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Continuous Manufacturing                                                                                                                                                  Continuous Manufacturing


       API production. These benefi ts include  made continuously  by  directly reduc-  They can, thus, tremendously shorten   have to supply 10K of additional heat to  2. Novartis      continuous manufacturing with Green
       reducing the consumption of raw mate-  ing  CO  to  hydrocarbons in  an  aque-  the  workfl ow  of  bringing  technologies   get to reaction temperatures. The utility   Novartis has been a pioneer in  Chemistry, particularly in producing
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       rials, energy, and water and minimiz-  ous medium. This, too, could be done  from the laboratory to commercial pro-  consumption has, therefore, dropped  implementing  continuous  manufacturing  APIs for respiratory drugs. GSK has
       ing emissions  and  waste. Continuous  near ambient pressure and temperature  duction.                        by a factor of 22! For industries wor-  to produce APIs. One notable example is  developed continuous fl ow processes for
       Green Manufacturing (CGM) is there-  conditions. Further, sourcing electricity                                ried about decarbonization and cooling  their continuous production process for  several APIs, reducing the need for large
       fore well able  to meet  increasingly  from renewable sources makes it possi-  Even with the promise, these tech-  water conservation, here is the ultimate  a cardiovascular drug.  solvent volumes and lowering energy
       stringent regulatory standards for qua-  ble to have a genuinely carbon-neutral  nologies have yet to see industrial-level   low-hanging, high-impact fruit! But this             consumption. These processes have also
       lity and environmental impact, making  process.                    deployments. Part of the reason is that    is only possible with the fl ow.      Novartis developed a fully integrated  allowed for the use of less hazardous
       it an attractive option for pharmaceuti-                           some technologies are new (like deploy-                                      continuous manufacturing process that  reagents, reducing the environmental
       cal companies seeking to future-proof   Another technology that is worth  able LLMs). But another part of the    Technologies are being developed  includes  the  API’s synthesis, crystal-  impact of production.
       their operations.                 watching is focused energy addition.  reason is that even well-studied techno-  for continuous hydrogenation and other  lization,  fi ltration,  and  drying.  This
                                         It works with Microwave irradiation.  logies (microwave, electrocatalysts) have   heterogeneously catalyzed reactions,  approach has reduced the time required   To produce the respiratory drug fl uti-
       Emerging Technologies to Keep in   Microwaves are selectively absorbed  not found investors who would take the   with catalyst recovery and recycling in  to produce the API from several weeks  casone propionate, GSK implemented
       Mind                              by  materials  with  a  signifi cant  dipolar  risk to develop the ancillary technologies   fl ow.  Even  continuous  crystallizations  to just a few days. By adopting a continu-  a continuous manufacturing process
          The use of microorganisms and  moment and metals. Hence, non-polar  to translate them into commercially    are nearing piloting. In India, a number  ous process, Novartis could signifi cantly  that  signifi cantly  reduced  waste  and
       enzymes to effect chemical transformation  solvents with non-polar reactants can  deployable products – something we   of these innovations are being done in  reduce solvent use, waste generation,  improved process effi ciency. The continu-
       is probably older than written history  selectively  activate  a  metallic  catalyst,  will touch upon in greater detail below.  the Amar Flow Laboratory LLP.   and energy consumption.  The method  ous process allowed better control over
       (think wine, yogurt, cheese, and leave-  providing activation energy precisely                                                                  uses less raw material, creating a more  reaction conditions, producing a more
       ned bread). However, a major, Nobel-  at the site required for maximum effec-  Deployable Continuous Green Manu-  The transition to continuous green  sustainable production process. Novartis  consistent and high-quality product.
       Prize-winning breakthrough was made  tiveness.  The microwaves are not just  facturing                        manufacturing  in  the  pharmaceutical  received approval from the U.S. Food  GSK has reported that their continuous
       by  discovering the directed evolution  glorifi ed heaters: there are poorly under-  Several technologies are low-hang-  industry  is  gaining  momentum, with  and Drug Administration (FDA) for the  manufacturing processes have reduced
       of enzymes(2). With the ability to syn-  stood phenomena by which microwaves  ing fruit for continuous green manufac-  several companies leading the way.  fi rst drug produced using a continuous  greenhouse gas emissions and a lower
       thesize practically any protein imagin-  interact with substrates to yield effi cient  turing. For instance, nitration in fl ow can   Here are some notable examples of how  manufacturing process, setting a prece-  overall environmental footprint for their
       able  and select  the most optimum  for  transformations(4).       be executed without mixed acids – only     industry leaders implement continuous  dent for the industry(8).    API production.
       a given application, tailoring enzymes                             commercial nitric acid [5] at slight molar   green manufacturing processes for API
       for selected catalytic transformations is   While digital technologies have long  excess and super-ambient temperatures.   production.          3. Pfi zer                         5. Vertex Pharmaceuticals
