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1.
Rinsho Shinkeigaku ; 64(3): 185-189, 2024 Mar 22.
Artículo en Japonés | MEDLINE | ID: mdl-38382934

RESUMEN

A 71-year-old male who suffered from Hoehn and Yahr stage III Parkinson's disease with bradykinesia, rigidity and a 5-6-Hz tremor at rest in the right extremities was admitted to our hospital due to the sudden onset of vertigo. Right cerebellar hemorrhage was confirmed by CT. The patient's resting tremor in the right extremities disappeared immediately following the cerebellar hemorrhage. Six days later, MRI showed Wallerian degeneration in the cerebello-rubro-thalamic tract. Approximately 5 months later, a 2-3-Hz Holmes' tremor gradually appeared in the right upper extremity. This tremor was improved by increasing L-dopa doses. Case reports of the disappearance of Parkinson's resting tremor and subsequent emergence of Holmes' tremor due to cerebellar lesion are rare. Furthermore, the Wallerian degeneration of the cerebello-rubro-thalamic tract identified on MRI between tremors of the different frequencies is very rare. We hypothesize that the cause of the tremor frequency change was simultaneous damage to the nigro-striatal network and the cerebello-thalamo-cerebral network.


Asunto(s)
Enfermedad de Parkinson , Temblor , Masculino , Humanos , Anciano , Temblor/etiología , Enfermedad de Parkinson/complicaciones , Enfermedad de Parkinson/patología , Degeneración Walleriana/patología , Tálamo/diagnóstico por imagen , Hemorragia Cerebral/diagnóstico por imagen , Hemorragia Cerebral/etiología
2.
eNeuro ; 10(3)2023 03.
Artículo en Inglés | MEDLINE | ID: mdl-36894321

RESUMEN

Wallerian degeneration (WD) occurs in the early stages of numerous neurologic disorders, and clarifying WD pathology is crucial for the advancement of neurologic therapies. ATP is acknowledged as one of the key pathologic substances in WD. The ATP-related pathologic pathways that regulate WD have been defined. The elevation of ATP levels in axon contributes to delay WD and protects axons. However, ATP is necessary for the active processes to proceed WD, given that WD is stringently managed by auto-destruction programs. But little is known about the bioenergetics during WD. In this study, we made sciatic nerve transection models for GO-ATeam2 knock-in rats and mice. We presented the spatiotemporal ATP distribution in the injured axons with in vivo ATP imaging systems, and investigated the metabolic source of ATP in the distal nerve stump. A gradual decrease in ATP levels was observed before the progression of WD. In addition, the glycolytic system and monocarboxylate transporters (MCTs) were activated in Schwann cells following axotomy. Interestingly, in axons, we found the activation of glycolytic system and the inactivation of the tricarboxylic acid (TCA) cycle. Glycolytic inhibitors, 2-deoxyglucose (2-DG) and MCT inhibitors, a-cyano-4-hydroxycinnamic acid (4-CIN) decreased ATP and enhanced WD progression, whereas mitochondrial pyruvate carrier (MPC) inhibitors (MSDC-0160) did not change. Finally, ethyl pyruvate (EP) increased ATP levels and delayed WD. Together, our findings suggest that glycolytic system, both in Schwann cells and axons, is the main source of maintaining ATP levels in the distal nerve stump.


Asunto(s)
Axones , Degeneración Walleriana , Animales , Ratas , Ratones , Axotomía , Axones/metabolismo , Degeneración Walleriana/metabolismo , Nervio Ciático/metabolismo , Adenosina Trifosfato/metabolismo , Regeneración Nerviosa/fisiología
3.
Neurobiol Dis ; 171: 105808, 2022 09.
Artículo en Inglés | MEDLINE | ID: mdl-35779777

RESUMEN

Wallerian degeneration (WD) is a conserved axonal self-destruction program implicated in several neurological diseases. WD is driven by the degradation of the NAD+ synthesizing enzyme NMNAT2, the buildup of its substrate NMN, and the activation of the NAD+ degrading SARM1, eventually leading to axonal fragmentation. The regulation and amenability of these events to therapeutic interventions remain unclear. Here we explored pharmacological strategies that modulate NMN and NAD+ metabolism, namely the inhibition of the NMN-synthesizing enzyme NAMPT, activation of the nicotinic acid riboside (NaR) salvage pathway and inhibition of the NMNAT2-degrading DLK MAPK pathway in an axotomy model in vitro. Results show that NAMPT and DLK inhibition cause a significant but time-dependent delay of WD. These time-dependent effects are related to NMNAT2 degradation and changes in NMN and NAD+ levels. Supplementation of NAMPT inhibition with NaR has an enhanced effect that does not depend on timing of intervention and leads to robust protection up to 4 days. Additional DLK inhibition extends this even further to 6 days. Metabolite analyses reveal complex effects indicating that NAMPT and MAPK inhibition act by reducing NMN levels, ameliorating NAD+ loss and suppressing SARM1 activity. Finally, the axonal NAD+/NMN ratio is highly predictive of cADPR levels, extending previous cell-free evidence on the allosteric regulation of SARM1. Our findings establish a window of axon protection extending several hours following injury. Moreover, we show prolonged protection by mixed treatments combining MAPK and NAMPT inhibition that proceed via complex effects on NAD+ metabolism and inhibition of SARM1.


