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1.
ACS Chem Neurosci ; 15(6): 1157-1168, 2024 03 20.
Artigo em Inglês | MEDLINE | ID: mdl-38445956

RESUMO

Phytic acid (PA) has been reported to possess anti-inflammatory and antioxidant properties that are critical for neuroprotection in neuronal disorders. This raises the question of whether PA can effectively protect sensory neurons against chemotherapy-induced peripheral neuropathy (CIPN). Peripheral neuropathy is a dose-limiting side effect of chemotherapy treatment often characterized by severe and abnormal pain in hands and feet resulting from peripheral nerve degeneration. Currently, there are no effective treatments available that can prevent or cure peripheral neuropathies other than symptomatic management. Herein, we aim to demonstrate the neuroprotective effects of PA against the neurodegeneration induced by the chemotherapeutics cisplatin (CDDP) and oxaliplatin. Further aims of this study are to provide the proposed mechanism of PA-mediated neuroprotection. The neuronal protection and survivability against CDDP were characterized by axon length measurements and cell body counting of the dorsal root ganglia (DRG) neurons. A cellular phenotype study was conducted microscopically. Intracellular reactive oxygen species (ROS) was estimated by fluorogenic probe dichlorofluorescein. Likewise, mitochondrial membrane potential (MMP) was assessed by fluorescent MitoTracker Orange CMTMRos. Similarly, the mitochondria-localized superoxide anion radical in response to CDDP with and without PA was evaluated. The culture of primary DRG neurons with CDDP reduced axon length and overall neuronal survival. However, cotreatment with PA demonstrated that axons were completely protected and showed increased stability up to the 45-day test duration, which is comparable to samples treated with PA alone and control. Notably, PA treatment scavenged the mitochondria-specific superoxide radicals and overall intracellular ROS that were largely induced by CDDP and simultaneously restored MMP. These results are credited to the underlying neuroprotection of PA in a platinum-treated condition. The results also exhibited that PA had a synergistic anticancer effect with CDDP in ovarian cancer in vitro models. For the first time, PA's potency against CDDP-induced PN is demonstrated systematically. The overall findings of this study suggest the application of PA in CIPN prevention and therapeutic purposes.


Assuntos
Antineoplásicos , Doenças do Sistema Nervoso Periférico , Humanos , Antineoplásicos/toxicidade , Cisplatino/toxicidade , Gânglios Espinais , Potencial da Membrana Mitocondrial , Doenças do Sistema Nervoso Periférico/induzido quimicamente , Doenças do Sistema Nervoso Periférico/tratamento farmacológico , Doenças do Sistema Nervoso Periférico/metabolismo , Ácido Fítico/farmacologia , Ácido Fítico/metabolismo , Ácido Fítico/uso terapêutico , Platina/farmacologia , Platina/metabolismo , Espécies Reativas de Oxigênio/metabolismo , Células Receptoras Sensoriais/metabolismo
2.
iScience ; 27(3): 109052, 2024 Mar 15.
Artigo em Inglês | MEDLINE | ID: mdl-38375222

RESUMO

Electrical stimulation (ESTIM) has shown to be an effective symptomatic treatment to treat pain associated with peripheral nerve damage. However, the neuroprotective mechanism of ESTIM on peripheral neuropathies is still unknown. In this study, we identified that ESTIM has the ability to enhance mitochondrial trafficking as a neuroprotective mechanism against chemotherapy-induced peripheral neuropathies (CIPNs). CIPN is a debilitating and painful sequalae of anti-cancer chemotherapy treatment which results in degeneration of peripheral nerves. Mitochondrial dynamics were analyzed within axons in response to two different antineoplastic mechanisms by chemotherapy drug treatments paclitaxel and oxaliplatin in vitro. Mitochondrial trafficking response to chemotherapy drug treatment was observed to decrease in conjunction with degeneration of distal axons. Using low-frequency ESTIM, we observed enhanced mitochondrial trafficking to be a neuroprotective mechanism against CIPN. This study confirms ESTIM enhances regeneration of peripheral nerves by increased mitochondrial trafficking.

