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Correctionto “ProteinCorona-Directed CellularRecognition and Uptake of Polyethylene Nanoplastics by Macrophages”

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This entry is a published correction to a prior study on protein corona-directed cellular recognition and uptake of polyethylene nanoplastics by macrophages, noting a correction to previously reported data or methodology.

Polymers
Body Systems

Correction to “Protein Corona-Directed Cellular Recognition and Uptake of Polyethylene Nanoplastics by Macrophages”

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Article Tier 2

Correctionto “ProteinCorona-Directed CellularRecognition and Uptake of Polyethylene Nanoplastics by Macrophages”

AI summary Read the abstract

This entry is a published correction to a prior study on protein corona-directed cellular recognition and uptake of polyethylene nanoplastics by macrophages, noting a correction to previously reported data or methodology.

Article Tier 2

Correctionto “ProteinCorona-Directed CellularRecognition and Uptake of Polyethylene Nanoplastics by Macrophages”

AI summary Read the abstract

This entry is a published correction to a prior study on protein corona-directed cellular recognition and uptake of polyethylene nanoplastics by macrophages, noting a correction to previously reported data or methodology.

Article Tier 2

Correction to “Protein Corona-Directed Cellular Recognition and Uptake of Polyethylene Nanoplastics by Macrophages”

AI summary Read the abstract

This document is actually just a correction notice for a previous study, not a new research finding, it doesn't include the details needed to summarize what was found. The original research looked at how tiny plastic particles get coated with proteins from the body, which then affects how immune cells (macrophages) recognize and absorb them. This matters because understanding how our immune system responds to microplastics could help scientists figure out what happens when these particles enter our bodies through food, water, or air.

Article Tier 2

Protein Corona-Directed Cellular Recognition and Uptake of Polyethylene Nanoplastics by Macrophages

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Scientists discovered that when polyethylene nanoplastics enter the bloodstream, they quickly become coated with blood proteins, and this protein coating determines how immune cells recognize and respond to them. High-density and low-density polyethylene attracted different protein coatings, leading to different immune responses from macrophages. This research helps explain how nanoplastics interact with the immune system once they enter the human body, which is key to understanding their potential health effects.

Article Tier 2

Correction: Correlation between cellular uptake and cytotoxicity of polystyrene micro/nanoplastics in HeLa cells: A size-dependent matter

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This is a correction notice for a previously published study on the correlation between cellular uptake and cytotoxicity of polystyrene micro- and nanoplastics.

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