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[Anesthesiology]

H Schwilden1

  • 1Friedrich-Alexander-Universität Erlangen-Nürnberg, Klinik für Anästhesiologie.

Arzneimittel-Forschung
|February 7, 1998
PubMed
Summary
This summary is machine-generated.

Anesthesia-related deaths have significantly decreased due to advances in drug development and monitoring devices. Future pharmaceutical advancements will integrate drug compounds with delivery devices, requiring pharmacists to become microsystems engineers.

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Area of Science:

  • Anesthesiology and Pharmaceutical Sciences
  • Medical Device Engineering

Context:

  • Anesthesia-related mortality has been substantially reduced over the last three decades.
  • Improvements stem from parallel advancements in pharmaceutical drug development and sophisticated monitoring technologies.

Purpose:

  • To highlight the evolving landscape of anesthesiology, driven by drug and device innovation.
  • To underscore the increasing interdependence of pharmaceutical compounds and delivery systems.
  • To address the academic challenge of incompletely documented therapeutic success in anesthesia.

Summary:

  • Modern anesthetics, with nearly 80% developed in the past 30 years, necessitate continuous delivery devices.
  • This integration shifts the definition of 'pharmaceutical' from compounds alone to a compound-device combination.

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  • The role of the pharmacist is evolving towards that of a high-tech microsystems engineer.
  • Impact:

    • Enhanced drug controllability and delivery precision in anesthesia.
    • Potential for improved therapeutic outcomes through better-defined treatment goals.
    • Redefinition of pharmaceutical practice and education to encompass device engineering.