3.
Life Sci ; 334: 122219, 2023 Dec 01.
Artigo em Inglês | MEDLINE | ID: mdl-37907151

RESUMO

AIMS: Chemotherapy induced peripheral neuropathy (CIPN) is a common side effect seen in patients who have undergone most chemotherapy treatments to which there are currently no treatment methods. CIPN has been shown to cause axonal degeneration leading to Peripheral Neuropathy (PN), which can lead to major dosage reduction and may prevent further chemotherapy treatment due to oftentimes debilitating pain. Previously, we have determined the site-specific action of Paclitaxel (PTX), a microtubule targeting agent, as well as the neuroprotective effect of Fluocinolone Acetonide (FA) against Paclitaxel Induced Peripheral Neuropathy (PIPN). MAIN METHODS: Mitochondrial trafficking analysis was determined for all sample sets, wherein FA showed enhanced anterograde (axonal) mitochondrial trafficking leading to neuroprotective effects for all samples. KEY FINDINGS: Using this system, we demonstrate that PTX, Monomethyl auristatin E (MMAE), and Vincristine (VCR), are toxic at clinically prescribed levels when treated focally to axons. However, Cisplatin (CDDP) was determined to have a higher toxicity when treated to cell bodies. Although having different targeting mechanisms, the administration of FA was determined to have a significant neuroprotective effect for against all chemotherapy drugs tested. SIGNIFICANCE: This study identifies key insights regarding site of action and neuroprotective strategies to further development as potential therapeutics against CIPN. FA was treated alongside each chemotherapy drug to identify the neuroprotective effect against CIPN, where FA was found to be neuroprotective for all drugs tested. This study found that treatment with FA led to an enhancement in the anterograde movement of mitochondria based on fluorescent imaging.


Assuntos
Antineoplásicos , Fármacos Neuroprotetores , Doenças do Sistema Nervoso Periférico , Humanos , Preparações Farmacêuticas , Fármacos Neuroprotetores/efeitos adversos , Doenças do Sistema Nervoso Periférico/induzido quimicamente , Doenças do Sistema Nervoso Periférico/tratamento farmacológico , Doenças do Sistema Nervoso Periférico/prevenção & controle , Paclitaxel/efeitos adversos , Cisplatino/efeitos adversos , Mitocôndrias , Antineoplásicos/efeitos adversos
4.
Bioengineering (Basel) ; 9(10)2022 Oct 17.
Artigo em Inglês | MEDLINE | ID: mdl-36290530

RESUMO

Despite a significant advance in the pathophysiological understanding of peripheral nerve damage, the successful treatment of large nerve defects remains an unmet medical need. In this article, axon growth guidance for peripheral nerve regeneration was systematically reviewed and discussed mainly from the engineering perspective. In addition, the common approaches to surgery, bioengineering approaches to emerging technologies such as optogenetic stimulation and magnetic stimulation for functional recovery were discussed, along with their pros and cons. Additionally, clear future perspectives of axon guidance and nerve regeneration were addressed.

5.
Angew Chem Int Ed Engl ; 58(27): 9262-9268, 2019 07 01.
Artigo em Inglês | MEDLINE | ID: mdl-31087740

RESUMO

Cargo transport along axons, a physiological process mediated by motor proteins, is essential for neuronal function and survival. A current limitation in the study of axonal transport is the lack of a robust imaging technique with a high spatiotemporal resolution to visualize and quantify the movement of motor proteins in real-time and in different depth planes. Herein, we present a dynamic imaging technique that fully exploits the characteristics of upconversion nanoparticles. This technique can be used as a microscopic probe for the quantitative in situ tracking of retrograde transport neurons with single-particle resolution in multilayered cultures. This study may provide a powerful tool to reveal dynamic neuronal activity and intra-axonal transport function as well as any associated neurodegenerative diseases resulting from mutation or impairment in the axonal transport machinery.


