BACKGROUND:Reports of cases of bacterial infection due to transfusion of red blood cell (RBC) components (RBC-TTBI) are relatively rare. Hence, the possibility of undetectable bacterial contamination in RBCs, especially by psychrotrophic bacteria, must be clarified. STUDY DESIGN AND METHODS:We assessed nine psychrotrophic bacterial species, including those implicated in bacteremia or RBC-TTBIs. They were cultured on plates from 4 to 37°C to determine their optimal growth temperatures. We also assessed the detection capabilities of the automated culture/alarm system BACT/ALERT VIRTUO (VIRTUO) using BPA (aerobic) and BPN (anaerobic) bottles. In addition, bacteria-inoculated RBCs were incubated at 4°C for 42 days, with samples assessed weekly for bacterial growth using plate culture, VIRTUO, visual inspection, and endotoxin production. RESULTS:Two Psychrobacter species exhibited weak or no proliferation at temperatures ≥30°C in plate cultures. Three Pseudomonas species, one Psychrobacter species, and one psychrotrophic lactic acid bacteria proliferated in RBCs at 4°C, reaching 104-108 colony-forming units/mL (growth count) and 15-39,230 pg/mL (endotoxin production) by day 14. VIRTUO, operating at 36°C, failed to consistently yield reliable results for any of the tested bacterial species. Notably, visual changes in bag appearance were observed from day 21 in four species that proliferated in RBCs. DISCUSSION:Each psychrotrophic bacteria demonstrated a specific temperature preference for optimal proliferation. Standard culture tests, typically conducted at 35-37°C, often fail to detect the growth of such bacteria, suggesting they may be overlooked in the cultural analysis of suspected RBC-TTBI cases.
BACKGROUND:Macroscopic aggregates may persist after processing and/or during storage of platelet concentrates (PCs). Many blood providers and hospitals do not use PCs containing irreversible aggregates, mainly due to the lack of clear evidence for their acceptable efficacy and safety. METHODS:To clarify the acceptable level of aggregate formation, we categorized apheresis PCs in plasma into four groups (levels 0-3) according to the quantity and size of aggregates (small: ≤1 mm, medium: 2-3 mm, large: ≥4 mm), and compared the in vitro functions and characteristics of PCs between these levels up to 6 days of storage and after filtration on Day 6. The presence of microscopic aggregates that pass through a transfusion filter in PCs at each level was also investigated. RESULTS:Most parameters of PCs at levels 1-3 (n = 6 for each) were similar to those of aggregate-free PCs (level 0, n = 6) at all test points. Exceptions included higher ADP- and collagen-induced aggregation of PCs at level 3 on Days 3 and 6 (both before and after filtration), respectively, and higher collagen-induced aggregation in level 2 PCs after filtration. Two PCs at level 3 clogged the transfusion filter. The population of microscopic aggregates (5-50 μm) in PCs appeared to be very small and did not significantly differ across groups, except in level 3 PCs. DISCUSSION:The in vitro characteristics and functions of PCs at level 2 or below, which exclude PCs with >20 small aggregates, >5 medium aggregates, or any large aggregates, were acceptably equivalent to those of aggregate-free PCs.
BackgroundThe Japanese Red Cross Society measures levels of glycated albumin (GA), an indicator of mean blood glucose levels, in blood obtained from all donors.MethodsChanges in mean GA levels and the percentage of cases of prediabetes from 2009 to 2018 were investigated in approximately 4.2 million, healthy, first-time blood donors aged 16-64 years, and the seasonal characteristics of GA and the association of the GA level with body mass index (BMI) were clarified.ResultsMean GA levels decreased over the decade, with a decrease of 0.42-0.77% in male and 0.39-0.49% in female donors in the groups categorised by age. The percentage of prediabetes cases also decreased over the decade, with the largest decrease in those in their 60s. GA levels were higher in the warm season than in the cold season. In 2018, the seasonal difference in the GA level was 0.48% (95% confidence interval [CI] 0.45-0.50%) for male and 0.45% (95% CI 0.41-0.48%) for female donors. GA had a linear negative correlation with BMI in the younger generation. A trend of increasing GA with BMI was noted in those in their 30s and older.ConclusionsMean GA levels and the percentage of prediabetic cases have decreased, possibly resulting from public health promotion efforts and early diagnosis of diabetes mellitus. The present data on GA seasonal variation, showing higher levels in the warm season, and the association between BMI and GA may be useful for clinical practice.
