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The medicines development workforce has grown to be a multidisciplinary, interprofessional global body of broadly qualified graduate professionals working with and around the biopharmaceutical industry. To satisfy their demands of fitness for work, they must meet the changes and challenges of a rapidly developing technological and competitive field. This has generated a need for a harmonised, mutually recognised vocational programme of competencies and capabilities, based on an academic foundation, which for the adult learners in medicines development goes above and beyond their original medical and scientific specialisms. This review proposes that professional competencies and capabilities developed in pharmaceutical medicine, a specialty concerned with the discovery, development, evaluation, registration, monitoring, and commercialisation of medicines and medical products, provides a comprehensive solution for the educational needs in medicines development. To justify this proposition, it summarises the 60-year evolution of education and training in pharmaceutical medicine. It demonstrates how expanding the pharmaceutical medicine syllabus has aligned it with almost every aspect of the development process of modern medicines. This perspective proposes a vision for the future where pharmaceutical medicine professional competencies and capabilities fill the educational void for the medicines development workforce. This is suggested to pave the career path that supports the professional identity of physicians, scientists, and other professionals working to develop medicines.
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http://dx.doi.org/10.1007/s40290-025-00550-5 | DOI Listing |
BMC Plant Biol
September 2025
Department of Botany and Microbiology, Faculty of Science, South Valley University, Qena, 83523, Egypt.
Background: Apples are important for human nutrition because these provide vital nutrients, including vitamins and minerals, that are needed for a balanced diet. A suitable environment for the growth and survival of various microorganisms is also provided by multiple nutrients, such as carbohydrates, minerals, vitamins, and amino acids. Penicillium spp.
View Article and Find Full Text PDFJ Cancer Res Clin Oncol
September 2025
Inner Mongolia Medical University Affiliated Hospital, Hohhot, 010030, Inner Mongolia, China.
Purpose: Lung cancer is currently the most common malignant tumor worldwide and one of the leading causes of cancer-related deaths, posing a serious threat to human health. MicroRNAs (miRNAs) are a class of endogenous non-coding small RNA molecules that regulate gene expression and are involved in various biological processes associated with lung cancer. Understanding the mechanisms of lung carcinogenesis and detecting disease biomarkers may enable early diagnosis of lung cancer.
View Article and Find Full Text PDFJ Anesth
September 2025
Community Medicine Education Promotion Office, Faculty of Medicine, Kagawa University Ikenobe, 1750-1, Miki-Cho, Kagawa, 761-0793, Japan.
Generative artificial intelligence (AI) is rapidly transforming perioperative medicine, particularly anesthesiology, by enabling novel applications, such as real-time data synthesis, individualized risk prediction, and automated documentation. These capabilities enhance clinical decision-making, patient communication, and workflow efficiency in the operating room. In education, generative AI offers immersive simulations and tailored learning experiences that improve both technical skills and professional judgment.
View Article and Find Full Text PDFPharm Res
September 2025
Mechanical and Aerospace Engineering Department, University of Texas at Arlington, 500 W First St, Rm 211, Arlington, TX, 76019, USA.
Objective: A fundamental understanding of drug diffusion and binding processes is critical for the design and optimization of a wide variety of drug delivery devices. Most of the past literature assume binding to occur uniformly throughout the tissue, or, at best, in specific layers of a multilayer tissue. However, in many realistic scenarios, such as in cancer-targeting drugs, drug binding occurs in discrete irregularly shaped regions.
View Article and Find Full Text PDFNat Nanotechnol
September 2025
Department of Bioengineering, Rice University, Houston, TX, USA.
Maintaining safe and potent drug levels in vivo is challenging. Multidomain peptides assemble into supramolecular hydrogels with a well-defined, highly porous nanostructure that makes them attractive for drug delivery. However, their ability to extend release is typically limited by rapid drug diffusion.
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