Asunto(s)
Nicotinamida Fosforribosiltransferasa/antagonistas & inhibidores , Nicotinamida-Nucleótido Adenililtransferasa , Degeneración Walleriana , Animales , Proteínas del Dominio Armadillo/metabolismo , Axones/patología , Proteínas del Citoesqueleto/metabolismo , Humanos , Mamíferos/metabolismo , NAD/metabolismo , Degeneración Nerviosa/patología , Nicotinamida-Nucleótido Adenililtransferasa/metabolismo , Inhibidores de Proteínas Quinasas , Degeneración Walleriana/metabolismo
4.
Toxicol Lett ; 363: 77-84, 2022 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-35643292

RESUMEN

Wallerian degeneration (WD) is a well-known process by which degenerating axons and myelin are cleared after nerve injury. Although organophosphate-induced delayed neuropathy (OPIDN) is characterized by Wallerian-like degeneration of long axons in human and sensitive animals, the precise pathological mechanism remains unclear. In this study, we cultured embryonic chicken dorsal root ganglia (DRG) neurons, the model of OPIDN in vitro, to investigate the underlying mechanism of axon degeneration induced by tri-ortho-cresyl phosphate (TOCP), an OPIDN inducer. The results showed that TOCP exposure time- and concentration-dependently induced a serious degeneration and fragmentation of the axons from the DRG neurons. A collapse of mitochondrial membrane potential and a dramatic depletion of ATP levels were found in the DRG neurons after TOCP treatment. In addition, nicotinamide nucleotide adenylyl transferase 2 (NMNAT2) expression and nicotinamide adenine dinucleotide (NAD+) level was also found to be decreased in the DRG neurons exposed to TOCP. However, the TOCP-induced Wallerian degeneration in the DRG neurons could be inhibited by ATP supplementation. And exogenous NAD+ or NAD+ processor nicotinamide riboside can rescue TOCP-induced ATP deficiency and prevent TOCP-induced axon degeneration of the DRG neurons. These findings may shed light on the pathophysiological mechanism of TOCP-induced axonal damages, and implicate the potential application of NAD+ to treat OPIDN.


Asunto(s)
Enfermedades del Sistema Nervioso Periférico , Tritolilfosfatos , Adenosina Trifosfato/metabolismo , Animales , Axones , Pollos , Ganglios Espinales , NAD/metabolismo , Neuronas , Organofosfatos/metabolismo , Fosfatos , Tritolilfosfatos/metabolismo , Tritolilfosfatos/toxicidad , Degeneración Walleriana/inducido químicamente , Degeneración Walleriana/metabolismo , Degeneración Walleriana/patología
5.
Biochim Biophys Acta Bioenerg ; 1863(5): 148545, 2022 06 01.
Artículo en Inglés | MEDLINE | ID: mdl-35339437

RESUMEN

Axons are the long, fragile, and energy-hungry projections of neurons that are challenging to sustain. Together with their associated glia, they form the bulk of the neuronal network. Pathological axon degeneration (pAxD) is a driver of irreversible neurological disability in a host of neurodegenerative conditions. Halting pAxD is therefore an attractive therapeutic strategy. Here we review recent work demonstrating that pAxD is regulated by an auto-destruction program that revolves around axonal bioenergetics. We then focus on the emerging concept that axonal and glial energy metabolism are intertwined. We anticipate that these discoveries will encourage the pursuit of new treatment strategies for neurodegeneration.


Asunto(s)
Enfermedades Neurodegenerativas , Degeneración Walleriana , Axones/metabolismo , Axones/patología , Metabolismo Energético , Humanos , Enfermedades Neurodegenerativas/metabolismo , Enfermedades Neurodegenerativas/patología , Degeneración Walleriana/metabolismo , Degeneración Walleriana/patología
6.
Sci Rep ; 10(1): 15472, 2020 09 22.
Artículo en Inglés | MEDLINE | ID: mdl-32963272

RESUMEN

Neuronal injury leads to rapid, programmed disintegration of axons distal to the site of lesion. Much like other forms of axon degeneration (e.g. developmental pruning, toxic insult from neurodegenerative disorder), Wallerian degeneration associated with injury is preceded by spheroid formation along axons. The mechanisms by which injury leads to formation of spheroids and whether these spheroids have a functional role in degeneration remain elusive. Here, using neonatal mouse primary sympathetic neurons, we investigate the roles of players previously implicated in the progression of Wallerian degeneration in injury-induced spheroid formation. We find that intra-axonal calcium flux is accompanied by actin-Rho dependent growth of calcium rich axonal spheroids that eventually rupture, releasing material to the extracellular space prior to catastrophic axon degeneration. Importantly, after injury, Sarm1-/- and DR6-/-, but not Wlds (excess NAD+) neurons, are capable of forming spheroids that eventually rupture, releasing their contents to the extracellular space to promote degeneration. Supplementation of exogenous NAD+ or expressing WLDs suppresses Rho-dependent spheroid formation and degeneration in response to injury. Moreover, injured or trophically deprived Sarm1-/- and DR6-/-, but not Wlds neurons, are resistant to degeneration induced by conditioned media collected from wild-type axons after spheroid rupture. Taken together, these findings place Rho-actin and NAD+ upstream of spheroid formation and may suggest that other mediators of degeneration, such as DR6 and SARM1, mediate post-spheroid rupture events that lead to catastrophic axon disassembly.