Assuntos
Nanopartículas Metálicas/química , Proteínas Motores Moleculares/metabolismo , Neurônios/metabolismo , Animais , Axônios/química , Axônios/metabolismo , Encéfalo/metabolismo , Células Cultivadas , Reprogramação Celular , Dineínas/metabolismo , Fibroblastos/citologia , Fibroblastos/metabolismo , Humanos , Células-Tronco Pluripotentes Induzidas/citologia , Raios Infravermelhos , Camundongos , Microscopia de Fluorescência , Neurônios/citologia , Transporte Proteico , Ratos
6.
Colloids Surf B Biointerfaces ; 169: 356-365, 2018 09 01.
Artigo em Inglês | MEDLINE | ID: mdl-29803151

RESUMO

Antioxidant is critical for the successful of nerve tissue regeneration, and biomaterials with antioxidant activity might be favorable for peripheral nerve repair. Lignin, a biopolymer from wood with excellent antioxidant properties, is still "unexplored" as biomaterials. To design an antioxidative bioscaffold for nerve regeneration, here we synthesized lignin-polycaprolactone (PCL) copolymers via solvent free ring-opening polymerization (ROP). Then such lignin-PCL copolymers were incorporated with PCL and engineered into nanofibrous scaffolds for supporting the growth of neuron and Schwann cell. Our results showed that the addition of lignin-PCL enhanced the mechanical properties of PCL nanofibers and endowed them with good antioxidant properties (up to 98.3 ±â€¯1.9% free radical inhibition within 4 h). Cell proliferation assay showed that PCL/lignin-PCL nanofibers increased cell viability compared to PCL fibers, especially after an oxidative challenge. Moreover, Schwann cells and dorsal root ganglion (DRG) neurons cultured on the nanofibers to assess their potential for nerve regeneration. These results suggested that nanofibers with lignin copolymers promoted cell proliferation of both BMSCs and Schwann cells, enhanced myelin basic protein expressions of Schwann cells and stimulated neurite outgrowth of DRG neurons. In all, these sustainable, intrinsically antioxidant nanofibers may be a potential candidate for nerve TE applications.


Assuntos
Antioxidantes/farmacologia , Compostos de Bifenilo/antagonistas & inibidores , Lignina/farmacologia , Nanofibras/química , Neurônios/efeitos dos fármacos , Picratos/antagonistas & inibidores , Poliésteres/farmacologia , Células de Schwann/efeitos dos fármacos , Antioxidantes/química , Proliferação de Células/efeitos dos fármacos , Sobrevivência Celular/efeitos dos fármacos , Humanos , Lignina/química , Células-Tronco Mesenquimais/efeitos dos fármacos , Estresse Oxidativo/efeitos dos fármacos , Tamanho da Partícula , Poliésteres/química , Propriedades de Superfície
7.
Sci Rep ; 7(1): 6743, 2017 07 27.
Artigo em Inglês | MEDLINE | ID: mdl-28751716

RESUMO

The cellular-level effects of low/high frequency oscillating magnetic field on excitable cells such as neurons are well established. In contrast, the effects of a homogeneous, static magnetic field (SMF) on Central Nervous System (CNS) glial cells are less investigated. Here, we have developed an in vitro SMF stimulation set-up to investigate the genomic effects of SMF exposure on oligodendrocyte differentiation and neurotrophic factors secretion. Human oligodendrocytes precursor cells (OPCs) were stimulated with moderate intensity SMF (0.3 T) for a period of two weeks (two hours/day). The differential gene expression of cell activity marker (c-fos), early OPC (Olig1, Olig2. Sox10), and mature oligodendrocyte markers (CNP, MBP) were quantified. The enhanced myelination capacity of the SMF stimulated oligodendrocytes was validated in a dorsal root ganglion microfluidics chamber platform. Additionally, the effects of SMF on the gene expression and secretion of neurotrophic factors- BDNF and NT3 was quantified. We also report that SMF stimulation increases the intracellular calcium influx in OPCs as well as the gene expression of L-type channel subunits-CaV1.2 and CaV1.3. Our findings emphasize the ability of glial cells such as OPCs to positively respond to moderate intensity SMF stimulation by exhibiting enhanced differentiation, functionality as well as neurotrophic factor release.


