Access the full text.
Sign up today, get DeepDyve free for 14 days.
F. Gómez-Pinilla, C. Cotman, M. Nieto‐Sampedro (1987)
NGF receptor immunoreactivity in rat brain: Topographic distribution and response to entorhinal ablationNeuroscience Letters, 82
A. Parent (1986)
Comparative neurobiology of the basal ganglia
Beth Friedman, D. Kleinfeld, Nancy Ip, V. Verge, Ronald Moulton, Patricia Boland, Elizabeth Zlotchenko, Ronald Lindsay, Liming Liu (1995)
BDNF and NT-4/5 exert neurotrophic influences on injured adult spinal motor neurons, 15
M. Fusco, P. Polato, G. Vantini, L. Cavicchioli, M. Bentivoglio, A. Leon (1991)
Nerve growth factor differentially modulates the expression of its receptor within the CNSJournal of Comparative Neurology, 312
H. Lorez, L. Pieri, J. Richards (1975)
Disappearance of supra-ependymal 5-HT axons in the rat forebrain after electrolytic and 5,6-DHT-induced lesions of the medial forebrain bundleBrain Research, 100
R. Gibbs, R. Gibbs, D. Pfaff (1994)
In situ hybridization detection of trka mRNA in brain: Distribution, colocalization with p75NGFR and up‐regulation by nerve growth factorJournal of Comparative Neurology, 341
J. Conner, D. Muir, S. Varon, T. Hagg, M. Manthorpe (1992)
The localization of nerve growth factor‐like immunoreactivity in the adult rat basal forebrain and hippocampal formationJournal of Comparative Neurology, 319
Q. Yan, E. Johnson (1989)
Immunohistochemical localization and biochemical characterization of nerve growth factor receptor in adult rat brainJournal of Comparative Neurology, 290
L. Williams, S. Varon, G. Peterson, K. Wictorin, W. Fischer, A. Björklund, F. Gage (1986)
Continuous infusion of nerve growth factor prevents basal forebrain neuronal death after fimbria fornix transection.Proceedings of the National Academy of Sciences of the United States of America, 83 23
K. Suda, Y. Barde, H. Thoenen (1978)
Nerve growth factor in mouse and rat serum: correlation between bioassay and radioimmunoassay determinations.Proceedings of the National Academy of Sciences of the United States of America, 75 8
B. Friedman, S. Scherer, J. Rudge, M. Helgren, D. Morrisey, J. McClain, Da-yuan Wang, S. Wiegand, M. Furth, R. Lindsay, N. Ip (1992)
Regulation of ciliary neurotrophic factor expression in myelin-related Schwann cells in vivoNeuron, 9
R. Lindsay, S. Wiegand, C. Altar, P. Distefano (1994)
Neurotrophic factors: from molecule to manTrends in Neurosciences, 17
F. Gage, P. Batchelor, Karen Chen, D. Chin, G. Higgins, S. Koh, S. Deputy, M. Rosenberg, W. Fischer, A. Bjorklund (1989)
NGF receptor reexpression and NGF-mediated cholinergic neuronal hypertrophy in the damaged adult neostriatumNeuron, 2
J. Kordower, E. Mufson, A. Granholm, B. Hoffer, P. Friden (1993)
Delivery of Trophic Factors to the Primate BrainExperimental Neurology, 124
(1992)
Receptor binding and axnnal transport or [ 12 z 11 - labeled neurotrophins in the hasdl ganglia and related brain regions
R. Lindsay, R. Alderson, B. Friedman, C. Hyman, N. Ip, M. Furth, P. Maisonpierre, S. Squinto, G. Yancopoulos (1991)
The neurotrophin family of NGF-related neurotrophic factors.Restorative neurology and neuroscience, 2 4
H. Gnahn, Franz Hefti, R. Heumann, Martin Schwab, Hans Thoenen (1983)
NGF-mediated increase of choline acetyltransferase (ChAT) in the neonatal rat forebrain: evidence for a physiological role of NGF in the brain?Brain research, 285 1
B. Knusel, J. Winslow, A. Rosenthal, L. Burton, Derice Seid, K. Nikolics, F. Hefti (1991)
Promotion of central cholinergic and dopaminergic neuron differentiation by brain-derived neurotrophic factor but not neurotrophin 3.Proceedings of the National Academy of Sciences of the United States of America, 88 3
M. Sendtner, B. Holtmann, R. Kolbeck, H. Thoenen, Y. Barde (1992)
Brain-derived neurotrophic factor prevents the death of motoneurons in newborn rats after nerve sectionNature, 360