Asunto(s)
Proteínas del Dominio Armadillo/fisiología , Proteínas del Citoesqueleto/fisiología , Proteínas del Tejido Nervioso/fisiología , Enfermedades Neurodegenerativas/patología , Neuronas/patología , Receptores del Factor de Necrosis Tumoral/fisiología , Esferoides Celulares/patología , Degeneración Walleriana/fisiopatología , Animales , Axones/patología , Axotomía , Calcio/metabolismo , Femenino , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Enfermedades Neurodegenerativas/etiología , Enfermedades Neurodegenerativas/metabolismo , Neuronas/metabolismo
7.
Bioorg Med Chem ; 28(18): 115644, 2020 09 15.
Artículo en Inglés | MEDLINE | ID: mdl-32828421

RESUMEN

Sterile Alpha and Toll Interleukin Receptor Motif-containing protein 1 (SARM1) is a key therapeutic target for diseases that exhibit Wallerian-like degeneration; Wallerian degeneration is characterized by degeneration of the axon distal to the site of injury. These diseases include traumatic brain injury, peripheral neuropathy, and neurodegenerative diseases. SARM1 promotes neurodegeneration by catalyzing the hydrolysis of NAD+ to form a mixture of ADPR and cADPR. Notably, SARM1 knockdown prevents degeneration, indicating that SARM1 inhibitors will likely be efficacious in treating these diseases. Consistent with this hypothesis is the observation that NAD+ supplementation is axoprotective. To identify compounds that block the NAD+ hydrolase activity of SARM1, we developed and performed a high-throughput screen (HTS). This HTS assay exploits an NAD+ analog, etheno-NAD+ (ENAD) that fluoresces upon cleavage of the nicotinamide moiety. From this screen, we identified berberine chloride and zinc chloride as the first noncompetitive inhibitors of SARM1. Though modest in potency, the noncompetitive mode of inhibition, suggests the presence of an allosteric binding pocket on SARM1 that can be targeted for future therapeutic development. Additionally, zinc inhibition and site-directed mutagenesis reveals that cysteines 629 and 635 are critical for SARM1 catalysis, highlighting these sites for the design of inhibitors targeting SARM1.


Asunto(s)
Proteínas del Dominio Armadillo/antagonistas & inhibidores , Berberina/química , Cloruros/química , Proteínas del Citoesqueleto/antagonistas & inhibidores , Degeneración Walleriana/tratamiento farmacológico , Compuestos de Zinc/química , Secuencias de Aminoácidos , Secuencia de Aminoácidos , Axones/metabolismo , Berberina/metabolismo , Berberina/farmacología , Sitios de Unión , Catálisis , Cloruros/metabolismo , Cloruros/farmacología , Técnicas de Silenciamiento del Gen , Ensayos Analíticos de Alto Rendimiento , Humanos , Hidrolasas/metabolismo , Mutagénesis , NAD/metabolismo , Niacinamida/química , Unión Proteica , Compuestos de Zinc/metabolismo , Compuestos de Zinc/farmacología
8.
BMC Neurol ; 20(1): 96, 2020 Mar 17.
Artículo en Inglés | MEDLINE | ID: mdl-32183727

RESUMEN

BACKGROUND: Cases of Wallerian degeneration of bilateral cerebral peduncles after acute carbon monoxide poisoning have not yet been reported. To date, most of the delayed encephalopathy after acute carbon monoxide poisoning (DEACMP) lesions captured in magnetic resonance imaging (MRI) has been located in the subcortical white matter and basal ganglia. Here we report two cases of DEACMP with abnormalities in the bilateral cerebral peduncles. The etiology of abnormalities, which were strictly confined to the bilateral cerebral peduncles, was Wallerian degeneration secondary to upstream nerve axonal damage, making this the first report on such bilateral cerebral peduncle abnormalities after DEACMP. CASE PRESENTATION: In this report, we present two cases of DEACMP with abnormal signals in the bilateral cerebral peduncles captured during brain MRIs. Case 1 was of a 68-year-old man who presented with paroxysmal disturbance of the consciousness, left limb weakness for 16 days, and lagging responses for 2 days. Case 2 was of a 55-year-old man who was unconscious for 6 h. In addition to the above mentioned characteristics on the brain MRIs, the electroencephalography of case 1 indicated that his forehead scans had a mixture of wide sharp, sharp, and three-phase waves. Brain diffusion tensor imaging of case 2 further proved that the bilateral cerebral anomalies represented Wallerian degeneration secondary to upstream axonal damage. After the definitive diagnosis, the patients returned to the local hospital for hyperbaric oxygen therapy. CONCLUSIONS: Wallerian degeneration of the bilateral cerebral peduncles after acute carbon monoxide poisoning has never been reported before. The abnormal signals in the bilateral cerebral peduncles captured during brain MRIs indicated Wallerian degeneration secondary to upstream axonal damage; thus, these two cases may further our understanding of DEACMP imaging.