Assuntos
Fator Neurotrófico Derivado do Encéfalo/metabolismo , Cálcio/metabolismo , Células-Tronco Pluripotentes Induzidas/metabolismo , Campos Magnéticos , Proteína Básica da Mielina/metabolismo , Oligodendroglia/metabolismo , 2',3'-Nucleotídeo Cíclico 3'-Fosfodiesterase/genética , 2',3'-Nucleotídeo Cíclico 3'-Fosfodiesterase/metabolismo , Animais , Fatores de Transcrição Hélice-Alça-Hélice Básicos/genética , Fatores de Transcrição Hélice-Alça-Hélice Básicos/metabolismo , Biomarcadores/metabolismo , Fator Neurotrófico Derivado do Encéfalo/genética , Canais de Cálcio Tipo L/genética , Canais de Cálcio Tipo L/metabolismo , Diferenciação Celular , Embrião de Mamíferos , Gânglios Espinais/citologia , Gânglios Espinais/metabolismo , Regulação da Expressão Gênica , Humanos , Células-Tronco Pluripotentes Induzidas/citologia , Técnicas Analíticas Microfluídicas , Proteína Básica da Mielina/genética , Fatores de Crescimento Neural/genética , Fatores de Crescimento Neural/metabolismo , Proteínas do Tecido Nervoso/genética , Proteínas do Tecido Nervoso/metabolismo , Neurotrofina 3 , Fator de Transcrição 2 de Oligodendrócitos/genética , Fator de Transcrição 2 de Oligodendrócitos/metabolismo , Oligodendroglia/citologia , Cultura Primária de Células , Proteínas Proto-Oncogênicas c-fos/genética , Proteínas Proto-Oncogênicas c-fos/metabolismo , Ratos , Ratos Sprague-Dawley , Fatores de Transcrição SOXE/genética , Fatores de Transcrição SOXE/metabolismo
8.
Cancer Res ; 77(8): 1868-1879, 2017 04 15.
Artigo em Inglês | MEDLINE | ID: mdl-28386018

RESUMO

Nerves are a notable feature of the tumor microenvironment in some epithelial tumors, but their role in the malignant progression of pancreatic ductal adenocarcinoma (PDAC) is uncertain. Here, we identify dense innervation in the microenvironment of precancerous pancreatic lesions, known as pancreatic intraepithelial neoplasms (PanIN), and describe a unique subpopulation of neuroendocrine PanIN cells that express the neuropeptide substance P (SP) receptor neurokinin 1-R (NK1-R). Using organoid culture, we demonstrated that sensory neurons promoted the proliferation of PanIN organoids via SP-NK1-R signaling and STAT3 activation. Nerve-responsive neuroendocrine cells exerted trophic influences and potentiated global PanIN organoid growth. Sensory denervation of a genetically engineered mouse model of PDAC led to loss of STAT3 activation, a decrease in the neoplastic neuroendocrine cell population, and impaired PanIN progression to tumor. Overall, our data provide evidence that nerves of the PanIN microenvironment promote oncogenesis, likely via direct signaling to neoplastic neuroendocrine cells capable of trophic influences. These findings identify neuroepithelial cross-talk as a potential novel target in PDAC treatment. Cancer Res; 77(8); 1868-79. ©2017 AACR.