BACKGROUND:In Japan, the risk of transfusion-transmitted hepatitis B virus (TT-HBV) infection has been reduced since 2014 by implementing individual donation nucleic acid amplification testing (ID-NAT). CASE REPORT:A male repeat blood donor in his 20s converted positive for HBV DNA and hepatitis B surface antigen. Red cell concentrate from his previous donation had been transfused into a woman in her 70s. Her serum showed HBV DNA positivity 62 days after transfusion. HBV genome sequences across two regions were shown to be identical in the donor and recipient. The HBV full-length genome sequence from the donor belonged to nonindigenous subgenotype I1. It contained double mutations A1762T and G1764A, which are associated with hepatocellular carcinoma development. The donor had no history of traveling abroad within 126 days prior to the index donation, so he was probably infected with HBV in Japan. DISCUSSION:Including this case, nine cases of TT-HBV from eight blood donations have been detected in Japan since the introduction of ID-NAT. Seven of the eight TT-HBV-related donations had HBV subgenotypes that were exotic to Japan. Exotic HBV strains spreading in Japan pose a risk of TT-HBV owing to ongoing acute HBV infection with these strains.
BACKGROUND:To identify specific human neutrophil antigen (HNA) antibodies, assays using neutrophils such as monoclonal antibody-specific immobilization of granulocyte antigens (MAIGA) are recommended. However, these assays are limited by labor-intensive neutrophil preparation and varying antigen expression levels. METHODS:We evaluated a newly developed immunocomplex capture fluorescence assay (ICFA) for identifying HNA-1 antibodies and compared it to MAIGA and LABScreen Multi (LABM), which utilizes recombinant HNA-coated Luminex beads. For ICFA, HNA-1a or HNA-1b transfected cells replaced neutrophils. Cells incubated with serum were lysed, and immune complexes were captured using five CD16 monoclonal antibody-conjugated Luminex beads. Nine antisera with known specificity and 26 samples suspected of containing HNA antibodies were analyzed by ICFA and MAIGA using neutrophils or transfected cells (ICFA-N or ICFA-T, and MAIGA-N or MAIGA-T, respectively). RESULTS:ICFA-T and MAIGA-N accurately determined the specificity of all antibodies in the nine antiserum samples. The ICFA-T detection limit was 2048-fold for anti-HNA-1a and 256-fold for anti-HNA-1b; the limits of MAIGA-T, MAIGA-N, and LABM were 32-, 4 ~ 64-, and 128-fold for anti-HNA-1a and 64-, 16 ~ 64-, and 32-fold for anti-HNA-1b, respectively. Twelve and 7 of the remaining 26 samples tested negative and positive, respectively, in both ICFA-T and MAIGA-N. Antibody specificity against HNA-1a or HNA-1b determined using ICFA-T agreed with that determined using MAIGA-N and LABM. Another seven samples tested positive in ICFA-T but negative in MAIGA-N. CONCLUSION:The novel ICFA is highly sensitive and exhibits specificity similar to MAIGA and LABM for detecting HNA-1 antibodies.
BACKGROUND:Hepatitis B core antibody (anti-HBc) screening has been implemented in many blood establishments to help prevent transmission of hepatitis B virus (HBV), including from donors with occult HBV infection (OBI). We review HBV screening algorithms across blood establishments globally and their potential effectiveness in reducing transmission risk. MATERIALS AND METHODS:A questionnaire on HBV screening and follow-up strategies was distributed to members of the International Society of Blood Transfusion working party on transfusion-transmitted infectious diseases. Screening data from 2022 were assimilated and analyzed. RESULTS:A total of 30 unique responses were received from 25 countries. Sixteen respondents screened all donations for anti-HBc, with 14 also screening all donations for HBV DNA. Anti-HBc prevalence was 0.42% in all blood donors and 1.19% in new donors in low-endemic countries; however, only 44% of respondents performed additional anti-HBc testing to exclude false reactivity. 0.68% of anti-HBc positive, HBsAg-negative donors had detectable HBV DNA. Ten respondents did universal HBV DNA screening without anti-HBc, whereas four respondents did not screen for either. Deferral strategies for anti-HBc positive donors were highly variable. One transfusion-transmission from an anti-HBc negative donor was reported. DISCUSSION:Anti-HBc screening identifies donors with OBI but also results in the unnecessary deferral of a significant number of donors with resolved HBV infection and donors with false-reactive anti-HBc results. Whilst confirmation of anti-HBc results could be improved to reduce donor deferral, transmission risks associated with anti-HBc negative OBI donors must be considered. In high-endemic areas, highly sensitive HBV DNA testing is required to identify infectious donors.
