BACKGROUNDGlobally, data on antenatal blood transfusion practices are scarce. We sought to characterize the epidemiology of antenatal transfusion in South Africa.STUDY DESIGN AND METHODSA cross‐sectional study was conducted of women who were transfused during pregnancy (>48 hr before anticipated delivery) at two hospitals in Durban and Soweto in 2014 to 2015. Medical record data on demographics, obstetric history, anemia, HIV status, and indications for blood transfusion were abstracted.RESULTSThe records on a total of 560 transfused pregnant women were evaluated; mean age was 28 years, 98% were of black African ethnicity, and 28% were HIV positive. At time of transfusion, one‐half were in the first trimester. Hemorrhage was noted in 76% of women, most of which was associated with abortion (67%) or ectopic pregnancy (27%). Most women were transfused with red blood cells (RBCs; median, 2 units); 14% of women were transfused with plasma and 2% with platelets. Median pre‐ and posttransfusion hemoglobin levels were 6.9 g/dL and 9.2 g/dL, respectively; the latter differed by hospital (8.7 g/dL vs. 9.5 g/dL; p < 0.01). Hemorrhage was associated with missing HIV status, lower gestational age, and transfusion of 3 or more RBC units (all p < 0.01). In contrast, diagnoses of anemia (Soweto only) were associated with HIV infection, later gestational age, and lower (<3 units) RBC dose (all p < 0.01).CONCLUSIONAbortion and ectopic pregnancy with associated hemorrhage were the leading indications for antenatal transfusion and were concentrated in early gestation. By contrast, anemia was associated with HIV infection and transfusion in the third trimester.
BACKGROUNDObstetric hemorrhage (OH) and access to peripartum blood transfusion remains a global health challenge. The rates of peripartum transfusion in South Africa exceed those in high‐income countries despite comparable rates of OH. We sought to evaluate factors associated with peripartum transfusion.STUDY DESIGN AND METHODSA case‐control study was conducted at four large South African hospitals. Transfused peripartum women (cases) and nontransfused controls were stratum matched 1:2 by hospital and delivery date. Data on obstetric, transfusion, and human immunodeficiency virus (HIV) history were abstracted from medical records. Blood was obtained for laboratory evaluation. We calculated unadjusted and adjusted odds ratios (ORs) for transfusion using logistic regression.RESULTSA total of 1200 transfused cases and 2434 controls were evaluated. Antepartum hemorrhage (OR, 197.95; 95% confidence interval [CI], 104.27‐375.78), hemorrhage with vaginal delivery (OR, 136.46; 95% CI, 75.87‐245.18), prenatal anemia (OR, 22.76; 95% CI, 12.34‐41.93 for prenatal hemoglobin level < 7 g/dL), and failed access to prenatal care (OR, 6.71; 95% CI, 4.32‐10.42) were the major risk factors for transfusion. Platelet (PLT) count (ORs, 4.10, 2.66, and 1.77 for ≤50 × 109, 51 × 109‐100 × 109, and 101 × 109‐150 × 109 cells/L, respectively), HIV infection (OR, 1.29; 95% CI, 1.02‐1.62), and admitting hospital (twofold variation) were also associated with transfusion. Mode of delivery, race, age category, gravidity, parity, gestational age, and birthweight were not independently associated with transfusion.CONCLUSIONMajor risk factors of peripartum transfusion in South Africa, namely, prenatal anemia and access to prenatal care, may be amenable to intervention. HIV infection and moderately low PLT count are novel risk factors that merit further investigation.
At the combined American Society for Apheresis (ASFA) Annual Meeting/World Apheresis Association (WAA) Congress in San Francisco, California, in April of 2014, the opening session highlighted the status of apheresis outside of the United States. The organizers invited physicians active in apheresis in countries not usually represented at such international gatherings to give them a forum to share their experiences, challenges, and expectations in their respective countries with regard to both donor and therapeutic apheresis. Apheresis technology is expensive as well as technically and medically demanding, and low and median income countries have different experiences to share with the rest of the world. Apheresis procedures also require resources taken for granted in the developed world, such as reliable electrical power, that can be unpredictable in parts of the developing world. On the other hand, it was obvious that there are significant disparities in access to apheresis within the same country (such as in Brazil), as well as between neighboring nations in Africa and South America. A common trend in the presentations from Brazil, Indonesia, Malaysia, Nigeria, and South Africa, was the need for more and better physicians and practitioners' training in the indications of the various apheresis modalities and patient oversight during the procedures. As ASFA and WAA continue to work together, and globalization allows for increased knowledge‐sharing, improved access to apheresis procedures performed by qualified personnel with safety and high‐quality standards will be increasingly available. J. Clin. Apheresis 30:238–246, 2015. © 2014 Wiley Periodicals, Inc.
