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Beckman Coulter

BioLector XT

BioLector-XT-2021-04_003_1200
BioLector-XT-2021-03_155
GET MO2RE DATA. NOW. With or without O2
The BioLector XT high-throughput microbioreactor enables real-time evaluation of biomass, pH, dissolved oxygen in the liquid phase (DO), fluorescence and other key cultivation parameters for aerobes and anaerobes— to quickly provide deep insights into your bioprocess development.

Building on trusted BioLector Pro technology, the BioLector XT microbioreactor is based on a standard ANSI/SLAS (SBS) microtiter plate (MTP) format, and operates with non-invasive, pre-calibrated optical sensors.

Disposable 48-well MTPs enable online measurement of key cultivation parameters while an optional microfluidic module supports simultaneous, well-individual pH control and feeding.

This patented microfluidic technology eliminates manual liquid handling—no tubing/pipetting required, as everything is part of the gamma-radiated ready-to-use plate.

ÁRAJÁNLATOT, INFORMÁCIÓT KÉREK!

BioLector XT Microbioreactor Features

INNOVATIVE NEW GASSING LID OPTIONAL MICROFLUIDIC MODULE “PLUG-AND-PLAY” PLATE DESIGN INTELLIGENT BIOLECTION SOFTWARE
Enables fed-batch experiments under anaerobic conditions Unleashes full potential of the BioLector XT Online data out of 48/32 parallel cultivations Intuitive user interface supports multi-user environments
Gassing with O22within a range of 1% - 100% and with CO2 within 0% - 12 % Complements online monitoring function with well-specific pH regulation/feeding Customizable feeding strategies (batch, fed-batch)* Free programming of all control parameters
Reduces gas consumption to a few mL/minute Enables use of 2 feed lines per cultivation well Control of pH on-the-plate with pre-calibrated optical sensors* Open system enables live data downloads
Optional humidification of gases reduces evaporation Microvalves allot liquids at nanoliter-scale Small working volume (800 – 2400 μL) Fast processor ensures rapid download of experiment data
    *Functionality requires optional microfluidic module  

 

Additional features include:

  • Capability to fully customize cultivation protocols to cover a broader spectrum of applications
  • Enables free combination of different feeding and pH control strategies over one cultivation run
  • Updated BioLection software provides an intuitive user interface designed for multi-user environments 
  • New gassing lid reduces gas consumption and acts as an air-tight anaerobic chamber that can be used with the microfluidic module, eliminating the need for anaerobic tents. 

Műszaki specifikációk

BioLector XT adatlap

 

System Performance
  • 32/48 parallel microreactions, optionally 16 reservoir wells
  • Working volume: 800 – 2400 μL
  • Pre-calibrated optical sensors for online pH and DO measurement
  • Well-individual pH control and feeding
  • Fully flexible feeding options: constant, linear, exponential or signal-triggered, with any combinations possible
  • Broad range of kLa values (30 – 600 h-1)
  • Continuous gas exchange and oxygen supply
  • Strictly anaerobic cultivations possible, optionally with active pH control and feeding
  • Equal power input into each reactor
  • Defined engineering parameters and scalability
  • Controlled gas atmosphere (CO2, O2)
  • Temperature control (8 °C below ambient temperature to 50 °C) with active water cooling
"Plug and Play" Microtiter Plate Design
  • Real-time kinetics out of 48/32 parallel cultivations
  • Fully customizable and freely combinable actively regulated feeding strategies (batch, fed-batch, bolus, continuous)*
  • Control of pH on-the-plate with precalibrated optical sensors*
  • Flexible process control of pH, shaking, temperature and gassing
  • Strictly anaerobic cultivations with feeding and pH control*
  • Cultivation of highly oxygen-demanding strains with up to 100 % O2
  • DO and signal-triggered feeding*
  • Low pH measurements and control* available in the range of 4-6
  • High-throughput and easy automation
  • Broad range for biomass detection (equivalent to up to 250 OD600, 50 g/L CDW, measured with E. coli)
  • Online biomass measurement requires no dilution
  • Small working volume (800 – 2400 μL)
  • No edge effects
  • Continuous shaking operation (no artifacts)
  • Defined mass transfer conditions
  • Reliable scale-up to bench-top fermenters
  • A valuable tool for PAT and QbD

*Note: functionality requires the optional microfluidic module

 

Applikációk

 

 

MO2RE flexibility for more applications

  • Feeding strategy development
  • Feeding rate optimization
  • Media screening and optimization
  • Cultivation parameter optimization
  • pH profiling • Strictly anaerobic and microaerophilic cultivations in batch and fed-batch mode
  • High-oxygen (up to 100 %) and high-carbon dioxide (up to 12 %) cultivations
  • Cell line and strain screening
  • Synthetic and systems biology
  • Statistical design of experiments (DoE)
  • Growth characterization
  • High-throughput protein expression
  • Enzyme and cell activity tests
  • Functional genomics
  • Proteomic studies
  • Inhibition and toxicity tests
  • Quality control
Online Measurement / Online Control

MO2RE control & more data for deeper insights

Online Measurement

  • Biomass concentration
  • pH value
  • Dissolved oxygen (DO)
  • NAD(P)H and Riboflavins
  • Fluorescent molecules (e.g., GFP, YFP, DsRed)
  • Shaking speed
  • Temperature
  • O2 in head space atmosphere
  • CO2 in head space atmosphere

Online Control

  • pH value (well-specific)
  • Feeding (well-specific)
  • Shaking speed
  • Temperature
  • Gas flow
  • O2 in head space atmosphere
  • CO2 in head space atmosphere

 

Tartozékok, kiszerelések

 

Optional Microfluidic Module helps BioLector XT microbioreactor do even MO2RE

  • Unleashes the full potential of the BioLector XT microbioreactor
  • Complements online monitoring function with well-specific pH regulation and feeding
  • Enables use of 2 reservoir wells per 4 cultivation wells—with either 2 pH-adjusting solutions, 2 feed solutions or 1 of each
  • Liquids allotted in nanoliter-scale through microvalves

 

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