Asunto(s)
Intoxicación por Monóxido de Carbono/complicaciones , Pedúnculo Cerebral/patología , Degeneración Walleriana/etiología , Anciano , Ganglios Basales/patología , Encefalopatías/patología , Imagen de Difusión Tensora , Electroencefalografía , Humanos , Oxigenoterapia Hiperbárica , Imagen por Resonancia Magnética , Masculino , Persona de Mediana Edad , Inconsciencia , Sustancia Blanca/patología
9.
Biochem Soc Trans ; 47(1): 119-130, 2019 02 28.
Artículo en Inglés | MEDLINE | ID: mdl-30626706

RESUMEN

Research over the last few decades has extended our understanding of nicotinamide adenine dinucleotide (NAD) from a vital redox carrier to an important signalling molecule that is involved in the regulation of a multitude of fundamental cellular processes. This includes DNA repair, cell cycle regulation, gene expression and calcium signalling, in which NAD is a substrate for several families of regulatory proteins, such as sirtuins and ADP-ribosyltransferases. At the molecular level, NAD-dependent signalling events differ from hydride transfer by cleavage of the dinucleotide into an ADP-ribosyl moiety and nicotinamide. Therefore, non-redox functions of NAD require continuous biosynthesis of the dinucleotide. Maintenance of cellular NAD levels is mainly achieved by nicotinamide salvage, yet a variety of other precursors can be used to sustain cellular NAD levels via different biosynthetic routes. Biosynthesis and consumption of NAD are compartmentalised at the subcellular level, and currently little is known about the generation and role of some of these subcellular NAD pools. Impaired biosynthesis or increased NAD consumption is deleterious and associated with ageing and several pathologies. Insults to neurons lead to depletion of axonal NAD and rapid degeneration, partial rescue can be achieved pharmacologically by administration of specific NAD precursors. Restoring NAD levels by stimulating biosynthesis or through supplementation with precursors also produces beneficial therapeutic effects in several disease models. In this review, we will briefly discuss the most recent achievements and the challenges ahead in this diverse research field.


Asunto(s)
NAD/metabolismo , ADP-Ribosilación/fisiología , Animales , Humanos , Transducción de Señal/fisiología , Sirtuinas/metabolismo , Degeneración Walleriana/metabolismo
10.
J Hand Surg Am ; 43(4): 368-373, 2018 04.
Artículo en Inglés | MEDLINE | ID: mdl-29618417

RESUMEN

Current strategies for promoting faster and more effective peripheral nerve healing have utilized a wide variety of techniques and approaches. Nerve grafts, conduits, and stem cell therapy all have their respective advantages. However, there are still some difficulties in attaining complete functional recovery with a single treatment modality. The utilization of adjuvant treatments, in combination with current standard-of-care methods, offers the potential to improve patient outcomes. This paper highlights the current landscape of adjuvant treatments for enhancing peripheral nerve repair and regeneration.


Asunto(s)
Regeneración Nerviosa , Traumatismos de los Nervios Periféricos/terapia , Implantes Absorbibles , Aloinjertos , Autoinjertos , Bloqueadores de los Canales de Calcio/farmacología , Eritropoyetina/farmacología , Gabapentina/farmacología , Humanos , Inmunosupresores/farmacología , Compuestos de Litio/farmacología , Fármacos Neuroprotectores/farmacología , Procedimientos Neuroquirúrgicos/instrumentación , Nervios Periféricos/trasplante , Recuperación de la Función , Riluzol/farmacología , Trasplante de Células Madre , Ácido Valproico/farmacología , Venas/trasplante , Degeneración Walleriana/terapia
11.
Artículo en Inglés | WPRIM | ID: wpr-97886

RESUMEN

The current understanding of the pathophysiology of mild traumatic brain injury (mTBI) is, without doubt, incomplete. Nevertheless, we tried to summarize the state-of-the-art explanation of how the brain is continuously injured even after a single impact. We also reviewed the real struggle of diagnosing mTBI, which culminated in showing the potential of blood-based biomarkers as an alternative or complementary way to overcome this difficulty. Pathophysiology of mTBI is subdivided into primary and secondary injuries. Primary injury is caused by a direct impact on the head and brain. Secondary injury refers to the changes in energy metabolism and protein synthesis/degradation resulting from the biochemical cascades as follows; calcium influx, mitochondrial dysfunction, fractured microtubules, and Wallerian degeneration, neuroinflammation, and toxic proteinopathy. Since the diagnosis of mTBI is made through the initial clinical information, it is difficult and inaccurate to diagnose mTBI without the absence of a witness or sign of head trauma. Blood-based biomarkers are expected to play an important role in diagnosing mTBI and predicting functional outcomes, due to their feasibility and the recent progress of targeted proteomics techniques (i.e., liquid chromatography tandem mass spectrometry [LC-MS/MS]).


Asunto(s)
Biomarcadores , Encéfalo , Conmoción Encefálica , Lesiones Encefálicas , Calcio , Cromatografía Liquida , Traumatismos Craneocerebrales , Diagnóstico , Metabolismo Energético , Cabeza , Microtúbulos , Proteómica , Espectrometría de Masas en Tándem , Degeneración Walleriana
12.
J Comp Neurol ; 523(18): 2665-82, 2015 Dec 15.
Artículo en Inglés | MEDLINE | ID: mdl-25976033