BACKGROUNDGlobally, as in South Africa, obstetric hemorrhage (OH) remains a leading cause of maternal mortality and morbidity. Although blood transfusion is critical to OH management, the incidence and predictors of transfusion as well as their relation to human immunodeficiency virus (HIV) infection are poorly described.STUDY DESIGN AND METHODSA cross-sectional study was conducted of all peripartum patients at four major hospitals in South Africa (April to July 2012). Comprehensive clinical data were collected on patients who sustained OH and/or were transfused. Logistic regression was used to model risk factors for OH and transfusion.RESULTSA total of 15,725 peripartum women were evaluated, of whom 3969 (25.2%) were HIV positive. Overall, 387 (2.5%) women sustained OH and 438 (2.8%) received transfusions, including 213 (1.4%) women with both OH and transfusion. There was no significant difference in OH incidence between HIV-positive (2.8%) and HIV-negative (2.3%) patients (adjusted odds ratio [OR], 0.95; 95% confidence interval [CI], 0.72-1.25). In contrast, the incidence of blood transfusion was significantly higher in HIV-positive (3.7%) than in HIV-negative (2.4%) patients (adjusted OR, 1.52; 95% CI, 1.14-2.03). Other risk factors for transfusion included OH, low prenatal hemoglobin, the treating hospital, lack of prenatal care, and gestational age of not more than 34 weeks.CONCLUSIONIn the South African obstetric setting, the incidence of peripartum blood transfusion is significantly higher than in the United States and other high-income countries while OH incidence is similar. While OH and prenatal anemia are major predictors of transfusion, HIV infection is a common and independent contributing factor.
Despite numerous publications on the appropriate use of blood and blood products, few specifically consider the role of transfusion in the management of HIV. This review is a synthesis of conditions encountered in the management of HIV-infected patients where the transfusion of blood or blood products may be indicated. A consistent message emerging from the review is that the principles of transfusion medicine do not differ between HIV-negative and -positive patients. The aim of the review is to provide clinicians with a practical and succinct overview of the haematological abnormalities and clinical circumstances most commonly encountered in the HIV setting, while focusing on the rational and appropriate use of blood and blood products for HIV patients. Important ethical considerations in dealing with both the collection and transfusion blood and blood products in the HIV era have also been addressed.
BACKGROUND: Since October 2005, a total of 2,921,561 blood donations have been screened by the South African National Blood Service for hepatitis B virus (HBV) by individual-donation nucleic acid testing (ID-NAT). Over 4 years, 149 hepatitis B surface antigennegative acute-phase HBV NATpositive donations were identified (1:19,608). The lookback program identified one probable HBV transmission.STUDY DESIGN AND METHODS: The complete genomes of HBV isolated from the donor and recipient were sequenced, cloned, and analyzed phylogenetically. The HBV window period (WP) transmission risk was estimated assuming a minimum infectious dose of 3.7 HBV virions and an incidence rate correction factor of 1.34 for transient detectability of HBV DNA.RESULTS: Of 149 acute-phase HBV NAT yields, 114 (1: 25,627) were classified as pre-antibody to hepatitis B core antigen (anti-HBc) WP and 35 (1: 83,473) as post-anti-HBc WP. The acute-phase transmission risk in the HBV DNA-negative pre- and post-anti-HBc WPs (of 15.3 and 1.3 days, respectively) was estimated at 1: 40,000 and 1: 480,000, respectively. One HBV transmission (1: 2,900,000) was identified in a patient who received a transfusion from an ID-NAT-nonreactive donor in the pre-anti-HBc WP. Sequence analysis confirmed transmission of HBV Subgenotype A1 with 99.7% nucleotide homology between donor and recipient strains. The viral burden in the infectious red blood cell unit was estimated at 32 (22-43) HBV DNA copies/20 mL of plasma.CONCLUSION: We report the first known case of transfusion-transmitted HBV infection by blood screened using ID-NAT giving an observed HBV transmission rate of 0.34 per million. The estimated preacute-phase transmission risk in the ID-NAT screened donor population was 73-fold higher than the observed WP transmission rate.
