JANUARY 2025LIFE SCIENCES REVIEW9decisions during the process development, leading to more development cycles and, therefore, the cost and slow time to market.Traditional upstream, downstream, and analytic platforms are not able to overcome those challenges. Dare to Innovate Overcome the main manufacturing challenges One must integrate an advanced manufacturing platform approach to significantly enhance viral vector overall yield leading to AAV and lentivirus (LV) process cost reduction and, therefore, affordable virus-based therapeutic drugs. To meet the high vector demand, the market is moving into suspension cells or producer cell lines; even though their current specific productivity is lower, the process can be scalable. To enhance the vector yield for the suspension cells, it is critical to integrate a better-fit perfusion system into the vector production bioreactor enabling both higher growth and continuous harvest during production. The perfusion system, such as the tangential flow depth filtration (TFDF), is a great fit for vector production since it does both. This perfusion system currently benefits mostly enveloped viruses that are secreted outside the cells, like lentivirus, retrovirus, VSV, and many current AAV serotypes that are secreted outside the cells. Higher recovery yield of the functional vector and process performance consistency, at all manufacturing scales and during each of the downstream steps, can be achieved by using systems that were designed by having the needs for advanced therapy medicinal products (ATMP) in mind. The main design features of concentration and purification systems should have over-molded tubing connections, compact XO valve designs, combining filter and bubble trap, and advanced gradient control enabling consistent and better separation of AAV during the polishing step functions primarily to separate capsid lacking DNA (empty) from capsid containing DNA (full). Systems that have those features, such as the RS TFF system and KRM chromatography system, enable increased process efficiency and overall process step yield, protect potency and product integrity, reduce the overall risk of deviations through design, and enhance user experience.Another major challenge in the vector production process is the lack of online rapid and accurate analytical tools. The implementation of the FlowVPX System technology with variable pathlength technology (VPT) can offer a quick and direct total viral vector analysis during development to enhance throughput and improve decision-making. Willing to build an agnostic single-use and closed automated platform by adopting advanced technologies that are better-fit to large, fragile viruses, should enhance vector yield through process efficiency as well as protecting vector potency and integrity, reduce deviation risks through process control and meet vector demand at affordable cost. Advanced technologies are needed to meet the vector demand and provide the required reliability and robustness for manufacturing, enabling gene therapies to meet their full potential < Page 8 | Page 10 >