Cation-selective Membranes

Cation-selective membranes are materials that preferentially allow positively charged ions to pass while restricting anions and larger or neutral species, making them important for controlling ionic transport in biological and engineered systems. Their selectivity typically arises from fixed charged groups within the membrane, which attract counterions, exclude co-ions, and regulate movement through hydrated channels or pores according to charge, concentration gradients, and membrane structure. In bioengineering, these membranes support ion-exchange processes, separation technologies, electrochemical devices, biosensors, and biomimetic systems. Understanding their transport behavior helps researchers design platforms for controlled molecular delivery, energy conversion, and physiological signal regulation.

Cation-selective Membranes - Related Videos

Research

JoVE Journal - Biology

Functional Characterization of Na+/H+ Exchangers of Intracellular Compartments Using Proton-killing Selection to Express Them at the Plasma Membrane

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Cited by 4 •

2015

The first part of this article shows how to select mutant cell lines expressing vesicular Na+/H+ exchangers at their plasma membrane. The second part provides protocols based on intracellular pH measurements and fast ion uptake, which are used to determine the ion selectivity and the kinetic parameters of these exchangers.

Research

JoVE Journal - Bioengineering
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Synthesis of Cationized Magnetoferritin for Ultra-fast Magnetization of Cells

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Cited by 1 •

2016

A protocol for the synthesis and cationization of cobalt-doped magnetoferritin is presented, as well as a method to rapidly magnetize stem cells with cationized magnetoferritin.

Measuring Cation Transport by Na,K- and H,K-ATPase in Xenopus Oocytes by Atomic Absorption Spectrophotometry: An Alternative to Radioisotope Assays

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Cited by 7 •

2013

We describe a method to quantify the activity of K+-countertransporting P-type ATPases by heterologous expression of the enzymes in Xenopus oocytes and measuring Rb+ or Li+ uptake into individual cells by atomic absorption spectrophotometry. The method is a sensitive and safe alternative to radioisotope flux experiments facilitating complex kinetic studies.

Enhancing Viral Transduction in Natural Killer Cells Using a Cationic Polymer

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2025

This video demonstrates an assay for cationic polymer-mediated viral transduction in natural killer (NK) cells. The cells are incubated with transgenic lentivirus vectors encoding a fluorescent protein. The addition of a cationic polymer enables the virus to attach to the cells and integrate its RNA into the host genome, expressing the fluorescent protein. The fluorescence is quantified to assess the polymer-induced enhancement of transduction.

Assessing Bacterial Biofilm Formation Using a Cationic Dye-Based Assay

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2026

Begin with a bacterial suspension in nutrient media.Add the suspension to a multi-well plate and incubate.The nutrients in the media facilitate bacterial growth and attachment.The adhered bacteria secrete extracellular polymeric substances consisting of polysaccharides, proteins, and DNA to form a layer of biofilm.Wash multiple times with buffer to remove unbound bacteria.Invert the plate to ensure the removal of residual liquid from the well and allow the biofilm to dry.Treat with a fixative...

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