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1.
Small ; 14(36): e1801571, 2018 09.
Artículo en Inglés | MEDLINE | ID: mdl-30079605

RESUMEN

Recent advances in super-resolution microscopy and fluorescence bioimaging allow exploring previously inaccessible biological processes. To this end, there is a need for novel fluorescent probes with specific features in size, photophysical properties, colloidal and optical stabilities, as well as biocompatibility and ability to evade the reticuloendothelial system. Herein, novel fluorescent nanoparticles are introduced based on an inherently fluorescent polypyrazoline (PPy) core and a polyethylene glycol (PEG) shell, which address all aforementioned challenges. Synthesis of the PPy-PEG amphiphilic block copolymer by phototriggered step-growth polymerization is investigated by NMR spectroscopy, size-exclusion chromatography, and mass spectrometry. The corresponding nanoparticles are characterized for their luminescent properties and hydrodynamic size in various aqueous environments (e.g., cell culture media). PPy nanoparticles particularly exhibit a large Stokes shift (Δλ = 160 nm or Δν > 7000 cm-1 ) with visible light excitation and strong colloidal stability. While clearance by macrophages and endothelial cells is minimal, PPy displays good biocompatibility. Finally, PPy nanoparticles prove to be long circulating when injected in zebrafish embryos, as observed by in vivo time-lapse fluorescence microscopy. In summary, PPy nanoparticles are highly promising to be further developed as fluorescent nanodelivery systems with low toxicity and exquisite retention in the blood stream.


Asunto(s)
Diagnóstico por Imagen/métodos , Nanopartículas/química , Pirazoles/química , Animales , Materiales Biocompatibles/química , Embrión no Mamífero/metabolismo , Fluorescencia , Células Endoteliales de la Vena Umbilical Humana/citología , Humanos , Hidrodinámica , Nanopartículas/ultraestructura , Polímeros/síntesis química , Polímeros/química , Pirazoles/síntesis química , Pez Cebra/embriología
2.
EMBO J ; 26(17): 3945-56, 2007 Sep 05.
Artículo en Inglés | MEDLINE | ID: mdl-17703193

RESUMEN

Early steps of embryo development are directed by maternal gene products and trace levels of zygotic gene activity in vertebrates. A major activation of zygotic transcription occurs together with degradation of maternal mRNAs during the midblastula transition in several vertebrate systems. How these processes are regulated in preparation for the onset of differentiation in the vertebrate embryo is mostly unknown. Here, we studied the function of TATA-binding protein (TBP) by knock down and DNA microarray analysis of gene expression in early embryo development. We show that a subset of polymerase II-transcribed genes with ontogenic stage-dependent regulation requires TBP for their zygotic activation. TBP is also required for limiting the activation of genes during development. We reveal that TBP plays an important role in the degradation of a specific subset of maternal mRNAs during late blastulation/early gastrulation, which involves targets of the miR-430 pathway. Hence, TBP acts as a specific regulator of the key processes underlying the transition from maternal to zygotic regulation of embryogenesis. These results implicate core promoter recognition as an additional level of differential gene regulation during development.


Asunto(s)
ARN Mensajero Almacenado/metabolismo , Proteína de Unión a TATA-Box/fisiología , Proteínas de Pez Cebra/metabolismo , Pez Cebra/metabolismo , Animales , Embrión no Mamífero/metabolismo , Estabilidad del ARN , Transducción de Señal , Pez Cebra/embriología , Proteínas de Pez Cebra/genética
3.
J Neurobiol ; 66(5): 463-75, 2006 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-16470869

RESUMEN

Addiction is a complex maladaptive behavior involving alterations in several neurotransmitter networks. In mammals, psychostimulants trigger elevated extracellular levels of dopamine, which can be modulated by central cholinergic transmission. Which elements of the cholinergic system might be targeted for drug addiction therapies remains unknown. The rewarding properties of drugs of abuse are central for the development of addictive behavior and are most commonly measured by means of the conditioned place preference (CPP) paradigm. We demonstrate here that adult zebrafish show robust CPP induced by the psychostimulant D-amphetamine. We further show that this behavior is dramatically reduced upon genetic impairment of acetylcholinesterase (AChE) function in ache/+ mutants, without involvement of concomitant defects in exploratory activity, learning, and visual performance. Our observations demonstrate that the cholinergic system modulates drug-induced reward in zebrafish, and identify genetically AChE as a promising target for systemic therapies against addiction to psychostimulants. More generally, they validate the zebrafish model to study the effect of developmental mutations on the molecular neurobiology of addiction in vertebrates.


Asunto(s)
Acetilcolina/metabolismo , Acetilcolinesterasa/metabolismo , Trastornos Relacionados con Anfetaminas/metabolismo , Encéfalo/efectos de los fármacos , Encéfalo/metabolismo , Dextroanfetamina/efectos adversos , Pez Cebra/metabolismo , Acetilcolinesterasa/genética , Trastornos Relacionados con Anfetaminas/genética , Trastornos Relacionados con Anfetaminas/fisiopatología , Animales , Evolución Biológica , Encéfalo/fisiopatología , Química Encefálica/efectos de los fármacos , Química Encefálica/genética , Estimulantes del Sistema Nervioso Central/efectos adversos , Fibras Colinérgicas/efectos de los fármacos , Fibras Colinérgicas/metabolismo , Inhibidores de la Colinesterasa/farmacología , Inhibidores de la Colinesterasa/uso terapéutico , Condicionamiento Psicológico/efectos de los fármacos , Condicionamiento Psicológico/fisiología , Modelos Animales de Enfermedad , Dopamina/metabolismo , Femenino , Masculino , Mutación/genética , Recompensa , Pez Cebra/genética
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