       now possible. The ability of enzymes to  been an essential part of chemical manu-  The  tremendous  benefi ts  in  safety  and                      Pfi zer  has  also  embraced  continu-  Vertex Pharmaceuticals has adopted
       carry out their activities at near ambient  facturing (think process control), the  environmental footprint to the pharma-  1. Eli Lilly and Company  ous manufacturing, particularly in pro-  continuous manufacturing to produce
       conditions of temperature and pressure  advent  of  deployable  artifi cial  intelli-  ceutical, dye, and explosives industries   Eli Lilly has been at the forefront of  ducing APIs for small-molecule drugs.  the  API  for  their  cystic  fi brosis  drug,
       makes them especially suitable for  gence and machine learning has opened  cannot be overstated.              adopting continuous manufacturing pro-  One of their notable projects involved  Orkambi.  The continuous manufactur-
       future green-chemistry transforma-  up tremendous possibilities for green                                     cesses. One of their key achievements is  the continuous synthesis of an onco-  ing process at Vertex integrates several
       tions. Continuous green production of  continuous manufacturing.  The most   Similarly, technology from the IMM   the continuous API production for their  logy drug. The continuous manufactur-  unit operations, including reaction, crysta-
       various APIs under near ambient conditions  critical technology to remember is using  Fraunhofer Institute in Germany has   diabetes drug, insulin Lispro. Eli Lilly  ing process developed by Pfi zer allowed  llization, fi ltration, and drying, into a
       becomes  feasible  by  designing  fl ow  industry-specifi c large language models  demonstrated continuous production of   signifi cantly  improved  effi ciency  and  for a more streamlined and effi cient API  single continuous fl ow. This integration
       reactors with in-built enzyme recovery  (LLMs) to trawl through literature  Grignard reagent from Mg metal on a   sustainability by shifting from a tradi-  production, with real-time monitoring  has streamlined production and reduced
       units.                            rapidly, emerge with relevant literature  pilot scale [6]. This technology is at the   tional batch to a continuous process(7).  and control of reaction parameters. This  the time required to produce the API.
                                         data on any problem of interest, and  threshold of realizing the potential of                                 has  led  to higher  yields  and  reduced  The continuous process has enabled
          It is also possible  to do chemical  present that data lucidly. The ability to  making industrial-scale Grignard syn-  The continuous process utilized in  waste. Pfi zer’s continuous process mini-  Vertex to reduce solvent usage, energy
       transformations with  electrons from  a  ask questions in natural languages to  thesis safe and green.        insulin production incorporates Green  mizes hazardous reagents and solvents,  consumption, and waste generation.
       voltage source with an electrocatalyst to  further drill down on the data means that                          Chemistry principles, including using  aligning with Green Chemistry princi-  The process also offers improved scala-
       direct the electrons to/from the desired  any young technologist has the same   In several cases, utility savings alone   aqueous solvents and minimizing hazar-  ples. The method also operates at ambi-  bility and fl exibility, allowing Vertex to
       site on the chemical  substrates.  This  access to knowledge that it would have  can pay for the entire fl ow reactor sys-  dous chemicals. This shift has led to a  ent temperature and pressure, reducing  respond to changes in demand quickly.
       approach can be particularly  advanta-  taken a person several decades to imbibe.  tem. Consider a batch reactor raising the   reduction in solvent waste and energy  energy requirements.  The continuous  Vertex’s continuous manufacturing pro-
       geous for redox reactions  common  in  AI engines like Elicit: The AI Research  temperature of a process from 30°C to   consumption, enhancing the environ-  manufacturing  approach improved the  cess for Orkambi received regulatory
       API production.  As with  traditional  Assistant essentially reproduce the feel  250°C, carrying out a reaction, and then   mental profi le of the production process.  production process’s sustainability and  approval, highlighting the growing
       catalysts,  the advent of high-entropy  of having a mentor read the paper with  cooling back to 30°C. That is a 220°C   The company has reported a signifi cant  enhanced  API  production’s  scalability  acceptance of continuous manufacturing
       materials has  substantially increased  you. LLMs can suggest ways to ana-  temperature swing, and all that heat is   decrease in waste generation and a lower  and reliability, contributing to the boom-  in the pharmaceutical industry.
       the  scope of electrocatalysis(3).  With  lyze data, write software for the same,  wasted. If, instead, the hot effl uent of the   carbon footprint for the production of  ing drug commercialization(9).
       electrocatalysis  coupled  to  fl ow  pro-  analyze  the  results,  and  even  produce  reactor could be cross-exchanged with   insulin lispro. Additionally, the continuous       Challenges to Continuous Green
       cessing, it is feasible to consider a pro-  reports and presentations, all driven by a  the cold feed with a temperature driv-  process has enabled a more consistent  4. GSK (GlaxoSmithKline)  Manufacturing
       cess where organic chemicals could be  few lines of natural language “prompts.”  ing force of 10K, the utility would only   and higher-quality product.  GSK has led the integration of   The adoption of continuous green


       176                                                                  Chemical Weekly  February 18, 2025       Chemical Weekly  February 18, 2025                                                              177


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