Synthace and Ipsen partner to accelerate novel therapeutic development through automation

Two European leaders in biopharma and integrative software are working together to advance drug discovery

9 Nov 2020
Tom Casburn
Associate Editor

Industry news

Synthace Ltd and Ipsen, a global biopharmaceutical company focused on innovation and specialty care, have partnered to accelerate development of novel biotherapeutics targeting multiple therapeutic areas, including oncology, endocrinology, pain management, regenerative medicine and rare diseases. Ipsen has automated design and construction of therapeutic candidates using Synthace’s integrative software platform, Antha. The process aims to speed up biotherapeutic candidate entry into the screening pipeline and shorten development time for treatment of diseases via targeted secretion inhibition.

Ipsen has developed novel biotherapeutic molecules, called Targeted Secretion Inhibitors TSIs. (TSIs are a fusion of select parts of the botulinum neurotoxin with another protein domain) to redirect its mode of action, resulting in a unique targeted therapeutic. The design and construction of TSIs is both labor intensive and manually complex, typically taking 30 days to develop between 24-48 constructs which then go on to therapeutic screening.

The Ipsen R&D team required a solution to increase throughput and efficiency of its TSI generation and screening pipeline, while utilizing its Type IIs construct assembly method. They looked to fellow innovators Synthace, whose flexible and integrative software Antha has built-in workflows for automating processes such as Type II construct assembly, bacterial transformation, plating, data generation and analysis.

Synthace’s Antha platform allowed the Ipsen team to plan, simulate, and test their assemblies in silico before executing the protocol. The partnership of Antha and Ipsen produced approximately 90 constructs five times faster than previous methods, substantially increasing the number of molecules entering the screening cascade. Antha was also able to increase efficiency by re-using core DNA building blocks for multiple construct assemblies, resulting in a 10-fold reduction in costs associated with DNA synthesis.

Dr Karen Bunting, Director of Protein Science at Ipsen said, “The development of novel biotherapeutics like TSI is key to treating debilitating illnesses across multiple therapeutic areas. The first step in this is generating and screening high-quality molecules as therapeutic candidates. Using Antha, our team increased throughput at this crucial step, allowing us to design, construct, and screen novel TSI candidates rapidly and helping to advance our therapeutic solutions.”

Drug discovery is a costly and laborious process where thousands of candidates are generated, screened and validated, but only a select few are chosen to move forward in the pipeline. Pharma companies are turning to automation and software to aid in the design, construction and screening of these compounds, reducing costs and increasing efficiency without compromising on quality.

To achieve this, biopharmaceutical companies like Ipsen are partnering with specialists in integrating the digital and physical aspects of R&D, providing an easy-to-use interface between scientists, design software, automated devices, and data handling downstream. This flexible, integrated approach to the discovery process has clear advantages in boosting efficiency at the earliest stages of drug development, with the ultimate goal of making more effective treatment options available to patients sooner.

Tim Fell, CEO of Synthace concluded, “We are thrilled to see our Antha platform applied to develop new biotherapeutics. Antha has accelerated Ipsen’s TSI construction and screening programme while reducing costs and the time scientists spent in the lab. Automating processes like these allows scientists to focus on experimental design and data analysis rather than liquid handling, enabling them to create more beneficial therapeutics for patients.”

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Biopharmaceutical AdvancesBiopharmaceutical advances follow the development of pharmaceuticals derived from biotechnology, also known as biotechnology medicines. Biopharmaceuticals may be produced from cell lines, plants, or microbial cells. Important considerations of biopharmaceutical use include application, cost, production process and purification.AutomationAutomation in laboratories and manufacturing processes enhances efficiency, precision, and scalability by reducing the need for manual intervention. It plays a critical role in improving productivity, minimizing human error, and accelerating workflows in fields like diagnostics, drug development, and industrial testing. Automation technologies include robotic systems, automated liquid handlers, and process control systems that streamline complex tasks and ensure consistent, reproducible results. Explore our peer-reviewed product directory to discover the best automation solutions, compare options, read user reviews, and get prices directly from manufacturers.BiotherapeuticsBiotherapeutics are proteins and other compounds (such as nucleic acids) produced by living organisms that have uses as therapeutics or in <i>in vivo</i> diagnostics. The most well-known example of a biotherapeutic product, and the first to be approved for therapeutic use, was recombinant human insulin.Drug DiscoveryDrug discovery is the process of identifying potential new medications, involving stages such as target identification, compound screening, and preclinical development. It relies on cutting-edge technologies like high-throughput screening, artificial intelligence, and molecular modeling to accelerate the identification of drug candidates. Drug discovery plays a pivotal role in developing new therapies for diseases ranging from cancer to rare genetic disorders. Browse our peer-reviewed product directory to find the latest drug discovery technologies, compare options, check customer feedback, and get pricing directly from manufacturers.TherapeuticsTherapeutics are treatments designed to alleviate or cure diseases. These include pharmaceuticals, biologics, and gene therapies, which work by targeting specific disease mechanisms. Advances in personalized medicine and biologics offer new hope for patients with conditions that were previously difficult to treat. Browse our peer-reviewed product directory to find therapeutic solutions for various diseases; compare products, check user reviews, and get pricing directly from manufacturers.Drug DevelopmentDrug development refers to the process of bringing a new drug to market.