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This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Developing a robust process for manufacturing therapeutic mAbs poses many analytical challenges. This requires high-throughput methods with fast sample preparation, robust analytics, and easy data interpretation.
Here we present a fully automated workflow for sample preparation for middle-level analysis by LC-MS of mAbs directly from crude protein samples such as harvested cell culture fluid.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Antibody purification is routinely performed in biopharmaceutical research. Here, we present a rapid automated Protein A-based antibody purification method using magnetic beads. The robust protocol ensures high antibody recovery.
The automation capabilities of the Andrew+ Pipetting Robot allow for the flexibility of processing samples up to 48 samples depending on throughput needs.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
The following work demonstrates the capabilities of the Andrew+ Pipetting Robot in combination with the Extraction+ Connected Device for fully automated bioanalytical solid phase extraction (SPE) for a variety of pharmaceutical drugs from plasma.
Protocols for both cartridge and 96-well SPE plate formats are included. Calibration curves and QC samples are created in one protocol and extracted in a separate one.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Subunit analysis of therapeutic antibodies by LC-MS using FabRICATOR (IdeS) digestion provides a rapid approach for analyzing many important quality attributes including Fc glycosylation and oxidation.
Here, we describe protocols for automated sample preparation using the Andrew+ Pipetting Robot.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
High-throughput analytical platforms for the characterization of proteins produced at clone selection stage have also been increasingly on demand to facilitate the development of these biopharmaceuticals.
Here we present a fully automated workflow for sample preparation and LC-MS analysis of mAbs obtained directly from unrefined samples such as spent cell culture media including host cells protein.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
With our long-standing experience in chromatography and nucleic acid purification, MACHEREY-NAGEL is an ideal choice for high-quality plasmid preps.
Together with Andrew Alliance, we have developed the hardware and protocols for easy automation of up to 6 plasmid midi preps in parallel, providing you with a reliable solution for plasmid purification without the tedious work of manually processing samples.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
This work demonstrates the capabilities of the Andrew+ Pipetting Robot configured with the Extraction+ Connected Device for fully automated SPE sample preparation using cartridge and plate formats.
Described Protocols use a simple 3-step SPE procedure (load, wash, and elution) in combination with Waters reversed-phase Oasis HLB cartridges (1, 3, and 6 cc size) and 96-well macro and μElution plates.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
An automated Protein A affinity purification method for up to 96 culture media samples in a well plate format is presented. The automation uses Cytiva antibody purification resin1 on Andrew+ liquid handling robot.
The purification consumes 120 µL HCCF to generate 100 µL of antibody in neutral pH buffer solution. Dynamic processing of 96 samples demonstrated excellent recovery and reproducibility.

Automation of PFAS Extraction in Firefighting Foam using SPE with Oasis WAX/GCB cartridges
Waters Corporation
This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
A major component of many Class B firefighting fluids (FFF) is PFAS, particularly aqueous film forming foams (AFFF). However, the concentration of PFAS in AFFF is extremely high. Preparing FFF samples for LC-MS/MS analysis involves many labor-intensive pipetting steps. An automated workflow is described in this protocol to improve laboratory efficiency and reduce human error using Andrew+ and Extraction+, along with Oasis WAX/GCB cartridges, which maximizes PFAS recovery while reducing matrix interferences for LC-MS/MS analysis.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
The European Food Safety Authority (EFSA) predicts that PFAS exposure is primarily through food. Milk, being the staple food product for toddlers and children, would affect them disproportionately compared to adults, so there is a need to monitor PFAS levels in milk.
In addition to using Andrew+ and Extraction+ for improved throughput and reduced errors, this method uses Oasis WAX SPE cartridges to enhance PFAS recovery and reduce matrix interferences for LC-MS/MS analysis. Automation also allowed for washing the walls of the sample vials with eluent, increasing the recovery of PFAS.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Dilute-and-shoot is a simple and rapid analytical method for multi-analyte identification. Although sample preparation is minimal, it remains a critical step to ensure accurate quantitation.
The protocols described here use the dilute-and-shoot approach and take advantage of the Andrew+ capabilities to automate sample preparation ensuring maximum pipetting precision and efficient mixing.

