4.7 Article

Method of manufacturing and staining microplastics for using in the biological experiments

Related references

Note: Only part of the references are listed.
Article Environmental Sciences

Rhodamine B dye staining for visualizing microplastics in laboratory-based studies

Huiyan Tong et al.

Summary: This study introduces an effective Rhodamine B dye staining method for microplastics, enabling the visualization of different types of microplastic polymers tested in laboratory experiments, particularly transparent, white, and small-sized microplastics.

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH (2021)

Article Biochemical Research Methods

The potential of fluorescent dyes-comparative study of Nile red and three derivatives for the detection of microplastics

Michael T. Sturm et al.

Summary: In recent years, there has been extensive research on developing a cost-effective and easily applicable method for detecting microplastics using Nile red and its derivatives. Additionally, the influence of different solvents and water pH values on the dyeing process was investigated by analyzing fluorescence spectra. The developed method was also tested on sea salt samples.

ANALYTICAL AND BIOANALYTICAL CHEMISTRY (2021)

Review Environmental Sciences

Marine microplastics in the ASEAN region: A review of the current state of knowledge

Emily Curren et al.

Summary: Microplastic pollution is a prevalent and serious problem in marine environments, impacting marine ecosystems and organisms. Research in Southeast Asia on this issue is limited, but studies show that fishing harbours, aquaculture farms, tourism, and improper waste disposal all contribute to the abundance of microplastics. Standardized protocols and quantification methods are needed for better monitoring and assessment.

ENVIRONMENTAL POLLUTION (2021)

Editorial Material Multidisciplinary Sciences

Microplastics and human health

A. Dick Vethaak et al.

SCIENCE (2021)

Article Environmental Sciences

Reproductive toxicity of primary and secondary microplastics to three cladocerans during chronic exposure

Gayathri Jaikumar et al.

ENVIRONMENTAL POLLUTION (2019)

Review Chemistry, Analytical

Microplastics in the environment: A review of analytical methods, distribution, and biological effects

Shaoliang Zhang et al.

TRAC-TRENDS IN ANALYTICAL CHEMISTRY (2019)

Article Engineering, Environmental

Fluorescent Dyes for Visualizing Microplastic Particles and Fibers in Laboratory-Based Studies

Evan G. Karakolis et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS (2019)

Article Environmental Sciences

Microplastics: Finding a consensus on the definition

J. P. G. L. Frias et al.

MARINE POLLUTION BULLETIN (2019)

Article Environmental Sciences

Using acs-22 mutant Caenorhabditis elegans to detect the toxicity of nanopolystyrene particles

Man Qu et al.

SCIENCE OF THE TOTAL ENVIRONMENT (2018)

Article Engineering, Environmental

Lost, but Found with Nile Red: A Novel Method for Detecting and Quantifying Small Microplastics (1 mm to 20 μm) in Environmental Samples

Gabriel Erni-Cassola et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2017)

Article Environmental Sciences

Identification and quantification of microplastics using Nile Red staining

Won Joon Shim et al.

MARINE POLLUTION BULLETIN (2016)

Article Engineering, Environmental

Microplastic Ingestion by Zooplankton

Matthew Cole et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2013)

Review Engineering, Electrical & Electronic

Electrospraying route to nanotechnology: An overview

A. Jaworek et al.

JOURNAL OF ELECTROSTATICS (2008)

Review Engineering, Chemical

Micro- and nanoparticle production by electrospraying

A. Jaworek

POWDER TECHNOLOGY (2007)