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Biomedical subjects

H N Godwin

Publications and source records attributed to H N Godwin.

7 recordsLinked to original sources

FDA drug classification system.

The purpose and use of the FDA's classification system for new drug products are described. Investigational new drug applications (INDs) and new drug applications (NDAs) are submitted to the FDA's Center for Drug Evaluation and Research. To establish the priority of the product in the review process, expert reviewers classify each product according to chemical type and therapeutic potential. Drug products that receive a high therapeutic rating (e.g., 1AA or 1A) are reviewed for approval more quickly than drugs that receive a lower therapeutic rating (e.g., 1B or 1C). Because this system is the only national therapeutic rating system for drug products, it has been used in legislation, in clinical evaluation of new drug products as they are approved, and in formulary decisions. However, caution is needed because the therapeutic rating assigned at the time of the product's approval may not reflect its importance relative to all agents available at a later date. The FDA classification system was designed to guide new drug products through the application process and should be used only with caution for other purposes.

Classification

Harvey A. K. Whitney Lecture. To a new beginning from converging paths.

The implementation of the pharmaceutical care concept is discussed. Current activities of professional pharmacy organizations are laying the groundwork for the new emphasis on patient outcomes, which is seen in the mission statements of the American Pharmaceutical Association (APhA) and the Joint Commission of Pharmacy Practitioners (JCPP). APhA is revalidating its standards of practice; the American Association of Colleges of Pharmacy (AACP) has formed a Commission to Implement Change in Pharmaceutical Education; the American Council on Pharmaceutical Education (ACPE) is revising its standards to be consistent with entry-level practitioners' ability to provide pharmaceutical care and seeking ways in which pharmacists currently practicing in all sites can upgrade their skills. These groups are called on to implement pharmaceutical care: To make known the "value-added services" encompassed in pharmaceutical care, JCPP should market to the public its concept of pharmacists' mission. APhA should analyze pharmaceutical services currently provided and promote postgraduate training programs in pharmaceutical care. ACPE must focus on ways pharmacists can achieve the competencies required for pharmaceutical care, and AACP must ensure that academic programs are consistent with the needed competencies. ASHP should hold a national conference on implementation of pharmaceutical care, create a commission for this purpose, direct more effort at pharmacists practicing in nonhospital settings, and accelerate its clinical skills development program. Employers should put less emphasis on "clinical" designations and Pharm.D. degrees and more on the ability to provide pharmaceutical care. Implementation of pharmaceutical care is imperative.

Education, Pharmacy, Continuing

Accuracy and time requirements of a bar-code inventory system for controlled substances.

The effect of a bar-code system on personnel time requirements and data-entry accuracy in an existing automated controlled substances inventory system was determined. In the previous system, technicians used a keyboard and alphanumeric codes to enter into the computer data about the physical transfer of controlled substances among hospital areas. A system for barcode data entry was adapted for use with the existing procedure. After learning to use the bar-code system, four experienced technicians entered data by the keyboard method for eight days and the bar-code method for eight days during a 32-day study period. The amount of time required to enter all transactions and the accuracy of data entry were measured. Mean data-entry times for the keyboard and bar-code methods were not significantly different, most likely because of the greater number of manipulations needed for bar-code data entry. The mean percentage error associated with the bar-code method (0.79%) was significantly less than the error associated with the keyboard method (1.53%). For this particular computer system in which bar-code data entry was adapted to existing procedures, use of bar codes to enter controlled substances inventory data was not substantially faster but was more accurate than a traditional key-board data-entry method.

Drug and Narcotic Control

Comparison of videocassette and personal instruction methods for training pharmacy personnel in aseptic technique.

A videocassette self-instruction method of aseptic-technique training was compared with a one-on-one instructor-trainee method to determine the effectiveness and cost of each method. Pharmacy department personnel and pharmacy students with no previous training in aseptic technique were randomly assigned to receive either personal or videocassette instruction. The trainees completed an identical set of practice activities. Three measures were used to determine competency in aseptic technique: written testing on information presented, direct observation monitoring of trainees' technique in preparing broth admixtures, and sterility testing of end products. A total of 28 individuals participated in the study, 14 in each group. Trainees in the group receiving personal instruction had significantly higher overall test scores than did trainees receiving videocassette instruction. Trainees receiving videocassette instruction had more difficulty in aseptic manipulation of needles, syringes, vials, ampuls, bottles, and bags; in properly cleaning the laminar-airflow hood; and in inspecting the prepared admixtures. However, no broth admixture in either group showed evidence of microbial growth. The personal instruction method was more than two and one-half times as expensive as the videocassette method. A combination of videocassette instruction in aseptic technique and instructor intervention during the training process should result in a cost-effective training method.

Antisepsis

Pharmacy and therapeutics committee review of the parenteral cephalosporins.

The process by which a 530-bed university hospital reduced, from three to one, the number of parenteral cephalosporins in its formulary is discussed. In January 1975, cephapirin sodium was added to the formulary which already included cefazolin sodium and cephalothin sodium. Nine months later, the pharmacy and therapeutics committee decided to delete cephapirin and cephalothin from the formulary. The pharmacy department had supplied background information to the committee, and infectious disease specialists advised the committee. The decision was ratified by the executive committee of the medical staff. The rationale for the decision and its implementation, including staff communications, are discussed.

Cephalosporins

Unit dose innovations.

Four innovations in a unit dose drug distribution system are described. The innovations involve prefilling oral syringes, distribution of refrigerated doses, pharmacist verification of nurses' transcriptions of medication orders, and pharmacy preparation of dose administration schedules.

Drug Administration Schedule