BACKGROUND AND OBJECTIVES:Blood safety measures used by blood establishments to increase blood component safety can be validated using Transfusion-Relevant Bacterial Reference Strains (TRBRS). Ultra-cold storage conditions and manual preparation of the current TRBRS may restrict their practical use. To address this issue, the ISBT Transfusion-Transmitted Infectious Diseases Working Party's Bacterial Subgroup organized an international study to validate TRBRS in a user-friendly, lyophilised format. MATERIALS AND METHODS:Two bacterial strains Klebsiella pneumoniae PEI-B-P-08 and Staphylococcus aureus PEI-B-P-63 were manufactured as lyophilised material. The lyophilised bacteria were distributed to 11 different labs worldwide to assess the robustness for enumeration, identification and determination of growth kinetics in platelet concentrates (PCs). RESULTS:Production of lyophilised TRBRS had no impact on the growth properties compared with the traditional format. The new format allows a direct low-quantity spiking of approximately 30 bacteria in PCs for transfusion-relevant experiments. In addition, the lyophilised bacteria exhibit long-term stability across a broad temperature range and can even be directly rehydrated in PCs without losing viability. Interlaboratory comparative study demonstrated the robustness of the new format as 100% of spiked PC exhibited growth. CONCLUSION:Lyophilised TRBRS provide a user-friendly material for transfusion-related studies. TRBRS in the new format have improved features that may lead to a more frequent use in the quality control of transfusion-related safety measures in the future.
The human T-cell leukemia virus type 1 (HTLV-1), a retrovirus, integrates into host DNA and causes adult T-cell leukemia/lymphoma (ATL) in some individuals. Two types of defective proviruses, Type 1 and Type 2, are often observed in ATL cells. Here, we developed a 3-plex digital PCR (dPCR) method to detect HTLV-1 proviral deletions by comparing the ratios of copy numbers quantified using specific primer-probes for the LTR, pol, and pX regions. We analyzed HTLV-1-positive asymptomatic carriers (ACs) and AC samples at high risk for developing ATL due to high proviral load (ATL high-risk (HR) ACs) using dPCR. Deletions were identified in 11.8% (4/34, all Type 1) of ACs and 33.3% (7/21, Type 1:1, Type 2:6) of ATL HR ACs. dPCR analysis revealed that in three ATL samples, all exhibited Type 1 defective characteristics, and two showed extremely low ratios in the pol region. Clonality analysis of these two samples revealed high monoclonality, indicating monoclonal expansion of ATL cells with defective proviruses. These findings demonstrate that our method effectively detects defective proviruses in both ACs and ATL, providing a valuable tool for understanding the genomic characteristics of proviruses in these conditions.
Background and ObjectivesA more restrictive blood donation criterion has been applied in Japan, with a maximum volume of whole blood (WB) donation of 400 mL, allowing twice a year for female donors and thrice a year for male donors. However, iron deficiency was as high as 20.5% among female donors prior to donation, increasing to 37.7% after blood donation. More than 20 years have passed since then, so we set out to investigate the present situation.Materials and MethodsA total of 2659 (male/female: 1496/1163) donors of 400 mL WB who gave informed consent to join the study were enrolled. Serum ferritin (sFer) of first-time/reactivated (FT/RA) donors were compared with those of repeat donors, according to gender and age; those who returned for subsequent donations during the study period were also followed up.ResultsAbout one-third of FT/RA female donors had iron deficiency, possibly reflecting its high incidence among the general population. Interestingly, although sFer levels were low among pre-menopausal FT/RA female donors, these values were not much different in repeat donors, whereas significant differences were observed between FT/RA and repeat donors among post-menopausal females and in most age groups among males. As expected, donors with a normal initial sFer (>= 26 ng/mL) recovered faster than those with a low initial sFer.ConclusionFemale donors, especially, have iron deficiency even before donation, and the rate increased compared to what was found previously. Measures to prevent iron deficiency of blood donors is required, and studies are going on in Japan.