In 2005, the South African National Blood Service introduced individual-donation (ID) nucleic acid test (NAT) screening for human immunodeficiency virus (HIV) RNA, hepatitis C virus (HCV) RNA, and hepatitis B virus (HBV) DNA. At the same time the use of ethnic origin to prioritize the transfusion of blood according to a hierarchy of residual risk was discontinued.ID-NAT (Ultrio on Procleix Tigris, Chiron) and serology (PRISM, Abbott) repeat test and confirmation testing algorithms were designed to enable differentiation between false-positive and true-NAT and -serology yields. After 1 year, the NAT and serology yield rates in first-time, lapsed, and repeat donors were analyzed and used to estimate the residual risk of HIV, HBV, and HCV infections by blood transfusion.The HIV, HBV, and HCV ID-NAT window phase yield rates in 732,250 blood donations were 1:45,765, 1:11,810, and 1:732,200, respectively. Seven of 16 HIV window phase donations with viral loads above 16,000 copies/mL were HIV p24 antigen enzyme-linked immunosorbent assay positive. PRISM detected anti-HIV and hepatitis B surface antigen (HBsAg) in 89.4 and 73.9% of early infections in repeat donors. The Procleix assay detected viremia in 99.7 and 95.5% of anti-HIV- and HBsAg-positive first-time donors. In these donors, the occult HBV DNA carrier rate was 1:5200. The residual transmission risk of ID-NAT HIV, HBV, and HCV window phase donations was estimated at 1:479,000, 1:61,500, and 1:21,000,000 respectively.One-year ID-NAT screening of 732,250 donations interdicted 16 HIV, 20 HBV, and 1 HCV window phase donations and 42 anti-hepatitis B core antigen-reactive infections during an early recovery or a later stage of occult HBV infection.
UNLABELLED:Since October 2005, all blood units collected in South Africa were screened individually for human immunodeficiency virus (HIV)-1, hepatitis B and C virus (HBV, HCV) genomes uncovering preseroconversion window period (WP) infections for each virus and occult HBV infections (OBIs) defined as persistent HBV DNA without detectable hepatitis B surface antigen (HBsAg). Samples identified as HBsAg-negative/DNA-positive were confirmed by combining real-time quantitative polymerase chain reaction, nested amplification, anti-HBc and anti-HBs. Amplified basic core promoter/precore, pre-S/S, and whole genome were sequenced, analyzed, and compared to 73 HBsAg+ strains. Genotype was determined by phylogenetic analysis. From 109 samples examined, 54 were classified as OBI, 14 as WP, 20 as false-positive, five as other classification, and 16 as undetermined due to lack of serological or follow-up data. OBI donors were predominantly males (67%), median age 31 years, black (54%), with normal alanine aminotransferase levels. Viral load ranged between unquantifiable and 518 IU/mL (median 5 IU/mL). Genotype A1 was more frequent (23 strains) than genotype D (seven strains). Genotype A1 strains were little mutated. In the major hydrophilic region, 56.5% strains were wild type or with few amino acid substitutions. Most important, all 13 full genome sequences presented 1 to 7 mutations known to or assumed to negatively impact viral replication. In particular, 6/13 sequences had a stop codon in the HBx gene translated into deletion of 117 or 19-25 C-terminus amino acids not found in 15 HBeAg+ HBsAg+ strains. One WP sequence with an HBx stop codon suggested infectivity. CONCLUSION:Genotype A1 OBIs are different from genotype A2 and D OBIs in that there is little evidence of immune pressure as a major factor involved in OBI genesis. Limited replication appears mostly related to genetic viral defects.