H. Sauer, W. Fischer, G. Nikkhah, S. Wiegand, P. Brundin, R. Lindsay, A. Björklund (1993)
Brain-derived neurotrophic factor enhances function rather than survival of intrastriatal dopamine cell-rich graftsBrain Research, 626
MD' Snider, Jr Johnson, D. Snider (1989)
Neurotrophic moleculesAnnals of Neurology, 26
E. Pioro, A. Cuello (1988)
Purkinje cells of adult rat cerebellum express nerve growth factor receptor immunoreactivity: light microscopic observationsBrain Research, 455
M. Pelleymounter, M. Cullen, C. Wellman (1995)
Characteristics of BDNF-induced weight lossExperimental Neurology, 131
I. Ferguson, Eugene Johnson (1991)
Fibroblast growth factor receptor‐bearing neurons in the CNS: Identification by receptor‐mediated retrograde transportJournal of Comparative Neurology, 313
W. Fischer, A. Sirevaag, Stanley Wiegand, Ronald Lindsay, Anders Björklund (1994)
Reversal of spatial memory impairments in aged rats by nerve growth factor and neurotrophins 3 and 4/5 but not by brain-derived neurotrophic factor.Proceedings of the National Academy of Sciences of the United States of America, 91 18
F. Hefti, A. Dravid, J. Hartikka (1984)
Chronic intraventricular injections of nerve growth factor elevate hippocampal choline acetyltransferase activity in adult rats with partial septo-hippocampal lesionsBrain Research, 293
R. Alderson, A. Alterman, Y. Barde, R. Lindsay (1990)
Brain-derived neurotrophic factor increases survival and differentiated functions of rat septal cholinergic neurons in cultureNeuron, 5
Martin Schwab, U. Otten, Y. Agid, Hans Thoenen (1979)
Nerve growth factor (NGF) in the rat CNS: Absence of specific retrograde axonal transport and tyrosine hydroxylase induction in locus coeruleus and substantia nigraBrain Research, 168
J. Venero, K. Beck, Franz Hefti (1994)
Intrastriatal infusion of nerve growth factor after quinolinic acid prevents reduction of cellular expression of choline acetyltransferase messenger RNA and trkA messenger RNA, but not glutamate decarboxylase messenger RNANeuroscience, 61
Y. Barde, D. Edgar, H. Thoenen (1982)
Purification of a new neurotrophic factor from mammalian brain.The EMBO Journal, 1
M. Hancock (1986)
Two-color immunoperoxidase staining: visualization of anatomic relationships between immunoreactive neural elements.The American journal of anatomy, 175 2-3
axons and terminals: Immunohistochemical localization of an axonally transported plant Iectin, P ~ . Q . s ~ o ~ u uulguris leucoagglutinin (PHA-L)
J. Rudge, Yanping Li, E. Pasnikowski, Karen Mattsson, Li Pan, G. Yancopoulos, S. Wiegand, R. Lindsay, N. Ip (1994)
Neurotrophic Factor Receptors and Their Signal Transduction Capabilities in Rat AstrocytesEuropean Journal of Neuroscience, 6
S. Davies, Kathryn Beardsall (1992)
Nerve growth factor selectively prevents excitotoxin induced degeneration of striatal cholinergic neuronesNeuroscience Letters, 140
C. Chandler, L. Parsons, Markus Hosangll, E. Shooter (1984)
A monoclonal antibody modulates the interaction of nerve growth factor with PC12 cells.The Journal of biological chemistry, 259 11
H. Nawa, M. Pelleymounter, J. Carnahan (1994)
Intraventricular administration of BDNF increases neuropeptide expression in newborn rat brain, 14
F. Longo, D. Holtzman, M. Grimes, W. Mobley (1993)
7 – Nerve Growth Factor: Actions in the Peripheral and Central Nervous Systems
C. Altar, L. Burton, Gregory Bennett, M. Dugich-Djordjevic (1991)
Recombinant human nerve growth factor is biologically active and labels novel high-affinity binding sites in rat brain.Proceedings of the National Academy of Sciences of the United States of America, 88 1
J. Springer, S. Koh, M. Tayrien, R. Loy (1987)
Basal forebrain magnocellular neurons stain for nerve growth factor receptor: Correlation with cholinergic cell bodies and effects of axotomyJournal of Neuroscience Research, 17
Erik Pioro, A. Cuello (1990)
