuronal growth facts has been provided by these studies.

Type
Original Articles
Copyright
Copyright © Canadian Neurological Sciences Federation 1987

References

REFERENCES

1.Riccardi, VM. Von Recklinghausen neurofibromatosis. New Eng J Med 1981; 305: 16171627.CrossRefGoogle ScholarPubMed
2.Fabricant, RN, Todaro, GJ. Increased serum levels of nerve growth factor in Von Recklinghausen’s disease. Arch Neurol 1981: 38: 401405.CrossRefGoogle ScholarPubMed
3.Siggers, DC. Nerve growth factor and some inherited neurological conditions. Proc R Soc Med 1976; 69: 183ߝ184.Google ScholarPubMed
4.Rubenstein, AE, Mytilineoau, C, Yahr, MD, et al. Neurological Aspects of Neurofibromatosis. In: Riccardi, VM, Mulvihill, JJ, eds. Advances in Neurology 29. Neurofibromatosis. New York: Raven Press, 1981: 1120.Google ScholarPubMed
5.Schenkein, 1, Bueker, ED. Helson, L, et al. Increased nerve growth stimulating activity in disseminated neurofibromatosis. New Eng J Med 1974; 290: 613614.CrossRefGoogle ScholarPubMed
6.Siggers, DC, Boyer, SH, Eldridge, R. Nerve Growth Factor in disseminated neurofibromatosis. New Eng J Med 1975: 292: 1134.Google ScholarPubMed
7.Tischler, AS. Quantitation of nerve growth stimulating activity. New Eng J Med 1974; 290: 1203.Google ScholarPubMed
8.Riopelle, RJ, Riccardi, VM, Faulkner, S, et al. Serum neuronal growth factor levels in Von Recklinghausen neurofibromatosis. Ann Neurol 1984; 16: 5459.CrossRefGoogle Scholar
9.Riopelle, RJ, Boegman, RJ, Cameron, DA. Peripheral nerve contains heterogeneous growth factors that support sensory neurons in vitro. Neurosci Lett 1981; 25: 311316.CrossRefGoogle ScholarPubMed
10.Richardson, PM, Ebendal, T. Nerve growth activities in rat peripheral nerve. Brain Res 1982; 246: 57 64.CrossRefGoogle ScholarPubMed
11.Longo, FM, Manthorpe, M, Skaper, SD, et al. Neuronotrophic activities accumulate in vivo within silicone regeneration chambers. Brain Research 1983; 261: 109117. CrossRefGoogle ScholarPubMed
12.Sutter, A, Riopelle, RJ, Harris-Warrick, RM, et al. The heterogeneity of Nerve Growth Factor Receptors. In: Bitensky, M, Collier, RJ, Fox, CF, eds. Progress in Clinical and Biological Research 31. New York: Liss lnc, 1979: 659667.Google Scholar
13.Lowry, OH, Rosebrough, NJ, Farr, AL, et al. Protein measurement with the folin phenol reagent. J Biol Chem 1951; 193: 265275.CrossRefGoogle ScholarPubMed
14.Riopelle, RJ, Cameron, DA. Neurite growth promoting factors of embryonic chick - ontogeny, regional distribution and characteristics. J Neurobiol 1981; 12: 175186.CrossRefGoogle ScholarPubMed
15.Mobley, WC, Schenker, A, Shooter, EM. Characterization and isolation of proteolytically modified nerve growth factor. Biochemistry 1976; 15: 55435552.CrossRefGoogle ScholarPubMed
16.Varon, S, Skaper, SD, Manthorpe, M. Trophic activities for dorsal root and sympathetic ganglionic neurons in media conditioned by Schwann and other peripheral cells. Devel Brain Res 1981: 1: 7387.CrossRefGoogle Scholar
17.Weston, JA. The migration and differentiation of neural crest cells. Advances Morph 1970; 8: 41114.CrossRefGoogle ScholarPubMed
18.Mobley, WC, Server, AC, Ishii, DN, et al. Nerve Growth Factor. NewEngJMed 1977; 297: 10961104, 1149–1158, 1211–1218.Google ScholarPubMed
19.Russell, DS, Rubinstein, LJ. Pathology of Tumours of the Nervous System. Fourth Edition. London: Edward Arnold, 1977.Google Scholar