Assuntos
Carcinoma Ductal Pancreático/patologia , Células Neuroendócrinas/patologia , Pâncreas/inervação , Neoplasias Pancreáticas/patologia , Lesões Pré-Cancerosas/patologia , Células Receptoras Sensoriais/patologia , Células 3T3 , Animais , Carcinogênese , Modelos Animais de Doenças , Gânglios Espinais/patologia , Células HEK293 , Humanos , Camundongos , Camundongos Endogâmicos C57BL , Células Neuroendócrinas/metabolismo , Pâncreas/patologia , Fator de Transcrição STAT3/metabolismo , Células Receptoras Sensoriais/metabolismo , Substância P/biossíntese
9.
J Peripher Nerv Syst ; 21(3): 128-33, 2016 09.
Artigo em Inglês | MEDLINE | ID: mdl-27117347

RESUMO

Paclitaxel (PTX) is among the most commonly used cancer drugs that cause chemotherapy-induced peripheral neuropathy (CIPN), a debilitating and serious dose-limiting side effect. Currently, no drugs exist to prevent CIPN, and symptomatic therapy is often ineffective. In order to identify therapeutic candidates to prevent axonal degeneration induced by PTX, we carried out a phenotypic drug screening using primary rodent dorsal root ganglion sensory neurons. We identified fluocinolone acetonide as a neuroprotective compound and verified it through secondary screens. Furthermore, we showed its efficacy in a mouse model of PTX-induced peripheral neuropathy and confirmed with four different cancer cell lines that fluocinolone acetonide does not interfere with PTX's antitumor activity. Our study identifies fluocinolone acetonide as a potential therapy to prevent CIPN caused by PTX.


Assuntos
Anti-Inflamatórios/uso terapêutico , Fluocinolona Acetonida/uso terapêutico , Paclitaxel/efeitos adversos , Doenças do Sistema Nervoso Periférico/induzido quimicamente , Doenças do Sistema Nervoso Periférico/prevenção & controle , Animais , Animais Recém-Nascidos , Anti-Inflamatórios/farmacologia , Antineoplásicos Fitogênicos/efeitos adversos , Axônios/efeitos dos fármacos , Axônios/patologia , Linhagem Celular Tumoral , Células Cultivadas , Modelos Animais de Doenças , Relação Dose-Resposta a Droga , Embrião de Mamíferos , Feminino , Fluocinolona Acetonida/farmacologia , Gânglios Espinais/citologia , Camundongos , Fibras Nervosas/efeitos dos fármacos , Fibras Nervosas/patologia , Neurônios/efeitos dos fármacos , Ratos , Ratos Sprague-Dawley
10.
Glia ; 61(6): 843-54, 2013 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-23554117

RESUMO

Neuronal activity promotes myelination in vivo and in vitro. However, the molecular events that mediate activity-dependent myelination are not completely understood. Seven, daily 1 h sessions of patterned electrical stimulation (ESTIM) promoted myelin segment formation in mixed cultures of dorsal root ganglion (DRG) neurons and oligodendrocytes (OLs); the increase in myelination was frequency-dependent. Myelin segment formation was also enhanced following exposure of DRGs to ESTIM prior to OL addition, suggesting that ESTIM promotes myelination in a manner involving neuron-specific signaling. Cyclic adenosine monophosphate (cAMP) levels in DRGs were increased three-fold following ESTIM, and artificially increasing cAMP mimicked the ability of ESTIM to promote myelination. Alternatively, inhibiting the cAMP pathway suppressed ESTIM-induced myelination. We used compartmentalized, microfluidic platforms to isolate DRG soma from OLs and assessed cell-type specific effects of ESTIM on myelination. A selective increase or decrease in DRG cAMP levels resulted in enhanced or suppressed myelination, respectively. This work describes a novel role for the cAMP pathway in neurons that results in enhanced myelination.