Distribution of nerve growth factor receptor-like immunoreactivity in the adult rat central nervous system. Effect of colchicine and correlation with the cholinergic system—I. ForebrainNeuroscience, 34
H. Mitsumoto, Ken Ikeda, Bodgan Klinkosz, J. Cedarbaum, V. Wong, R. Lindsay (1994)
Arrest of motor neuron disease in wobbler mice cotreated with CNTF and BDNF.Science, 265 5175
M. Lavail, K. Unoki, D. Yasumura, M. Matthes, G. Yancopoulos, R. Steinberg (1992)
Multiple growth factors, cytokines, and neurotrophins rescue photoreceptors from the damaging effects of constant light.Proceedings of the National Academy of Sciences of the United States of America, 89 23
C. Altar, J. Siuciak, P. Wright, N. Ip, R. Lindsay, S. Wiegand (1994)
In Situ Hybridization of trkB and trkC Receptor mRNA in Rat Forebrain and Association with High‐affinity Binding of [125I]BDNF, [125I]NT‐4/5 and [125I]NT‐3European Journal of Neuroscience, 6
Czeslaw Radziejewski, R. Robinson, Peter DiStefano, John Taylor (1992)
Dimeric structure and conformational stability of brain-derived neurotrophic factor and neurotrophin-3.Biochemistry, 31 18
R. Lindsay (1988)
Nerve growth factors (NGF, BDNF) enhance axonal regeneration but are not required for survival of adult sensory neurons, 8
(1984)
An anterograde neuroanatnmical tracing method that shows the detailed morpholow of neurons, their 505. axons and terminals: Immunohistochemical localization of an axonally transported plant Iectin
MT Martin-Iverson, KG Todd, C. Altar (1994)
Brain-derived neurotrophic factor and neurotrophin-3 activate striatal dopamine and serotonin metabolism and related behaviors: interactions with amphetamine, 14
C. Altar, M. Criden, R. Lindsay, P. DiStefano (1993)
Characterization and topography of high-affinity 125I-neurotrophin-3 binding to mammalian brain, 13
R. Klein, D. Conway, L. Parada, M. Barbacid (1990)
The trkB tyrosine protein kinase gene codes for a second neurogenic receptor that lacks the catalytic kinase domainCell, 61
L. Kromer (1987)
Nerve growth factor treatment after brain injury prevents neuronal death.Science, 235 4785
Ian Ferguson, John Schweitzer, Perry Bartlett, Eugene Johnson (1991)
Receptor‐mediated retrograde transport in CNS neurons after intraventricular administration of NGF and growth factorsJournal of Comparative Neurology, 313
P. Maisonpierre, L. Belluscio, S. Squinto, N. Ip, M. Furth, R. Lindsay, G. Yancopoulos (1990)
Neurotrophin-3: a neurotrophic factor related to NGF and BDNF.Science, 247 4949 Pt 1
R. Watson, S. Wiegand, R. Clough, G. Hoffman (1986)
Use of cryoprotectant to maintain long-term peptide immunoreactivity and tissue morphologyPeptides, 7
(1992)
P.S. DiStefano, arid J.W. Taylor i
Effects of BDNF and NT - 3 on serotonin , dopamine , and acetylcholine neurons in uiuo
Q. Yan, C. Matheson, J. Sun, M. Radeke, Stuart Feinstein, J. Miller (1994)
Distribution of Intracerebral Ventricularly Administered Neurotrophins in Rat Brain and Its Correlation with Trk Receptor ExpressionExperimental Neurology, 127
Matgorzata Skup, Bonald Figueiredo, A. Cuello (1994)
Intraventricular application of BDNF and NT-3 failed to protect nucleus basalis magnocellularis cholinergic neurones.Neuroreport, 5 9
P. Distefano (1993)
Neurotrophic Factors in the Treatment of Motor Neuron Disease and TraumaExperimental Neurology, 124
Joanne Morse, S. Wiegand, Keith Anderson, Yimin You, Ning Cai, Josette Carnahan, James Miller, P. Distefano, C. Altar, Ronald Lindsay, Ralph Alderson (1993)
Brain-derived neurotrophic factor (BDNF) prevents the degeneration of medial septal cholinergic neurons following fimbria transection, 13
(1993)
8 – Brain-Derived Neurotrophic Factor: An NGF-Related Neurotrophin
A. Hohn, J. Leibrock, K. Bailey, Y. Barde (1990)
Identification and characterization of a novel member of the nerve growth factor/brain-derived neurotrophic factor familyNature, 344
R. Levi‐montalcini (1987)
The nerve growth factor 35 years later.Science, 237 4819
