TY - JOUR
T1 - Analysis of the Association of Dialyzer Reuse Practices and Patient Outcomes
AU - Held, Philip J.
AU - Wolfe, Robert A.
AU - Gaylin, Daniel S.
AU - Port, Friedrich K.
AU - Levin, Nathan W.
AU - Turenne, Marc N.
N1 - Funding Information:
From the Renal Research Program, Urban Institute, Washington, DC; the Departments of Biostatistics, Public Health School, and the Departments of Medicine and Epidemiology, University of Michigan, Ann Arbor, MI; and the Division of Nephrology and Hypertension, Beth Israel Medical Center, New York, NY. * Present address: Departments of Medicine and Health Services Management and Policy, University of Michigan, Ann Arbor, Ml. t Present address: Woodrow Wilson School, Princeton University, Princeton, NJ. Received September 13, 1993; accepted in revisedform December 14, 1993. Supported by a cooperative agreement from the US Department of Health and Human Services, Health Care Financing Administration, Office of Research No. 17-C-90085/ 3-01. The opinions and conclusions are those of the authors and do not reflect the views of the Urban Institute, the University of Michigan, or their sponsors, including the US Government. Address reprint requests to Philip J. Held. PhD, University of Michigan, 315 W Huron St, Suite 240, Ann Arbor, MI 48103. © 1994 by the National Kidney Foundation, Inc. 0272-6386/94/2305-0009$3.00/0
PY - 1994
Y1 - 1994
N2 - This historic prospective study assessed the relationship between dialyzer reuse practices and hemodialysis patient mortality through 1 year of follow-up. Medicare patient demographic and survival data were combined with dialyzer reuse data from the Centers for Disease Control and Prevention’s annual survey of dialysis-related diseases. Data were analyzed for the US Medicare hemodialysis population of never transplanted patients prevalent on January 1, 1989, and January 1, 1990, who were treated in freestanding dialysis units that used primarily conventional (not highflux) dialyzers. Time to mortality, or transplant, and other censoring on December 31st of each year was regressed with proportional hazards models on patient, dialysis unit, and reuse measures. Age-, race-, and diagnosis-standardized mortality ratios for dialysis units were also regressed with weighted least squares techniques against dialysis unit and reuse measures. The results showed that patients treated in dialysis units that disinfected dialyzers with a peracetic acid, hydrogen peroxide, acetic acid mixture, or glutaraldehyde experienced higher mortality than patients treated in units that used formalin or in units that did not reuse dialyzers. The relative risk of mortality, compared with patients treated in non reuse dialysis units, was 1.17 (P = 0.010) for glutaraldehyde and 1.13 (P < 0.001) for the peracetic acid mixture. The relative risk for formalin compared with the reference group of non reuse was 1.06 (P = 0.088). With adjustment for several patient and dialysis unit characteristics, dialyzer reuse with certain germicides was associated with a significantly elevated mortality risk. This elevated risk, the etiology of which is currently not known, may represent a large number of potentially avoidable deaths per year. Only a large, nationally based analysis of this type has sufficient sample size to detect mortality risks such as these.
AB - This historic prospective study assessed the relationship between dialyzer reuse practices and hemodialysis patient mortality through 1 year of follow-up. Medicare patient demographic and survival data were combined with dialyzer reuse data from the Centers for Disease Control and Prevention’s annual survey of dialysis-related diseases. Data were analyzed for the US Medicare hemodialysis population of never transplanted patients prevalent on January 1, 1989, and January 1, 1990, who were treated in freestanding dialysis units that used primarily conventional (not highflux) dialyzers. Time to mortality, or transplant, and other censoring on December 31st of each year was regressed with proportional hazards models on patient, dialysis unit, and reuse measures. Age-, race-, and diagnosis-standardized mortality ratios for dialysis units were also regressed with weighted least squares techniques against dialysis unit and reuse measures. The results showed that patients treated in dialysis units that disinfected dialyzers with a peracetic acid, hydrogen peroxide, acetic acid mixture, or glutaraldehyde experienced higher mortality than patients treated in units that used formalin or in units that did not reuse dialyzers. The relative risk of mortality, compared with patients treated in non reuse dialysis units, was 1.17 (P = 0.010) for glutaraldehyde and 1.13 (P < 0.001) for the peracetic acid mixture. The relative risk for formalin compared with the reference group of non reuse was 1.06 (P = 0.088). With adjustment for several patient and dialysis unit characteristics, dialyzer reuse with certain germicides was associated with a significantly elevated mortality risk. This elevated risk, the etiology of which is currently not known, may represent a large number of potentially avoidable deaths per year. Only a large, nationally based analysis of this type has sufficient sample size to detect mortality risks such as these.
KW - Dialyzer reuse
KW - automated reprocessing of dialyzers
KW - dialyzer reprocessing
KW - end-stage renal disease
KW - formaldehyde
KW - formalin
KW - germicide
KW - glutaraldehyde
KW - hemodialysis
KW - high-flux dialysis
KW - manual reprocessing of dialyzers
KW - peracetic acid mixture
KW - proportional hazards
KW - standardized mortality ratio
UR - https://www.scopus.com/pages/publications/0028198411
U2 - 10.1016/S0272-6386(12)70280-9
DO - 10.1016/S0272-6386(12)70280-9
M3 - Article
C2 - 8172212
AN - SCOPUS:0028198411
SN - 0272-6386
VL - 23
SP - 692
EP - 708
JO - American Journal of Kidney Diseases
JF - American Journal of Kidney Diseases
IS - 5
ER -