0
Article Tier 2 Nanoplastics Sign in to save

BPS2025 - A comparison of giant unilammelar vesicle deformation and poration due to interaction with simulated environmental vs. pristine manufactured nanoplastics

No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →

More Papers Like This

Article Tier 2

Production, characterization, and toxicology of environmentally relevant nanoplastics: a review

AI summary Read the abstract

Researchers reviewed the production, characterization, and toxicity of environmentally relevant nanoplastics, noting that most existing studies rely on synthetic nanospheres that poorly represent the diverse composition, size, and shape of real-world nanoplastic particles. The review covers mechanical and physicochemical production methods, internalization in human cell lines, and bioaccumulation and systemic effects in model organisms.

Article Tier 2

Exploring the continuum between nanoplastics and oligomers

AI summary Read the abstract

A study of submicron particles shed from synthetic textiles revealed a continuum between nanoplastics and oligomers, providing insight into their molecular origins and physicochemical properties. Understanding this transition zone is critical because nanoplastic-scale particles and plastic-derived oligomers are the least studied and potentially most biologically active fraction of microplastic pollution.

Article Tier 2

Challenges in characterization of nanoplastics in the environment

AI summary Read the abstract

Nanoplastics — plastic particles smaller than 1 micrometer — pose significant analytical challenges because existing spectroscopic techniques like FTIR and Raman spectroscopy lack the sensitivity to reliably detect and characterize them in environmental samples. This gap in detection capability means nanoplastic abundance and toxicity are severely underestimated, representing a critical frontier for understanding the full scope of plastic pollution's health impacts.

Article Tier 2

Toward Understanding the Transport of Nanoplastics in Subsurface Pores

AI summary Read the abstract

Researchers used quartz crystal microbalance experiments to measure how nanoplastics with different surface charges adsorb onto mineral surfaces in soils and groundwater, finding that surface charge compatibility between particles and mineral oxides strongly governs transport behavior. Ionic strength and humic acid also significantly modulated nanoplastic adsorption, providing key parameters for modeling their subsurface fate.

Article Tier 2

Things we know and don’t know about nanoplastic in the environment

AI summary Read the abstract

Researchers outlined the key unanswered questions about nanoplastics — plastic fragments smaller than 1 micrometer — including how they form, how they behave in the environment, and what risks they pose to living organisms. Because nanoplastics are far smaller than most detected microplastics, they may more easily penetrate biological barriers, though the evidence is still developing.

Research digests by email

When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.

Email me about

Share this paper