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Estudio de los efectos toxicológicos de los nanoplásticos en células de colon

Mundo Nano Revista Interdisciplinaria en Nanociencia y Nanotecnología 2023 1 citation ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Gonzalo Ramírez García, Karla Juárez‐Moreno

Summary

This Spanish-language study investigated the toxic effects of nanoplastics (plastic particles smaller than 1 micrometre) on human colon cells, examining how these tiny particles may cross biological barriers and enter the body through contaminated food and drink. The research contributes to understanding the potential health risks of nanoplastics in the gastrointestinal tract, an important pathway for human exposure.

Body Systems

Los residuos plásticos representan una amenaza para el entorno, no solo por su acumulación y contaminación, sino también por su constante degradación y transformación en micro y nanoplásticos (MNPLs). El rango de tamaño de los MNPLs les facilita cruzar las barreras de los organismos, es decir, los mecanismos naturales que protegen al organismo de la entrada de sustancias dañinas o patógenos, convirtiéndose en un factor de riesgo potencial para la salud humana ante sus efectos relativamente desconocidos. La absorción humana de nanoplásticos puede ocurrir de manera no intencional a través de la cadena alimentaria por el consumo de alimentos y bebidas contaminados o posiblemente a través de la migración de partículas nanoplásticas de los materiales de empaque a los productos alimenticios, por lo que evaluar la seguridad y toxicidad de los MNPLs es una preocupación que exige datos fiables. En esta revisión, nos enfocaremos a la literatura publicada en torno a los estudios sobre la evaluación de los efectos de los MNPLs en células epiteliales de colon. Estos trabajos han evaluado el peligro de los MNPLs mediante pruebas de viabilidad celular, integridad de las membranas, localización y translocación de MNPs, inducción de especies reactivas de oxígeno y daño genotóxico para tener una visión integral de sus efectos potencialmente dañinos. La mayoría de los plásticos producidos por la industria están compuestos por diferentes tipos de polímeros, y dada la limitación tecnológica para obtener muestras ambientales se trabaja principalmente con modelos de partículas micro y nanoplásticas sintetizadas.

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