This example method provides a freely adjustable framework for measuring the adaptability of the OneLab environment to workflows from different application fields. It helps to understand various nuances of the code-free, universal protocol designer and provides general indications as to the feasibility of a project. Scripts generally require fine adjustment to correct for variables and support specific labware implementation.
Adequate endotoxin testing is invaluable in ensuring quality and safety. LAL assays require cumbersome sample preparation and are easily disturbed by different constituents of the sample.
EndoLISA, combining solid-phase format and synthetic rFC, achieves sensitive detection of endotoxin by eliminating interfering components. It can be automated, which accelerates the test with minimal human error.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
The Fungitell® chromogenic assay is used to detect (1→3)-β-D-Glucan, a biomarker for invasive fungal disease. The Limulus Amebocyte Lysate (LAL) based assay requires a complex plate building process with numerous sample handling and pipetting steps including standard curve preparation, control testing, in-plate sample pretreatment, and reagent dispensing.
These time consuming and tedious steps can be accomplished using an Andrew+ robot.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
N-glycans affect the safety and efficacy of many therapeutic proteins and are routinely monitored for the quality of biotherapeutics.
Here, we present a complementary method for analyzing the complex N-glycans released from human chorionic gonadotrophin (hCG). The automated method provides a reproducible glycan profile and is suitable for commercial as well as research environments.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
With our long-standing experience in chromatography and nucleic acid purification, MACHEREY-NAGEL is an ideal choice for high-quality plasmid preps.
Using NucleoBond Xtra Maxi, yields of up to 1000 μg of ultrapure plasmid DNA can be obtained based on reliable and well-established anion exchange chromatography.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
With our long-standing experience in chromatography and nucleic acid purification, MACHEREY-NAGEL is an ideal choice for high-quality plasmid preps.
Using NucleoBond Xtra Midi, yields of up to 500 μg of ultrapure plasmid DNA can be obtained based on reliable and well-established anion exchange chromatography.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Here we present an automation solution for the quantification of four immunosuppressive drugs in whole human blood. These four drugs are commonly used in clinical research for studying therapeutic drug monitoring.
The automated method produces comparable results to the manual workflow and offers time-saving benefits with up to 96 samples prepared in less than an hour and 30 minutes.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
These protocols enables upstream engineers to routinely collect product quality attributes and metabolite information for monitoring and as part of the Waters Bioprocess Walk-Up Solutions.
With the OneLab waters_connect integration, Waters provides a streamlined and user-friendly process for performing precise and accurate sample preparation using the Andrew+ Pipetting Robot directly followed by high-quality LC-MS data acquired using the BioAccord System.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
To analyze amino acids in biological samples by LC-MS, Waters provides a fast reproducible solution that uses pre-column derivatization built on the AccQ•Tag reaction chemistry, with the ability to quantitate over 40 amino acids in less than 10 minutes.
Waters Kairos Amino Acid Kit – High Throughput (500+) enables precise and accurate preparation of over 40 amino acids using the Andrew+ Pipetting Robot.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Pesticide analysis is critical to ensure agricultural commodities comply with legal limits. Matrix effects are a common concern, as they can compromise detection and quantification quality.
Here, we present a fully automated protocol for matrix-matched standard curve preparation ready for a typical LC-MS/MS method.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Lipids are important molecules involved in energy metabolism, signaling, and membrane formation. They are pivotal in understanding disease and its progression.
Here we highlight an automated MTBE liquid-liquid extraction method of lipids and small molecules from biological matrices. The automated method helps streamline this multi-step extraction protocol saving time and reducing operator errors.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
The MxP® Quant 500 is a comprehensive, ready-to-use kit crafted for precise quantitative metabolic profiling and rigorously quality-controlled to ensure optimal performance.
Leveraging the Andrew+ pipetting system and the corresponding OneLab protocol enhances throughput, reduces personnel involvement, and increases reproducibility, making it ideally suited for extensive large-scale studies.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Isolation of nucleic acids from various sample materials is the basis for a large variety of downstream analysis in the field of research, applied science, and diagnostics.