RESUMEN

Studies of axon regeneration in the spinal cord often assess regeneration of the corticospinal tract (CST). Emx1-Cre x Thy1-STOP-YFP mice have been reported to have yellow fluorescent protein (YFP) selectively expressed in forebrain neurons leading to genetic labeling of CST axons in the spinal cord, and it was suggested that these CST-YFP mice would be useful for studies of CST regeneration. Because regeneration past a lesion may involve only a few axons, the presence of labeled non-CST axons compromises interpretation. We show here that in CST-YFP mice, some YFP-labeled axons are not from the CST. Specifically, YFP-labeled axons are present in regions beyond those with anterogradely labeled CST axons, most YFP-labeled axons beyond established CST locations do not undergo Wallerian degeneration following a large lesion of the sensorimotor cortex, some rubrospinal and reticulospinal neurons are labeled with YFP, and some YFP-labeled cells in the spinal gray matter have YFP-labeled projections into the spinal cord white matter. We further demonstrate that the density of YFP-labeled axon arbors hinders tracing of single axons to their point of origin in the main descending tracts. In light of recent advances in 3D imaging for visualizing axons in unsectioned blocks of spinal cord, we also assessed CST-YFP mice for 3D imaging and found that YFP fluorescence in CST-YFP mice is faint for clearing-based 3D imaging in comparison with fluorescence in Thy1-YFP-H mice and fluorescence of mini-ruby biotinylated dextran amine (BDA). Overall, the nonspecific and faint YFP labeling in CST-YFP mice limits their utility for assessments of CST axon regeneration.


Asunto(s)
Regeneración Nerviosa/fisiología , Tractos Piramidales/metabolismo , Tractos Piramidales/fisiopatología , Degeneración Walleriana/fisiopatología , Animales , Proteínas Bacterianas/genética , Proteínas Bacterianas/metabolismo , Biotina/análogos & derivados , Biotina/metabolismo , Lesiones Encefálicas/complicaciones , Lesiones Encefálicas/patología , Dextranos/metabolismo , Femenino , Lateralidad Funcional , Proteínas de Homeodominio/genética , Proteínas de Homeodominio/metabolismo , Imagenología Tridimensional , Proteínas Luminiscentes/genética , Proteínas Luminiscentes/metabolismo , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Microscopía Confocal , Corteza Motora/patología , Neuronas/metabolismo , Fosfohidrolasa PTEN/genética , Fosfohidrolasa PTEN/metabolismo , Tractos Piramidales/patología , Estilbamidinas/metabolismo , Factores de Transcripción/genética , Factores de Transcripción/metabolismo , Degeneración Walleriana/etiología
13.
Neuroscience ; 290: 300-20, 2015 Apr 02.
Artículo en Inglés | MEDLINE | ID: mdl-25617654

RESUMEN

Activity and disuse of synapses are thought to influence progression of several neurodegenerative diseases in which synaptic degeneration is an early sign. Here we tested whether stimulation or disuse renders neuromuscular synapses more or less vulnerable to degeneration, using axotomy as a robust trigger. We took advantage of the slow synaptic degeneration phenotype of axotomized neuromuscular junctions in flexor digitorum brevis (FDB) and deep lumbrical (DL) muscles of Wallerian degeneration-Slow (Wld(S)) mutant mice. First, we maintained ex vivo FDB and DL nerve-muscle explants at 32°C for up to 48 h. About 90% of fibers from Wld(S) mice remained innervated, compared with about 36% in wild-type muscles at the 24-h checkpoint. Periodic high-frequency nerve stimulation (100 Hz: 1s/100s) reduced synaptic protection in Wld(S) preparations by about 50%. This effect was abolished in reduced Ca(2+) solutions. Next, we assayed FDB and DL innervation after 7 days of complete tetrodotoxin (TTX)-block of sciatic nerve conduction in vivo, followed by tibial nerve axotomy. Five days later, only about 9% of motor endplates remained innervated in the paralyzed muscles, compared with about 50% in 5 day-axotomized muscles from saline-control-treated Wld(S) mice with no conditioning nerve block. Finally, we gave mice access to running wheels for up to 4 weeks prior to axotomy. Surprisingly, exercising Wld(S) mice ad libitum for 4 weeks increased about twofold the amount of subsequent axotomy-induced synaptic degeneration. Together, the data suggest that vulnerability of mature neuromuscular synapses to axotomy, a potent neurodegenerative trigger, may be enhanced bimodally, either by disuse or by hyperactivity.


Asunto(s)
Unión Neuromuscular/fisiopatología , Degeneración Walleriana/fisiopatología , Animales , Axotomía , Calcio/metabolismo , Terapia por Estimulación Eléctrica , Femenino , Masculino , Ratones Endogámicos C57BL , Ratones Transgénicos , Músculo Esquelético/patología , Músculo Esquelético/fisiopatología , Proteínas del Tejido Nervioso/genética , Proteínas del Tejido Nervioso/metabolismo , Unión Neuromuscular/patología , Carrera/fisiología , Nervio Ciático/efectos de los fármacos , Nervio Ciático/fisiopatología , Bloqueadores de los Canales de Sodio/farmacología , Tetrodotoxina/farmacología , Nervio Tibial/lesiones , Nervio Tibial/fisiopatología , Técnicas de Cultivo de Tejidos , Degeneración Walleriana/patología , Degeneración Walleriana/prevención & control
14.
Cell Transplant ; 24(3): 403-17, 2015.
Artículo en Inglés | MEDLINE | ID: mdl-25622224

