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D L Kelley

Publications and source records attributed to D L Kelley.

14 recordsLinked to original sources

The utility of < or =3-day-old whole-blood platelets in reducing the incidence of febrile nonhemolytic transfusion reactions.

BACKGROUND: Febrile nonhemolytic transfusion reactions (FNHTRs) to platelet transfusions have been linked to the presence of cytokines in supernatant plasma. Cytokine concentration is directly related to WBC content and storage time. This study evaluated the effect of limiting the storage time of random-donor platelet concentrates on the FNHTR rate. STUDY DESIGN AND METHODS: FNHTR rates were calculated retrospectively for single-donor apheresis platelet (SDP) and pooled random-donor platelet (PP) transfusions given during three consecutive 5-month study periods (November 1995 to February 1997) to patients on a single hematology/oncology/bone marrow transplant unit. Transfusion practice policies were: Baseline Period, SDPs preferred; Study Period A, PPs preferred; and Study Period B, < or =3-day-old PPs preferred. FNHTR rates were calculated from physicians' interpretations of reported reactions and the total number of SDP and PP transfusions in each period. SDPs were collected on two cell separators. All platelet components were filtered at issue in the laboratory by WBC-reduction filters. RESULTS: FNHTR rates for PP transfusions were: baseline, 11.1 percent (3/27); Study Period A, 4.6 percent (22/481); and Study Period B, 1.1 percent (3/282). The rates for SDP transfusions were 0. 15 percent (1/650), 0.75 percent (2/267), and 0.36 percent (1/273), respectively. The FNHTR rate for < or =3-day-old PPs was significantly less than the rate for older PPs (p = 0.0086 for Study Period A vs. Study Period B), and was not significantly different than that for SDPs (p = 0.33 for PPs vs. SDPs in Study Period B). CONCLUSION: Limiting transfusion of PPs to those stored </=3 days is an effective strategy in reducing the rate of FNHTR and results in an FNHTR rate comparable to that seen with SDPs.

Blood Platelets↗

High-yield platelet concentrates attainable by continuous quality improvement reduce platelet transfusion cost and donor exposure.

BACKGROUND: Donor exposure risk and cost in platelet transfusion practice can be limited by increasing the recovery of platelets from donor units. STUDY DESIGN AND METHODS: This study presents results of continuous quality improvement efforts in platelet production and compares the in vivo therapeutic efficacy of currently produced platelet concentrates (PCs) with that of apheresis platelets. Production quality improvement measures included optimization of instrument performance (rotor speed trials), process (massaging whole-blood units, using cup liners, limiting spin-expression time, and refining plasma expression technique), and staff (intensive training with observation and ongoing quality control data feedback). Corrected count increments and increments per kg were calculated for transfusions of 4 pooled PCs and apheresis platelets over a 30-day period. RESULTS: The mean number of platelets per PC increased from 5.5 x 10(10) in 1975 to 9.69 x 10(10) in 1994. The mean platelet dose was 3.78 x 10(11) for 4 PCs and 4.17 x 10(11) for apheresis platelets. A total of 34 pooled PCs and 17 apheresis platelets was transfused to 21 patients. The mean increment, the increment per kg, and the corrected count increment were, respectively, 31 x 10(3) per microL, 4.8 x 10(2) per microL, and 14,700 for 4 PCs and 35.4 x 10(3) per microL, 5.4 x 10(2) per microL, and 14,700 for apheresis platelets. Differences were not significant. CONCLUSION: Therapeutic efficacy comparable to that of apheresis platelets can be obtained with 4 high-yield PCs.

Blood Donors↗