scispace - formally typeset
Journal ArticleDOI

Implants of polymer-encapsulated human NGF-secreting cells in the nonhuman primate: Rescue and sprouting of degenerating cholinergic basal forebrain neurons

Reads0
Chats0
TLDR
These findings support the use of polymer‐encapsulated cell therapy as a potential treatment for neurodegenerative diseases such as Alzheimer disease where basal forebrain degeneration is a consistent pathological feature.
Abstract
Baby hamster kidney (BHK) cells were genetically modified to secrete high levels of human nerve growth factor (BHK-hNGF). Following polymer encapsulation, these cells were implanted into the lateral ventricle of four cynomolgus monkeys immediately following a unilateral transection/aspiration of the fornix. Three control monkeys received identical implants, with the exception that the BHK cells were not genetically modified to secrete hNGF and thus differed only by the hNGF construct. One monkey received a fornix transection only. All monkeys displayed complete transections of the fornix as revealed by a comprehensive loss of acetylcholinesterase-containing fibers within the hippocampus ipsilateral to the lesion. Control monkeys that were either unimplanted or received BHK-control (non-NGF secreting) cell implants did not differ from each other and displayed extensive losses of choline acetyltransferase and p75 NGF receptor (NGFr)-immunoreactive neurons within the medial septum (MS; 53 and 54%, respectively) and vertical limb of the diagonal band (VLDB; 21 and 30%, respectively) ipsilateral to the lesion. In contrast, monkeys receiving implants of BHK-hNGF cells exhibited a only a modest loss of cholinergic neurons within the septum (19 and 20%, respectively) and VLDB (7%). Furthermore, only implants of hNGF-secreting cells induced a dense sprouting of cholinergic fibers within the septum, which ramified against the ependymal lining of the ventricle adjacent to the transplant site. Examination of the capsules retreived from monkeys just prior to their death revealed an abundance of cells that produced detectable levels of hNGF in a sufficient concentration to differentiate PC12A cells in culture. These findings support the use of polymer-encapsulated cell therapy as a potential treatment for neurodegenerative diseases such as Alzheimer disease where basal forebrain degeneration is a consistent pathological feature. Moreover, this encapsulated xenogeneic system may provide therapeutically effective levels of a number of neurotrophic factors, alone or in combination, to select populations of neurons within the central nervous system.

read more

Citations
More filters
Journal ArticleDOI

A phase 1 clinical trial of nerve growth factor gene therapy for Alzheimer disease

TL;DR: A phase 1 trial of ex vivo NGF gene delivery in eight individuals with mild Alzheimer disease, implanting autologous fibroblasts genetically modified to express human NGF into the forebrain found no long-term adverse effects and brain autopsy from one subject suggested robust growth responses to NGF.
Journal ArticleDOI

The cholinergic system in aging and neuronal degeneration.

TL;DR: Observed changes in the expression of NGF, its precursor proNGF, the high and low NGF receptors, trkA and p75NTR, respectively, changes in acetylcholine release, high-affinity choline uptake, as well as alterations in muscarinic and nicotinic acetyl choline receptor expression may contribute to the cholinergic dysfunction.
Journal ArticleDOI

Technology of mammalian cell encapsulation.

TL;DR: Four aspects of encapsulated cells that are critical for the success of the technology, namely the capsule permeability, mechanical properties, immune protection and biocompatibility, have been singled out and methods to evaluate these properties were summarized.
Journal ArticleDOI

Host response to tissue engineered devices

TL;DR: The inflammatory response to the biomaterial component and immune response towards transplanted cells are described and examples of devices appropriately integrated as assessed morphologically with the host for various applications including bone, nerve, and skin regeneration are illustrated.
Journal ArticleDOI

The role of neuronal growth factors in neurodegenerative disorders of the human brain

TL;DR: The role members of the nerve growth factor family (NGF, BDNF and NT-3) and trk receptors as well as additional growth factors (GDNF, TGF-alpha and IGF-I) may play in neurodegenerative disorders of the human brain are examined.
References
More filters
Journal ArticleDOI

The Cholinergic Hypothesis of Geriatric Memory Dysfunction

TL;DR: Biochemical, electrophysiological, and pharmacological evidence supporting a role for cholinergic dysfunction in age-related memory disturbances is critically reviewed and an attempt has been made to identify pseudoissues, resolve certain controversies, and clarify misconceptions that have occurred in the literature.
Journal ArticleDOI

Alzheimer's disease and senile dementia: loss of neurons in the basal forebrain.

TL;DR: Demonstration of selective degeneration of neurons of the nucleus basalis of Meynert represents the first documentation of a loss of a transmitter-specific neuronal population in a major disorder of higher cortical function and points to a critical subcortical lesion in Alzheimer's patients.
Journal ArticleDOI

Alzheimer's disease: a disorder of cortical cholinergic innervation

TL;DR: Advances in neurotransmitter systems involved in the symptomatic manifestations of neurological and psychiatric disorders reflect a close interaction between experimental and clinical neuroscientists in which information derived from basic neurobiology is rapidly utilized to analyze disorders of the human brain.
Journal ArticleDOI

Nerve growth factor promotes survival of septal cholinergic neurons after fimbrial transections

TL;DR: It is suggested that fimbrial transections resulted in retrograde degeneration of cholinergic septo-hippocampal neurons and that NGF treatment strongly attenuated this lesion-induced degeneration.
Journal ArticleDOI

Amelioration of cholinergic neuron atrophy and spatial memory impairment in aged rats by nerve growth factor.

TL;DR: Continuous intracerebral infusion of NGF over a period of four weeks can partly reverse the cholinergic cell body atrophy and improve retention of a spatial memory task in behaviourally impaired aged rats.
Related Papers (5)