RESUMEN

Our previous results showed that the polysaccharides extracted from Lycium barbarum (LBP) could delay secondary degeneration of retinal ganglion cell bodies and improve the function of the retinas after partial optic nerve transection (PONT). Although the common degeneration mechanisms were believed to be shared by both neuronal bodies and axons, recently published data from slow Wallerian degeneration mutant (Wld(s)) mice supported the divergence in the mechanisms of them. Therefore, we want to determine if LBP could also delay the degeneration of axons after PONT. Microglia/macrophages were thought to be a source of reactive oxygen species after central nervous system (CNS) injury. After PONT, however, oxidative stress was believed to occur prior to the activation of microglia/macrophages in the areas vulnerable to secondary degeneration both in the optic nerves (ONs) and the retinas. But the results did not take into account the morphological changes of microglia/macrophages after their activation. So we examined the morphology in addition to the response magnitude of microglia/macrophages to determine their time point of activation. In addition, the effects of LBP on the activation of microglia/macrophages were investigated. The results showed that (1) LBP reduced the loss of axons in the central ONs and preserved the g-ratio (axon diameter/fiber diameter) in the ventral ONs although no significant effect was detected in the dorsal ONs; (2) microglia/macrophages were activated in the ONs by 12 h after PONT; (3) LBP decreased the response magnitude of microglia/macrophages 4 weeks after PONT. In conclusion, our results showed that LBP could delay secondary degeneration of the axons, and LBP could also inhibit the activation of microglia/macrophages. Therefore, LBP could be a promising herbal medicine to delay secondary degeneration in the CNS via modulating the function of microglia/macrophages.


Asunto(s)
Axones/fisiología , Medicamentos Herbarios Chinos/farmacología , Lycium/metabolismo , Degeneración Nerviosa/etiología , Traumatismos del Nervio Óptico/complicaciones , Animales , Axones/efectos de los fármacos , Conducta Animal/efectos de los fármacos , Medicamentos Herbarios Chinos/uso terapéutico , Femenino , Frutas/química , Frutas/metabolismo , Medicina de Hierbas , Lycium/química , Macrófagos/efectos de los fármacos , Macrófagos/inmunología , Macrófagos/fisiología , Ratones , Microglía/citología , Microglía/efectos de los fármacos , Microglía/fisiología , Vaina de Mielina/fisiología , Degeneración Nerviosa/tratamiento farmacológico , Fármacos Neuroprotectores/farmacología , Fármacos Neuroprotectores/uso terapéutico , Nervio Óptico/patología , Traumatismos del Nervio Óptico/patología , Traumatismos del Nervio Óptico/terapia , Estrés Oxidativo/efectos de los fármacos , Ratas , Ratas Sprague-Dawley , Retina/patología , Degeneración Walleriana/complicaciones , Degeneración Walleriana/patología
15.
Cell Mol Life Sci ; 72(6): 1127-47, 2015 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-25417212

RESUMEN

There is a broad consensus that MS represents more than an inflammatory disease: it harbors several characteristic aspects of a classical neurodegenerative disorder, i.e. damage to axons, synapses and nerve cell bodies. While the clinician is equipped with appropriate tools to dampen peripheral cell recruitment and, thus, is able to prevent immune-cell driven relapses, effective therapeutic options to prevent the simultaneously progressing neurodegeneration are still missing. Furthermore, while several sophisticated paraclinical methods exist to monitor the inflammatory-driven aspects of the disease, techniques to monitor progression of early neurodegeneration are still in their infancy and have not been convincingly validated. In this review article, we aim to elaborate why the thalamus with its multiple reciprocal connections is sensitive to pathological processes occurring in different brain regions, thus acting as a "barometer" for diffuse brain parenchymal damage in MS. The thalamus might be, thus, an ideal region of interest to test the effectiveness of new neuroprotective MS drugs. Especially, we will address underlying pathological mechanisms operant during thalamus degeneration in MS, such as trans-neuronal or Wallerian degeneration. Furthermore, we aim at giving an overview about different paraclinical methods used to estimate the extent of thalamic pathology in MS patients, and we discuss their limitations. Finally, thalamus involvement in different MS animal models will be described, and their relevance for the design of preclinical trials elaborated.


Asunto(s)
Esclerosis Múltiple/patología , Tálamo/patología , Animales , Axones/patología , Imagen de Difusión Tensora , Humanos , Imagen por Resonancia Magnética , Esclerosis Múltiple/terapia , Tálamo/anatomía & histología , Degeneración Walleriana/patología
16.
Sci Rep ; 4: 6501, 2014 Oct 13.
Artículo en Inglés | MEDLINE | ID: mdl-25308730

RESUMEN

Glaucoma optic neuropathy (GON) is a condition where pathogenic intraocular pressure (IOP) results in axonal damage following retinal ganglion cell (RGC) death, and further results in secondary damage of the lateral geniculate nucleus (LGN). Therapeutic targets for glaucoma thus focus on both the LGN and RGC. However, the temporal and spatial patterns of degeneration and the mechanism of LGN damage have not been fully elucidated. Suitable and convenient ocular hypertension (OH) animal models with binocular vision comparable to that of monkeys are strongly needed. The ferret is relatively small mammal with binocular vision like humans - here we report on its suitability for investigating LGN. We developed a new method to elevate IOP by injection of cultured conjunctival cells into the anterior chamber to obstruct aqueous outflow. Histologically, cultured conjunctival cells successfully proliferated to occlude the angle, and IOP was elevated for 13 weeks after injection. Macroscopically, the size of the eye gradually expanded. Subsequent enlargement of optic nerve head cupping and atrophic damage of LGN projected from the OH eye were clearly observed by anterograde staining with cholera toxin B. We believe the ferret may be a promising OH model to investigate secondary degeneration of central nervous system including LGN.


