Integrating 3D Printing and Additive Manufacturing into Personalized Medicine for Pharmaceuticals: Opportunities, Limitations, and Future Perspectives by Nithin Vidiyala Pavani Sunkishala Preethi Mandati Prashanth Parupathi & Dinesh Nyavanandi

Integrating 3D Printing and Additive Manufacturing into Personalized Medicine for Pharmaceuticals: Opportunities, Limitations, and Future Perspectives by Nithin Vidiyala Pavani Sunkishala Preethi Mandati Prashanth Parupathi & Dinesh Nyavanandi

Author:Nithin Vidiyala, Pavani Sunkishala, Preethi Mandati, Prashanth Parupathi & Dinesh Nyavanandi
Format: pdf
Tags: Over the last decade, additive manufacturing (AM) has been widely investigated for developing on-demand, patient-centric, and personalized medications. Among various AM techniques, fused deposition modeling (FDM), semi-solid extrusion (SSE), inkjet printing, binder jet printing, stereolithography (SLA), and selective laser sintering (SLS) have been most widely studied for developing simple and complex pharmaceutical medications. Implementing the AM platform enables decentralized manufacturing of medications at the hospitals and clinical sites. The dose and release profiles of the dosage forms can be tailored based on patient needs, providing flexibility to the physician. In fact, streamlining the AM process into a continuous manufacturing process equipped with process analytical technology (PAT) tools will ensure the manufacturing and delivery of safe and efficacious medications to the patient population. Complex medications, such as polypills, which are complex and time-consuming to manufacture using traditional manufacturing techniques, can be printed quickly using the AM approach. The pediatric patient population can be attracted to medication by printing the dosage forms with a geometry of interest. The AM platform can be integrated with artificial intelligence (AI) and health records to accelerate drug development and tailor medications based on patient conditions. Despite the various advantages that the AM platform brings to the pharmaceutical field, a few limitations, such as scalability, material innovation, secondary processing, and regulatory evolution, need to be addressed. This review article compares the advantages and limitations of the existing AM techniques along with a note on the recent advancements and future perspectives., additive manufacturing; 3D printing; continuous manufacturing; PAT tools; patient-centric; personalized medications


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