MACHEREY-NAGEL provides a diverse set of optimized solutions for nucleic acid isolation including genomic DNA isolation from human specimens, such as whole blood, serum, plasma, or other body fluids.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Critical factors when purifying RNA are the complete removal of contaminating DNA (gDNA) and the immediate prevention of degradation of RNA.
MACHEREY-NAGEL RNA purification kits in combination with Pipette+ guidance deliver reliably pure RNA for your demanding applications.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
MACHEREY-NAGEL kits are developed to efficiently purify high-quality DNA, especially from challenging samples.
Overcome difficulties associated with efficient isolation of nucleic acids from hard-to-lyse samples using kits tailored to distinct sample types such as food, soil, stool, and plants and achieve the best possible reproducibility with Pipette+.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Isolation of nucleic acids from various sample materials is the basis for a large variety of downstream analysis in the field of research, applied science, and diagnostics.
MACHEREY-NAGEL provides a diverse set of optimized solutions for nucleic acid isolation including genomic DNA isolation from tissues and cells.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Mixed-mode SPE is a sample clean-up technique for LC-MS analysis. Selecting a mixed-mode SPE sorbent can be challenging, requiring a good understanding of the sorbent/analyte chemistry. In addition, it involves accurate and precise pipetting steps.
This protocol demonstrates a rapid and robust Andrew+ automated mixed-mode SPE sorbent selection method using the Oasis 2x4 sorbent selection plate.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Developing a robust process for manufacturing biopharmaceuticals poses many challenges. It requires high-throughput methods with fast sample prep, reproducible analytics, and easy data interpretation.
Here we present an automated sample prep workflow to compare the O-glycopeptide profiles of heavily O-glycosylated protein therapeutics using the O-protease OpeRATOR for subsequent LC-MS analysis.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Sample preparation for therapeutic oligonucleotide (ONT) bioanalysis can be challenging, requiring extensive method development. Some workflows, like liquid-liquid extraction (LLE) can be difficult to automate, while others may use detergent-based reagents, requiring extensive washing and sample evaporation/reconstitution to make it LC-MS compatible.
OligoWorks Kits are simple, standardized, flexible and automation-friendly sample preparation kits designed to enable accurate and robust LC-MS based bioanalytical quantitation across a diversity of oligonucleotides.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Protein precipitation is the simplest form of plasma/serum preparation. However, pipetting errors and contamination during sample preparation can impair assay sensitivity, robustness, and precision.
In the following work, Andrew+ was used to prepare and extract analytes from complex biological matrices, using the Ostro sample prep plate, with subsequent LC-MS/MS analysis and quantification.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Therapeutic and endogenous peptides can be difficult to extract using SPE with high reproducibility. This is often due to user errors encountered during the extraction process.
Here we present an extraction protocol for peptides using the Andrew+ robot which demonstrates rapid and robust automated mixed-mode SPE sorbent selection using the Oasis Peptide Method Development 96 well μElution Plate.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Reproducible peptide maps are valuable for the routine analysis of biotherapeutic proteins in R&D, QC, and manufacturing environments.
Here, we present an automated comprehensive sample prep protocol using the PeptideWorks™ sample preparation kit and the Andrew+ Pipetting Robot. The automated method provides a reproducible protein digest and is suitable for commercial and research environments.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
Plasmid purification, PCR Clean-up and DNA extraction from gels are the most commonly used applications in molecular biology labs. Both applications are also important steps in the cloning workflow.
The MACHEREY-NAGEL NucleoSpin Plasmid and NucleoSpin Gel and PCR Clean-up kit in combination with Pipette+ is the easiest way to purify isolate plasmid DNA and DNA fragments from agarose gels or PCR reactions.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Endotoxin testing is a requirement for any injectable drug or medical device to ensure safety. Pyrochrome® is a 96 well microplate based chromogenic Limulus Amebocyte Lysate (LAL) assay that requires a complex plate building process with numerous pipetting steps.
Standard curve and positive product control (PPC) preparation, sample arraying, and reagent dispensing are time consuming and tedious steps that can be accomplished using an Andrew+ robot.

