Planktonic Cells

Planktonic cells are individual microorganisms that grow freely suspended in a liquid rather than attached to a surface or embedded in a biofilm, a state important for understanding infection and microbial dissemination. In this condition, cells encounter nutrients, antimicrobial agents, and host immune factors directly, while environmental changes can influence growth, gene expression, and transitions into surface-associated communities. In immunology and infection research, planktonic cultures provide a tractable model for measuring microbial growth, virulence, antibiotic susceptibility, and interactions with immune cells. Comparing planktonic and biofilm states helps clarify why infections persist and supports development of more effective antimicrobial and host-directed therapies.

Planktonic Cells - Related Videos

Research

JoVE Journal - Biology

Concentration of Metabolites from Low-density Planktonic Communities for Environmental Metabolomics using Nuclear Magnetic Resonance Spectroscopy

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Cited by 15 •

2012

A method for metabolite extraction from microbial planktonic communities is presented. Whole community sampling is achieved by filtration onto specially prepared filters. After lyophilization, aqueous-soluble metabolites are extracted. This approach allows for application of environmental metabolomics to trans-omics investigations of natural or experimental microbial communities.

Establishing the Minimal Bactericidal Concentration of an Antimicrobial Agent for Planktonic Cells (MBC-P) and Biofilm Cells (MBC-B)

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Cited by 63 •

2014

This protocol allows for a direct comparison between planktonic and biofilm resistance for a bacterial strain that can form a biofilm in vitro using a 96-well microtiter plate. Planktonic or biofilm bacteria are exposed to serial dilutions of the antimicrobial agent of choice. Viability is assayed by growth on agar plates.

An Ultra-clean Multilayer Apparatus for Collecting Size Fractionated Marine Plankton and Suspended Particles

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Cited by 6 •

2018

Plankton and suspended particles play a major role in the biogeochemical cycles in the ocean. Here, we provide an ultra-clean, low stress method for the collection of various sizes of particles and plankton at sea with the capability of handling large volumes of seawater.

Bromodeoxyuridine (BrdU) Labeling and Subsequent Fluorescence Activated Cell Sorting for Culture-independent Identification of Dissolved Organic Carbon-degrading Bacterioplankton

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Cited by 6 •

2011

Environmental bacterioplankton are incubated with a model dissolved organic carbon (DOC) compound and a DNA labeling reagent, bromodeoxyuridine (BrdU). Afterward, DOC-degrading cells are separated from the bulk community based on their elevated BrdU incorporation using fluorescence activated cell sorting (FACS). These cells are then identified by subsequent molecular analyses.

A Rapid Image-Based Assay for Screening Surface-Induced Bacterial Virulence

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2026

Source: Perinbam, K., and Siryaporn, A. A Rapid Image-based Bacterial Virulence Assay Using Amoeba. J. Vis. Exp. (2018)This video demonstrates a rapid, image-based method to assess bacterial virulence by incubating amoebae with surface-attached or planktonic bacteria, applying a calcein-acetoxymethyl ester (calcein-AM) agarose pad, and imaging fluorescence to detect host cell damage.

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