Background and Objectives: Nucleic acid-amplification testing (NAT) is used for screening blood donations/donors for blood-borne viruses. We reviewed global viral NAT characteristics and NAT-yield confirmatory testing used by blood operators. Materials and Methods: NAT characteristics and NAT-yield confirmatory testing used during 2019 was surveyed internationally by the International Society of Blood Transfusion Working Party Transfusion-Transmitted Infectious Diseases. Reported characteristics are presented herein. Results: NAT was mainly performed under government mandate. Human immunodeficiency virus (HIV), hepatitis C virus (HCV) and hepatitis B virus (HBV) NAT was performed on all donors and donation types, while selective testing was reported for West Nile virus, hepatitis E virus (HEV), and Zika virus. Individual donation NAT was used for HIV, HCV and HBV by similar to 50% of responders, while HEV was screened in mini-pools by 83% of responders performing HEV NAT. Confirmatory testing for NAT-yield samples was generally performed by NAT on a sample from the same donation or by NAT and serology on samples from the same donation and a follow-up sample. Conclusion: In the last decade, there has been a trend towards use of smaller pool sizes or individual donation NAT. We captured characteristics of NAT internationally in 2019 and provide insights into confirmatory testing approaches used for NAT-yields, potentially benefitting blood operators seeking to implement NAT.
BACKGROUND AND OBJECTIVES:Nucleic acid amplification testing (NAT), in blood services context, is used for the detection of viral and parasite nucleic acids to reduce transfusion-transmitted infections. This project reviewed NAT for screening blood donations globally.MATERIALS AND METHODS:A survey on NAT usage, developed by the International Society of Blood Transfusion Working Party on Transfusion-transmitted Infectious Diseases (ISBT WP-TTID), was distributed through ISBT WP-TTID members. Data were analysed using descriptive statistics.RESULTS:Forty-three responses were received from 32 countries. Increased adoption of blood donation viral screening by NAT was observed over the past decade. NAT-positive donations were detected for all viruses tested in 2019 (proportion of donations positive by NAT were 0.0099% for human immunodeficiency virus [HIV], 0.0063% for hepatitis C virus [HCV], 0.0247% for hepatitis B virus [HBV], 0.0323% for hepatitis E virus [HEV], 0.0014% for West Nile virus [WNV] and 0.00005% for Zika virus [ZIKV]). Globally, over 3100 NAT-positive donations were identified as NAT yield or solely by NAT in 2019 and over 22,000 since the introduction of NAT, with HBV accounting for over half. NAT-positivity rate was higher in first-time donors for all viruses tested except WNV. During 2019, a small number of participants performed NAT for parasites (Trypanosoma cruzi, Babesia spp., Plasmodium spp.).CONCLUSION:This survey captures current use of blood donation NAT globally. There has been increased NAT usage over the last decade. It is clear that NAT contributes to improving blood transfusion safety globally; however, there is a need to overcome economic barriers for regions/countries not performing NAT.
A transfusion-transmitted hepatitis B virus (HBV) infection caused by blood only positive for anti-hepatitis B surface antigen (anti-HBs) was reported. Occult HBV infection (OBI) with sole anti-HBs among blood donors is an issue. The incidence of HBV infection among repeat blood donors was investigated with a detailed HBV infection phase, focusing on the influence of anti-HBs level. This study followed 3 435 653 donors for HBV DNA conversion over 4 years and 9 months. Infection phase was determined based on marker changes over DNA conversion. This study identified 115 hepatitis B surface antigen (HBsAg) conversions, 72 DNA-only conversions, and 15 DNA plus anti-hepatitis B core (anti-HBc) conversions among donors all negative for HBV DNA, HBsAg, and anti-HBc. Total incidence was 2.38/100 000 person-years (PY). None of these 202 new HBV infections arose in the group with anti-HBs titer >= 10 mIU/mL. In total, 30 anti-HBc-negative OBIs were identified (incidence; 0.35/100 000 PY); 7 showed typical secondary anti-HBs response, and 23 showed stable anti-HBc and anti-HBs levels at DNA conversion. The HBV infection-protective ability of anti-HBs >= 10 mIU/mL was reinforced. In addition to new infections, the blood donor population includes anti-HBc-positive- and negative OBI with immune reactions or abortive HBV infection.