Assuntos
Potenciais de Ação/fisiologia , AMP Cíclico/metabolismo , Bainha de Mielina/metabolismo , Neurônios/fisiologia , Oligodendroglia/metabolismo , Transdução de Sinais/fisiologia , Animais , Axônios/metabolismo , Células Cultivadas , Estimulação Elétrica , Gânglios Espinais/fisiologia , Ratos , Ratos Sprague-Dawley
11.
J Biomed Mater Res A ; 97(4): 451-6, 2011 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-21484989

RESUMO

In vivo, neurons form neurites, one of which develops into the axon while others become dendrites. While this neuritogenesis process is well programmed in vivo, there are limited methods to control the number and location of neurite extension in vitro. Here we report a method to control neuritogenesis by confining neurons in specific regions using cell resistant poly(oligoethyleneglycol methacrylate-co-methacrylic acid (OEGMA-co-MA)) or poly(ethyleneglycol-block-lactic acid) PEG-PLA. Line patterned substrates reduce multiple extension of neurites and stimulate bi-directional neurite budding for PC12 and cortical neurons. PC12 cells on 20 and 30 µm line patterns extended one neurite in each direction along the line pattern while cortical neuron on 20 and 30 µm line patterns extended one or two neurites in each direction along the line pattern. Statistical analysis of neurite lengths revealed that PC12 cells and cortical neurons on line patterns extend longer neurites. The ability to guide formation of neurites on patterned substrates is useful for generating neural networks and promoting neurite elongation.


Assuntos
Metacrilatos/farmacologia , Neuritos/efeitos dos fármacos , Neuritos/metabolismo , Polietilenoglicóis/farmacologia , Adsorção/efeitos dos fármacos , Animais , Córtex Cerebral/citologia , Meios de Cultura/farmacologia , Corantes Fluorescentes/metabolismo , Gelatina/farmacologia , Células PC12 , Polilisina/farmacologia , Ácidos Polimetacrílicos , Ratos , Soroalbumina Bovina/metabolismo , Sus scrofa , Técnicas de Cultura de Tecidos
12.
Stem Cell Rev Rep ; 7(2): 394-403, 2011 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-21052870

RESUMO

Schwann cells (SC), the glial cells of peripheral nerves, are involved in many diseases including Charcot Marie Tooth and neurofibromatosis, and play a pivotal role in peripheral nerve regeneration. Although it is possible to obtain human SC from nerve biopsies, they are difficult to maintain and expand in culture. Here we describe an efficient system for directing the differentiation of human embryonic stem cells (hESC) into cells with the morphological and molecular characteristics of SC. Neurospheres were generated from hESC using stromal cell induction and grown under conditions supportive of SC differentiation. After 8 weeks, hESC-derived SC expressed characteristic markers GFAP, S100, HNK1, P75, MBP and PMP-22, and were observed in close association with hESC-derived neurites. ~60% of the cells were double-immunostained for the SC markers GFAP/S100. RT-PCR analysis confirmed the expression of GFAP, S100, P75, PMP-22 and MBP and demonstrated expression of the SC markers P0, KROX20 and PLP in the cultures. Expression of CAD19 was observed in 2 and 4 week cultures and then was down-regulated, consistent with its expression in SC precursor, but not mature stages. Co-culture of hESC-derived SC with rat, chick or hESC-derived axons in compartmentalized microfluidic chambers resulted in tight association of the SC with axons. Apparent wrapping of the axons by SC was occasionally observed, suggestive of myelination. Our method for generating SC from hESC makes available a virtually unlimited source of human SC for studies of their role in nerve regeneration and modeling of disease.


