One lab, three paths to faster outcomes

1

DIGITAL SOLUTIONS

pDNA Component Design

Design plasmids in silico, selecting genes and oligonucleotide fragments for assembling plasmid libraries. Plan for assembly in-house or source entirely from service providers.

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2

DIGITAL SOLUTIONS

pDNA Synthesis

DNA fragments are created with the necessary structural elements for assembly. Service providers can ensure pDNA scalability from development to cGMP-grade products.

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3

LABORATORY AUTOMATION | ANALYTICAL TOOLS | DIGITAL SOLUTIONS

Plasmid Assembly

Assemble plasmid libraries from genes of interest and fragments. Diverse libraries maximize hit discovery.

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4

LABORATORY AUTOMATION | DIGITAL SOLUTIONS

Transformation

Facilitate uptake of plasmids into bacterial cells for expression.

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5

LABORATORY AUTOMATION | ANALYTICAL TOOLS | DIGITAL SOLUTIONS

Cell Recovery

Incubate bacteria in a medium to recover from transformation stress. Optimize recovery times to improve transformation success and plasmid production.

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6

LABORATORY AUTOMATION | DIGITAL SOLUTIONS

Colony Picking

Plate cultures on a selective medium, screening for colonies that are expressing pDNA. Pick colonies into a liquid culture to bulk ferment plasmids.

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7

LABORATORY AUTOMATION | ANALYTICAL TOOLS | DIGITAL SOLUTIONS

Cell Growth

Scale up culture volumes. Optimize growth parameters to maximize plasmid yields.

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8

DIGITAL SOLUTIONS

Concentration

Remove cell culture waste to isolate and concentrate biomass. Define protocols that are scalable to large production volumes.

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9

LABORATORY AUTOMATION | ANALYTICAL TOOLS | DIGITAL SOLUTIONS

pDNA Purification

Chemically or mechanically lyse bacterial cells and purify plasmid DNA. Determine concentrations and best methods for increasing yields.

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10

ANALYTICAL TOOLS | DIGITAL SOLUTIONS

QC and Banking

Determine plasmid DNA integrity, structure, and fidelity. Analytical solutions established during development must scale to larger volumes and cGMP production environments.

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