Background and Objectives: In Japan, apheresis donation of plasma is allowed to a maximum of 24 times a year, and plateletpheresis are counted as two plasmapheresis donations. Diversion of the initial blood flow is conducted for all donations, and additionally, blood remaining in apheresis machine circuit is lost. Here, we aimed to investigate on the health impact of frequent apheresis donations, as measured by the serum ferritin (sFer). Materials and Methods: A total of 538 male apheresis donors and 538 age-matched whole blood (WB) donors, who gave informed consent to join the study, were enrolled. sFer were compared, according to age. Another group of 19 apheresis donors were followed during four consecutive donations. Results: About half (48%) of repeat male apheresis donors had iron deficiency (sFer < 26 ng/mL), compared with lower rates (13.9%) among male WB donors. It was evident in all age groups, except for teenagers, possibly because of the lower number of donations. Follow-up of the 19 donors for 4 months revealed a progressive decrease in sFer. Conclusion: Blood remaining in the apheresis machine circuit and diversion of the initial blood flow have been implicated in iron deficiency for many years. Taking the present results, the manufacturer of apheresis equipment was requested to improve it to allow rinseback of the remaining blood, which was achieved only for plateletpheresis. Until further improvement, plasmapheresis frequency was reduced to 12 times a year. Additional measures, such as oral supplementation of iron, need to be considered.
In Japan, 41 million blood donations have been screened for hepatitis B virus (HBV) during the past 8.4 years using individual donation nucleic acid amplification testing (ID‐NAT) and antibody to hepatitis B core antigen (anti‐HBc) screening.
Convalescent plasma therapy, which involves administering plasma from recovered coronavirus disease 2019 (COVID-19) patients to infected individuals, is being explored as a potential treatment for severe cases of COVID-19. This study aims to evaluate the efficacy and safety of convalescent plasma therapy in COVID-19 patients with moderate to severe illness. An open-label, single-arm intervention study was conducted without a control group. Plasma collected from recovered COVID-19 patients was administered to eligible participants. The primary endpoint was the proportion of patients who were placed on artificial ventilation or died within 14 days of transfusion. Secondary endpoints included clinical improvement, viral load measurements, and adverse event monitoring. A total of 59 cases were included in the study. The primary endpoint was evaluated by comparing the rate obtained in the study to an existing rate of 25%. The study also assessed clinical improvement, viral load changes, and safety endpoints through adverse event monitoring. Convalescent plasma therapy shows potential as a treatment option for COVID-19. This study aimed to provide evidence for the efficacy and safety of this therapy and may contribute to its future use in treating severe cases of COVID-19.
BACKGROUND:More than 45 cases of transfusion-transmitted hepatitis E virus infection (TT-HEV) have been reported in Japan. Therefore, in 2020, universal individual donation nucleic acid amplification testing (ID-NAT) was implemented for HEV.STUDY DESIGN AND METHODS:We characterized HEV NAT-positive blood donors. The number of new HEV infections and the asymptomatic infection rate were estimated using the HEV NAT-positive rate. HEV RNA quantitation, phylogenetic analysis, and antibody tests were performed, and the residual risk of TT-HEV was assessed based on the lookback study results.RESULTS:A total of 5,075,100 blood donations were screened with ID-NAT during the first year of implementation, among which 2804 (0.055%; males: 0.060%, females: 0.043%) were NAT-positive with regional differences. Approximately 270,000 new HEV infection cases were estimated to occur annually in Japan, with an asymptomatic infection rate of 99.9%. The median HEV RNA concentration, excluding cases below the limit of quantification, was 205 IU/mL. Among the 1113 cases where the genotype could be determined, HEV-3 and HEV-4 accounted for 98.8% (1100) and 1.2% (13), respectively. The maximum duration of HEV viremia, including the pre- and post-ID-NAT window periods, was estimated to be 88.2 days. Within the 3 years since ID-NAT implementation, no confirmed cases of breakthrough TT-HEV were observed.DISCUSSION:Multiple indigenous HEV strains are prevalent in Japan, infecting a significant number of individuals. However, since the implementation of ID-NAT, TT-HEV has been prevented due to the test's high sensitivity.