Assuntos
Diferenciação Celular , Células-Tronco Embrionárias/citologia , Células de Schwann/citologia , Animais , Antígenos de Diferenciação/genética , Antígenos de Diferenciação/metabolismo , Técnicas de Cultura de Células , Embrião de Galinha , Técnicas de Cocultura , Proteína 2 de Resposta de Crescimento Precoce/genética , Proteína 2 de Resposta de Crescimento Precoce/metabolismo , Proteína Glial Fibrilar Ácida/genética , Proteína Glial Fibrilar Ácida/metabolismo , Humanos , Proteína Básica da Mielina/genética , Proteína Básica da Mielina/metabolismo , Proteínas da Mielina/genética , Proteínas da Mielina/metabolismo , Neuritos/metabolismo , Ratos , Receptor de Fator de Crescimento Neural/genética , Receptor de Fator de Crescimento Neural/metabolismo , Proteínas S100/genética , Proteínas S100/metabolismo , Células de Schwann/metabolismo , Transcrição Gênica
13.
Exp Neurol ; 218(1): 124-8, 2009 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-19409381

RESUMO

Chemotherapy induced peripheral neuropathy is a common and dose-limiting side effect of anticancer drugs. Studies aimed at understanding the underlying mechanism of neurotoxicity of chemotherapeutic drugs have been hampered by lack of suitable culture systems that can differentiate between neuronal cell body, axon or associated glial cells. Here, we have developed an in vitro compartmentalized microfluidic culture system to examine the site of toxicity of chemotherapeutic drugs. To test the culture platform, we used paclitaxel, a widely used anticancer drug for breast cancer, because it causes sensory polyneuropathy in a large proportion of patients and there is no effective treatment. In previous in vitro studies, paclitaxel induced distal axonal degeneration but it was unclear if this was due to direct toxicity on the axon or a consequence of toxicity on the neuronal cell body. Using microfluidic channels that allow compartmentalized culturing of neurons and axons, we demonstrate that the axons are much more susceptible to toxic effects of paclitaxel. When paclitaxel was applied to the axonal side, there was clear degeneration of axons; but when paclitaxel was applied to the soma side, there was no change in axon length. Furthermore, we show that recombinant human erythropoietin, which had been shown to be neuroprotective against paclitaxel neurotoxicity, provides neuroprotection whether it is applied to the cell body or the axons directly. This observation has implications for development of neuroprotective drugs for chemotherapy induced peripheral neuropathies as dorsal root ganglia do not possess blood-nerve-barrier, eliminating one of the cardinal requirements of drug development for the nervous system. This compartmentalized microfluidic culture system can be used for studies aimed at understanding axon degeneration, neuroprotection and development of the nervous system.


Assuntos
Antineoplásicos Fitogênicos/toxicidade , Axônios/patologia , Microfluídica/métodos , Degeneração Neural/induzido quimicamente , Paclitaxel/toxicidade , Células Receptoras Sensoriais/efeitos dos fármacos , Animais , Axônios/efeitos dos fármacos , Contagem de Células/métodos , Células Cultivadas , Embrião de Mamíferos , Eritropoetina/uso terapêutico , Fluoresceínas , Gânglios Espinais/citologia , Degeneração Neural/patologia , Degeneração Neural/prevenção & controle , Ratos , Proteínas Recombinantes
14.
Artigo em Inglês | MEDLINE | ID: mdl-19163040

RESUMO

Extracellular matrix (ECM) plays pivotal roles in developments, wound healing, migration, angiogenesis, and other tissue developments. Developing new ECM may give us an innovative approach of controlling the cell and tissue behavior, regenerating damaged tissues, and other biotechnology usages. Here we report new ECM like biomaterials, pFZC, obtained from the fertilized Zebrafish chorion (FZC). pFZC was prepared by digesting the fertilized Zebrafish chorion with pronase. Differentiation of P19 embryonic carcinoma cells (P19 EC) on pFZC demonstrated that the level of the differentiation of P19 EC was comparable to cells on gelatin or fibronectin coated cover slide. Analyses of glycosylations of Zebrafish chorions using various Lectins revealed that during the fertilization, structurally organized glycosylations of Zebrafish chorion were increased and FZC was glycosylated with mannose, fucose, n-acetylglucosamine, and sialic acid. In addition, after FZC proteolytic digestion with pronase, the digested FZC proteins, pFZC, displayed similar glycosylation manner. SDS gel electrophoresis and mass spectroscopy analysis of pFZC revealed that the major component of pFZC is ZP2 protein. Newly identified ECM like biomaterials, pFZC, will provide more broad ways of controlling the cell and tissue environments.