Asunto(s)
Cuerpos Geniculados/fisiopatología , Glaucoma/fisiopatología , Hipertensión Ocular/fisiopatología , Vías Visuales/fisiopatología , Animales , Sistema Nervioso Central , Modelos Animales de Enfermedad , Hurones , Humanos , Células Ganglionares de la Retina/patología , Visión Binocular/fisiología , Degeneración Walleriana/fisiopatología
17.
Photomed Laser Surg ; 30(11): 642-7, 2012 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-23003120

RESUMEN

BACKGROUND DATA: A robust body of evidence has shown that low-level laser therapy (LLLT) improves peripheral nerve regeneration. However, the biochemical background triggered in this process is not yet fully understood. OBJECTIVE: The purpose of this study was to evaluate the mRNA expression of neurotrophic factors (brain-derived neurotrophic factor [BDNF], nerve growth factor [NGF], and neurotrophin-3, [NT-3]) and also an inflammatory marker (induced nitric oxide synthase [iNOS]) in an axonotmesis experimental model after low-level laser therapy. METHODS: Thirty-six adult male Wistar rats (250-350 g) were subjected to right sciatic nerve crush injury, and 24 h later, the animals in the three different experimental groups (n=18) were irradiated on a daily basis with helium-neon laser (collimated HeNe laser, continuous emission, wavelength: 632.8 nm, power density: 0.5 mW/cm(2), irradiation time: 20 sec, energy density: 10 J/cm(2)) during 7, 14, and 21 consecutive days, respectively. The control group (n=18) underwent the same procedures, but with the equipment turned off. At the end of the experiments, animals were killed with an overdose of anesthesia to remove samples from the sciatic nerve lesion epicenter to determine the mRNA expression of BDNF, NGF, NT-3 and iNOS enzyme. RESULTS: Comparisons between groups showed that HeNe laser increased the mRNA expression of both BDNF and NGF factors after 14 days of LLLT, with peak expression at the 21st day. Increase in NT-3 mRNA expression was not observed. In addition, HeNe laser produced iNOS expression reduction, which played an important role in the inflammatory process. CONCLUSIONS: The reported data could have a relevant practical value because LLLT is a noninvasive procedure, and have revealed significant increase in neurotrophic factor expressions and inflammatory process reduction, opening the possibility of using LLLT as an important aid to nerve regeneration process.


Asunto(s)
Terapia por Luz de Baja Intensidad , Factores de Crecimiento Nervioso/metabolismo , Regeneración Nerviosa/fisiología , Regeneración Nerviosa/efectos de la radiación , Óxido Nítrico Sintasa/metabolismo , Animales , Factor Neurotrófico Derivado del Encéfalo , Láseres de Gas , Masculino , Factor de Crecimiento Nervioso/metabolismo , Neurotrofina 3/metabolismo , Ratas , Ratas Wistar , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , Degeneración Walleriana/fisiopatología , Degeneración Walleriana/radioterapia
18.
J Altern Complement Med ; 18(12): 1154-60, 2012 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-22950816

RESUMEN

OBJECTIVE: One aim of this study was to investigate the effects of acupuncture on cerebral function of patients with acute cerebral infarction. Another goal was to evaluate the relationship between acupuncture treatment and motor recovery patients with stroke and to provide a foundation for using acupuncture therapy for such patients. DESIGN: Twenty (20) patients with recent cerebral infarction were divided randomly to an acupuncture group and a control group. The infarction area in each patient was in the basal ganglia or included the basal ganglia with an area size of > 1 cm(2). Serial diffusion tensor imaging (DTI), fluid-attenuated inversion recovery (FLAIR), and T2-weighted imaging (T(2)WI) scans were performed on all patients and the results were evaluated using the National Institute of Health Stroke Scale and the Barthel Index each week. DTI images were postprocessed and analyzed. Apparent diffusion coefficient (ADC) and fractional anisotropy (FA) values of abnormal signals on DTI in the infarction areas and cerebral peduncles were calculated for both groups and compared with one another. RESULTS: (1) The ADC value of infarction lesions decreased at stroke onset; then, a significant elevation was observed after the acute stage, and a significant reduction in FA values was observed from stroke onset to the chronic stage. (2) The ADC of the bilateral cerebral peduncle was reduced on the infarction side. (3) There was a significant difference in ADC and FA values between the acupuncture and control groups. The FA value was higher in the acupuncture group than the control group. CONCLUSIONS: ADC and FA values might correlate to patient recovery and reveal the progress of secondary degeneration. Acupuncture treatment is effective for protecting neurons and facilitating recovery.


Asunto(s)
Terapia por Acupuntura , Encéfalo/fisiopatología , Infarto Cerebral/terapia , Accidente Cerebrovascular/terapia , Degeneración Walleriana/prevención & control , Adulto , Anciano , Anisotropía , Encéfalo/patología , Infarto Cerebral/patología , Infarto Cerebral/fisiopatología , Difusión , Imagen de Difusión Tensora/métodos , Femenino , Humanos , Masculino , Persona de Mediana Edad , Accidente Cerebrovascular/patología , Accidente Cerebrovascular/fisiopatología
19.
J Neurotrauma ; 27(3): 483-96, 2010 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-20201668