P. Lapchak, F. Hefti (1992)
BDNF and NGF treatment in lesioned rats: effects on cholinergic function and weight gain.Neuroreport, 3 5
Cynthia Wetmore, Yihai Cao, Ralf Pettersson, L. Olson (1991)
Brain-derived neurotrophic factor: subcellular compartmentalization and interneuronal transfer as visualized with anti-peptide antibodies.Proceedings of the National Academy of Sciences of the United States of America, 88
C. A. Altar, J. A. Siuciak, P. Wright, N. Y. Ip, R. M. Lindsay, S. J. Wiegand (1994)
In situ hybridization of trkB and trkC receptor mRNA in rat forebrain and association with [125I]NT‐3, [125I]BDNF, and [125I]NT‐4/5 binding autoradiography, 6
S. Appel (1981)
A unifying hypothesis for the cause of amyotrophic lateral sclerosis, parkinsonism, and alzheimer diseaseAnnals of Neurology, 10
B. Knusel, K. Beck, JW Winslow, A. Rosenthal, L. Burton, H. Widmer, K. Nikolics, F. Hefti (1992)
Brain-derived neurotrophic factor administration protects basal forebrain cholinergic but not nigral dopaminergic neurons from degenerative changes after axotomy in the adult rat brain, 12
H. Phillips, J. Hains, M. Armanini, G. Laramee, Steven Johnson, J. Winslow (1991)
BDNF mRNA is decreased in the hippocampus of individuals with Alzheimer's diseaseNeuron, 7
D. Valenzuela, P. Maisonpierre, D. Glass, E. Rojas, L. Nuñez, Yuan Kong, D. Gies, T. Stitt, N. Ip, G. Yancopoulos (1993)
Alternative forms of rat TrkC with different functional capabilitiesNeuron, 10
H. Widmer, B. Knusel, F. Hefti (1993)
BDNF protection of basal forebrain cholinergic neurons after axotomy: complete protection of p75IMGFR‐positive cellsNeuroReport, 4
S. Croll, S. Wiegand, K. Anderson, R. Lindsay, H. Nawa (1994)
Regulation of Neuropeptides in Adult Rat Forebrain by the Neurotrophins BDNF and NGFEuropean Journal of Neuroscience, 6
J. Leibrock, F. Lottspeich, A. Hohn, M. Hofer, B. Hengerer, P. Masiakowski, H. Thoenen, Y. Barde (1989)
Molecular cloning and expression of brain-derived neurotrophic factorNature, 341
F. Hefti (1986)
Nerve growth factor promotes survival of septal cholinergic neurons after fimbrial transections, 6
Marcelo Vazquez, Ted Ebendal (1991)
Messenger RNAs for trk and the low-affinity NGF receptor in rat basal forebrain.Neuroreport, 2 10
J. Siuciak, A. Altar, S. Wiegand, R. Lindsay (1994)
Antinociceptive effect of brain-derived neurotrophic factor and neurotrophin-3Brain Research, 633
J. Merlio, P. Ernfors, M. Jaber, H. Persson (1992)
Molecular cloning of rat trkC and distribution of cells expressing messenger RNAs for members of the trk family in the rat central nervous systemNeuroscience, 51
P. Richardson, V. Issa, R. Riopelle (1986)
Distribution of neuronal receptors for nerve growth factor in the rat, 6
S. Mansour-Robaey, D. Clarke, Y. Wang, G. Bray, A. Aguayo (1994)
Effects of ocular injury and administration of brain-derived neurotrophic factor on survival and regrowth of axotomized retinal ganglion cells.Proceedings of the National Academy of Sciences of the United States of America, 91
P. Distefano, B. Friedman, C. Radziejewski, C. Alexander, P. Boland, Christine Schick, R. Lindsay, S. Wiegand (1992)
The neurotrophins BDNF, NT-3, and NGF display distinct patterns of retrograde axonal transport in peripheral and central neuronsNeuron, 8
F. Lamballe, R. Klein, M. Barbacid (1991)
trkC, a new member of the trk family of tyrosine protein kinases, is a receptor for neurotrophin-3Cell, 66
L. Aloe (1987)
Intracerebral Pretreatment with Nerve Growth Factor Prevents Irreversible Brain Lesions in Neonatal Rats Injected with Ibotenic AcidBio/Technology, 5
R. Lindsay, C. Altar, J. Cedarbaum, C. Hyman, S. Wiegand (1993)
The Therapeutic Potential of Neurotrophic Factors in the Treatment of Parkinson's DiseaseExperimental Neurology, 124
Q. Yan, J. Elliott, W. Snider (1992)
Brain-derived neurotrophic factor rescues spinal motor neurons from axotomy-induced cell deathNature, 360