Assuntos
Córion/química , Matriz Extracelular/química , Animais , Materiais Biocompatíveis , Engenharia Biomédica , Técnicas de Cultura de Células , Diferenciação Celular , Linhagem Celular , Células-Tronco Embrionárias/citologia , Células-Tronco Embrionárias/metabolismo , Feminino , Fertilização , Proteínas de Homeodomínio/metabolismo , Proteínas de Filamentos Intermediários/metabolismo , Masculino , Teste de Materiais , Camundongos , Proteína Homeobox Nanog , Proteínas do Tecido Nervoso/metabolismo , Nestina , Pronase , Fatores de Transcrição SOXB1/metabolismo , Propriedades de Superfície , Peixe-Zebra
15.
J Biomed Mater Res A ; 75(4): 976-84, 2005 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-16138329

RESUMO

The ability to create and maintain neuron and glial cell co-cultures is important for neuronal regeneration as well as for fundamental studies on neuron and glial cell interactions. We demonstrate here a method for spatially controlling the arrangement of neurons and glial cells. Line patterns of cell resistant, poly(oligoethyleneglycol methacrylate-co-methacrylic acid), was microcontact printed on various substrates to spatially control the attachment of neurons. Neuron-like cells, PC12 and SH-SY5Y cells, were confined within the unprinted line patterns and extended neurites along the line patterns. Subsequent attachment of glial cells was accomplished by converting the originally cell-resistant line patterns of poly(oligoethyleneglycol methacrylate-co-methacrylic acid) to cell adhesive by electrostatic adsorption of cationic poly-lysine, chitosan, or poly(ethyleneimine). This method for creating patterned co-cultures of neuron and glial cells provides a useful tool for investigating neuron-glial cell interactions and has potential applications in the repair or regeneration of nervous systems.


Assuntos
Neuroglia , Neurônios , Animais , Materiais Biocompatíveis , Linhagem Celular Tumoral , Quitosana , Técnicas de Cocultura , Humanos , Ácido Láctico , Células PC12 , Poliésteres , Polietilenoglicóis , Polietilenoimina , Polímeros , Ácidos Polimetacrílicos , Ratos
16.
Biomaterials ; 26(33): 6599-609, 2005 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-15936072

RESUMO

The spatial orientation of nerve cells plays a pivotal role in nerve regeneration. Here we report a new method for regulating neuronal cell morphology and guiding neurite extension on standard tissue culture dishes. Random copolymers of oligoethyleneglycol methacrylate and methacrylic acid [poly(OEGMA-co-MA)], microcontact printed on standard tissue culture dishes, resist cell attachment and remain intact in serum-containing medium for up to 2 weeks. Cell viability assay of SH-SY5Y cells demonstrated that poly(OEGMA-co-MA) on the substrate or in solution has no cytotoxic effect. When retinoic acid was added to SH-SY5Y cells, they extended neurites along the line patterns that are significantly longer than cells cultured on non-patterned culture dishes. The ability to guide neurite extension with micrometer precision is valuable for guiding directional growth of neurites and path finding of regenerating nerves.


Assuntos
Materiais Biocompatíveis/química , Técnicas de Cultura de Células/métodos , Neuroblastoma/patologia , Neurônios/metabolismo , Actinas/química , Adsorção , Linhagem Celular Tumoral , Núcleo Celular/metabolismo , Proliferação de Células , Sobrevivência Celular , Células Cultivadas , Meios de Cultura , Citoesqueleto/metabolismo , Humanos , Regeneração Nervosa , Neuritos/metabolismo , Neurônios/citologia , Polímeros/química , Especificidade por Substrato , Fatores de Tempo , Tretinoína/química , Tretinoína/metabolismo
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