RESUMEN

Changes in the distribution of the magnetic resonance (MR)-observable brain metabolites N-acetyl aspartate (NAA), total choline (Cho), and total creatine (Cre), following mild-to-moderate closed-head traumatic brain injury (mTBI) were evaluated using volumetric proton MR spectroscopic imaging (MRSI). Studies were carried out during the subacute time period following injury, and associations of metabolite indices with neuropsychological test (NPT) results were evaluated. Twenty-nine subjects with mTBI and Glasgow Coma Scale (GCS) scores of 10-15 were included. Differences in individual metabolite and metabolite ratio distributions relative to those of age-matched control subjects were evaluated, as well as analyses by hemispheric lobes and tissue types. Primary findings included a widespread decrease of NAA and NAA/Cre, and increases of Cho and Cho/NAA, within all lobes of the TBI subject group, and with the largest differences seen in white matter. Examination of the association between all of the metabolite measures and the NPT scores found the strongest negative correlations to occur in the frontal lobe and for Cho/NAA. No significant correlations were found between any of the MRSI or NPT measures and the GCS. These results demonstrate that significant and widespread alterations of brain metabolites occur as a result of mild-to-moderate TBI, and that these measures correlate with measures of cognitive performance.


Asunto(s)
Lesiones Encefálicas/metabolismo , Encéfalo/metabolismo , Trastornos del Conocimiento/metabolismo , Espectroscopía de Resonancia Magnética/métodos , Adolescente , Adulto , Ácido Aspártico/análogos & derivados , Ácido Aspártico/análisis , Ácido Aspártico/metabolismo , Biomarcadores/análisis , Biomarcadores/metabolismo , Encéfalo/patología , Encéfalo/fisiopatología , Lesiones Encefálicas/patología , Lesiones Encefálicas/fisiopatología , Colina/análisis , Colina/metabolismo , Trastornos del Conocimiento/patología , Trastornos del Conocimiento/fisiopatología , Creatina/análisis , Creatina/metabolismo , Lesión Axonal Difusa/metabolismo , Lesión Axonal Difusa/patología , Lesión Axonal Difusa/fisiopatología , Evaluación de la Discapacidad , Femenino , Lóbulo Frontal/metabolismo , Lóbulo Frontal/patología , Lóbulo Frontal/fisiopatología , Escala de Coma de Glasgow , Humanos , Masculino , Fibras Nerviosas Mielínicas/metabolismo , Fibras Nerviosas Mielínicas/patología , Pruebas Neuropsicológicas , Degeneración Walleriana/metabolismo , Degeneración Walleriana/patología , Degeneración Walleriana/fisiopatología , Adulto Joven
20.
J Neurotrauma ; 27(1): 197-203, 2010 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-19712029

RESUMEN

The efficacy of Schwann-cell cultivation can be enhanced by in vitro predegeneration of the harvested cells compared to immediate culture. The aim of this study was to improve Schwann-cell culture efficacy by comparing three different durations of predegeneration. The sciatic and median nerves of 6-8-week-old Lewis rats were harvested and subjected to either 2-day, 7-day, or 14-day predegeneration in Dulbecco's Modified Eagle's Medium supplemented with 10% fetal calf serum and 1% Penicillin/Streptomycin. Afterward, tissue was enzymatically dissociated and placed in a modified melanocyte growth medium. The cell count was determined immediately after dissociation while the cell purity was determined one subculture/trypsinization cycle later after cell attachment to the culture plate by means of optical microscopy and immunocytochemistry. Particular attention was then paid to the Schwann-cell-to-fibroblast relation. The cumulative cell count in the culture was 5.8 x 10(5) for 2-day, 1.12 x 10(6) for 7-day, and 1.48 x 10(6) for 14-day predegeneration. The culture purity was approximately equal for 2- and 7-day predegeneration (88% Schwann cells, 12% fibroblasts after 2 days; 85% Schwann cells, 15% fibroblasts after 7 days). After 14 days, however, cell cultures were significantly debased by fibroblast proliferation (57% Schwann cells, 43% fibroblasts). In vitro predegeneration is a particularly suitable procedural method to increase the cultural Schwann-cell yield. The number of cultivated rat Schwann cells is doubled by 7-day in vitro predegeneration in comparison to 2-day predegeneration. After 14-day predegeneration, however, the culture is significantly debased by fibroblasts. Therefore, 7-day in vitro predegeneration is an advisable predegeneration period.


Asunto(s)
Proliferación Celular , Nervios Periféricos/fisiología , Células de Schwann/fisiología , Trasplante de Tejidos/métodos , Degeneración Walleriana/fisiopatología , Animales , Biomarcadores/análisis , Biomarcadores/metabolismo , Recuento de Células , Técnicas de Cultivo de Célula , Células Cultivadas , Fibroblastos/citología , Fibroblastos/fisiología , Inmunohistoquímica , Nervio Mediano/citología , Nervio Mediano/fisiología , Factores de Crecimiento Nervioso/metabolismo , Proteínas del Tejido Nervioso , Técnicas de Cultivo de Órganos , Nervios Periféricos/citología , Ratas , Ratas Endogámicas Lew , Receptores de Factores de Crecimiento , Receptores de Factor de Crecimiento Nervioso/metabolismo , Subunidad beta de la Proteína de Unión al Calcio S100 , Proteínas S100/metabolismo , Células de Schwann/citología , Células de Schwann/trasplante , Nervio Ciático/citología , Nervio Ciático/fisiología , Traumatismos de la Médula Espinal/cirugía , Factores de Tiempo
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