PyroSmart NextGen® Recombinant Cascade Reagent (rCR) for Endotoxin Detection
Associates of Cape Cod, Inc.
This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Endotoxin testing is a requirement for any injectable drug or medical device to ensure safety. PyroSmart NextGen® is a 96 well microplate based chromogenic that utilizes recombinant proteins as key inputs.
The assay requires a complex plate-building process with numerous pipetting steps. Standard curve and positive product control (PPC) preparation, sample arraying, and reagent dispensing are time-consuming and tedious steps that can be accomplished using an Andrew+ robot.

This advanced method offers an end-to-end solution developed around an advanced application, a specialized kit, or an analytical system. It delivers complete functional, ready-to-use protocols that are qualitatively and quantitatively assessed for consistency, executability, and repeatability, usually without needing to make any changes. It operates per batch size and is scalable to accommodate changing requirements.
Peptide analysis can be a demanding process especially with the increased need for a greater understanding of SARS-CoV-2 infection.
Waters SARS-CoV-2 LC-MS kit enables precise and reproducible preparation of three SARS-CoV-2 peptides from the NCAP protein using the Andrew+ pipetting robot.

This example method provides a freely adjustable framework for measuring the adaptability of the OneLab environment to workflows from different application fields. It helps to understand various nuances of the code-free, universal protocol designer and provides general indications as to the feasibility of a project. Scripts generally require fine adjustment to correct for variables and support specific labware implementation.
The repetitive pipetting to or from wells during a plate reformatting procedure could introduce errors and variability, which is detrimental to the reliability of experimental results.
Using OneLab software, Andrew Alliance automation solutions provide the best performance in time and precision, thereby making plate reformatting less time-consuming and more accurate.

This example method provides a freely adjustable framework for measuring the adaptability of the OneLab environment to workflows from different application fields. It helps to understand various nuances of the code-free, universal protocol designer and provides general indications as to the feasibility of a project. Scripts generally require fine adjustment to correct for variables and support specific labware implementation.
Workflows like ELISA assays, protein content determination and quantitative LC-MS analysis rely on serial dilutions to prepare calibration curves and quality control samples.
This series of methods demonstrates simple 2- and 5-fold serial dilutions in 96-well plates in a row or column-wise fashion. The same script can be executed in a fully automated manner using Andrew+ or guided using Pipette+.

This example method provides a freely adjustable framework for measuring the adaptability of the OneLab environment to workflows from different application fields. It helps to understand various nuances of the code-free, universal protocol designer and provides general indications as to the feasibility of a project. Scripts generally require fine adjustment to correct for variables and support specific labware implementation.
This protocol streamlines filling Bio-Techne’s Simple Western™ pre-filled plate with the Chemiluminescence assay. OneLab’s automation with Andrew+ ensures precise setup, aligning with the same time efficiency and reproducibility found with Jess™ platform, powered by Simple Western™ technology.
Jess system and other Simple Western platforms offer a solution to quicker and better results than traditional Western blot and ELISA.

This basic method provides the core methodology for translating a workflow into OneLab-executable script(s) as an attempt to fully or semi-automate a specific procedure. It demonstrates the benefits of automation and highlights OneLab capabilities and best practices to promote solution adoption, helping transition from manual to a more automated approach. It can be used alone or serves as a building block for a more complex workflow and is easily adaptable to users' requirements.
LC-MS analytical method development requires flexible and reproducible sample preparation for accurate and robust analyte quantification.
This method provides example protocols of automated sample preparation for standard curve generation, using the Andrew+ Pipetting Robot with cloud-native OneLab software, ensuring downstream accurate and reproducible LC-MS quantification of different analytes.