G. Raivich, G. Kreutzberg (1987)
The localization and distribution of high affinity β-nerve growth factor binding sites in the central nervous system of the adult rat. A light microscopic autoradiographic study using [125I]β-nerve growth factorNeuroscience, 20
T. Steininger, B. Wainer, R. Klein, M. Barbacid, H. Palfrey (1993)
High-affinity nerve growth factor receptor (Trk) immunoreactivity is localized in cholinergic neurons of the basal forebrain and striatum in the adult rat brainBrain Research, 612
H. Sauer, K. Campbell, Stanley Wiegand, Ronald Lindsay, A. Björklund (1994)
Brain-derived neurotrophic factor enhances striatal neuropeptide expression in both the intact and the dopamine-depleted rat striatum.Neuroreport, 5 5
C. Altar, C. Boylan, C. Jackson, Susan HERSHENSONt, J. MILLERt, S. Wiegand, R. Lindsay, C. Hyman (1992)
Brain-derived neurotrophic factor augments rotational behavior and nigrostriatal dopamine turnover in vivo.Proceedings of the National Academy of Sciences of the United States of America, 89 23
C. Altar, R. Alderson, K. Anders, C. Hyman, S. Wiegand, R. Lindsay (1995)
Potential Therapeutic Use of BDNF or NT-4/5 in Parkinson’s and Alzheimer’s Diseases
To evaluate effective means for delivering exogenous neurotrophins to neuron populations in the brain, we compared the distribution and transport of brain‐derived neurotrophic factor (BDNF), nerve growth factor (NGF), and neurotrophin‐3 (NT‐3) following intracerebral delivery. Rats received an injection of radioiodinated or unlabeled neurotrophin into the lateral ventricle and were killed humanely after 1.5–24 hours. Other rats received continuous infusion of unlabeled neurotrophin into the lateral ventricle, the striatum, or the hippocampus for 3–14 days. The neurotrophins were detected by autoradiography or immunohistochemistry. There were striking differences between BDNF, NGF, and NT‐3 in their penetration through brain tissue. These differences occurred regardless of the site or method of delivery, but were most pronounced following a bolus intracerebroventricular (ICV) injection. After ICV injection, NGF was widely distributed in tissues around the ventricles and at the surface of the brain, whereas the penetration of BDNF into brain tissue was distinctly less than that of NGF, and the penetration of NT‐3 was intermediate. An ICV injection of NGF produced prominent but transient labeling of cells that contain the low‐affinity NGF receptor, whereas an injection of BDNF prominently labeled the ventricular ependyma. During ICV infusion (12 g/day), the distribution of BDNF was no greater than that observed after a 12‐g bolus injection. A sixfold increase in the amount of BDNF infused (72 g/day) produced a more widespread distribution in the brain and doubled the depth of penetration into periventricular tissues near the cannula. Corresponding to their differences in penetration, NGF was retrogradely transported by basal forebrain cholinergic neurons after ICV or intrastriatal delivery, whereas NT‐3 was transported by a few basal forebrain neurons after ICV delivery, and BDNF was rarely detected in neurons after ICV delivery. Delivery of BDNF directly to the striatum or the hippocampus labeled numerous neurons in nuclei afferent to these structures. In situ hybridization studies confirmed that the high‐affinity BDNF receptor (TrkB) was much more widely expressed in neurons than was the high‐affinity NGF receptor (TrkA). Moreover, mRNA for truncated forms of TrkB was expressed at high levels in the ependyma, the choroid epithelium, and the gray matter. It is likely that binding of BDNF to TrkB, which appears to be more abundant and ubiquitous than TrkA, restricts the diffusion of BDNF relative to that of NGF. © 1995 Wiley‐Liss, Inc.
The Journal of Comparative Neurology – Wiley
Published: Feb 26, 1997
Keywords: ; ; ; ;
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.