BACKGROUND: In South Africa, human immunodeficiency virus-1 (HIV-1) infection correlates with herpes simplex virus-2 (HSV-2; genital herpes) seropositivity in genitourinary disease clinic attendees. HSV-2 infection may be a marker for risk behavior and/or directly facilitate HIV-1 transmission. The rate of HSV-2 infection in HIV-infected South African and US blood donations was assessed, and whether the infections were correlated in donors screened and found negative for high-risk behavior by predonation interview was questioned.STUDY DESIGN AND METHODS: A total of 625 South African and 393 US HIV-1-infected repository samples previously characterized for longstanding or recent HIV-1 infection were tested with two commercially available HSV-2-specific assays. The prevalence of HSV-2 antibodies in South Africa was further assessed in 106 HIV-1-infected and 106 HIV-1-negative donors matched for sex, race, and donation history, as well as 200 random HIV-1-negative donors.RESULTS: A total of 52.2 percent of US and 69.3 percent of South African HIV-1-infected donations were HSV-2-seropositive. Age, race, and sex were independent risk factors for HSV-2 antibody prevalence in HIV-1-infected South African donors, who were more likely to be HSV-2 antibody-reactive than random HIV-1-negative donors (72.6% vs. 8.5%: odds ratio [OR], 28.6; 95% confidence interval [CI], 14.5-55) or matched donors (71.6% vs. 19.6%: OR, 10.3; 95% CI, 5.4-19.8). HIV-1 infection and HSV-2 seropositivity correlated in white and black populations when analyzed by age group.CONCLUSIONS: HIV-1 infection correlates strongly with HSV-2 seropositivity in US and South African blood donors. Our data describe the characteristics of HSV-2 antibody testing as a surrogate marker for HIV-1 infection and support a facilitating role for HSV-2 infection in HIV-1 transmission.
Background/Aims: Nucleic acid testing (NAT) for hepatitis B virus (HBV) DNA in blood donations identified occult HBV infection (OBI) as a potential threat to blood safety.Methods: A collaborative study was undertaken to explore the molecular basis of OBIs prevalent in Europe in relation to clinical and serological data.Results:Ninety-one percent of 77 donor samples of European origin HBV DNA positive but HBV surface antigen (HBsAg) negative were confirmed. Viral load ranged between unquantifiable and 5640 IU/mL (median 25 IU/ml,). Fifty-two strains were genotyped (14 HBVA2 and 38 HBVD)). Compared to HBsAg+ samples, genotype D was significantly more frequent than genotype A2 in OBIs from Poland or Italy (P < 0.04). Amino acid substitutions were concentrated in the immunologically active parts of the Pre-S/S proteins (P < 0.0001) affecting both cellular CD8 T-cell epitopes and B-cell neutralizing Major Hydrophilic Region epitopes. Substitutions were more frequent in OBIs than in HBsAg+ strains of both genotype D (P < 0.001) and A2 (P < 0.01), in OBIs of genotype D than A2 in the 'a' region (P < 0.001) but not cellular epitopes, and in anti-HBs+ than anti-HBs- OBIs (P < 0.001).Conclusions: Results support the hypothesis that humoral and cellular immune pressure on the HBV envelope proteins are major mechanisms generating OBI. (C) 2008 European Association for the Study of the Liver. Published by Elsevier B.V. All rights reserved.
Extracted from text ... Leucocyte depletion of blood components - guidelines of the Blood Transfusion Services of South Africa Arthur Bird, Robert Crookes Leucocytes in blood components are responsible for a number of adverse effects associated with blood transfusion. In many instances the pathogenesis has not been elucidated precisely, but it is likely that it is immunologically mediated. Potential mechanisms include clonal deletion or anergy, induction of suppressor cells, production of anti-idiotypic antibody, suppression of natural killer (NK) cell activity and several others.1 As a consequence a number of clinicians prefer to use leucocyte-depleted components. The clinical indications advanced for depleting blood components of leucocytes (leucodepletion) are as follows: (i) avoidance of febrile non-haemolytic transfusion reactions (FNHTRs); (ii) reduction ..
Vox SanguinisVolume 88, Issue 3 p. 206-206 The rights of blood recipients should supersede any asserted rights of blood donors: the right to donate blood in South Africa A. D. P. Heyns, Corresponding Author A. D. P. Heyns South African National Blood Service, Private Bag, Weltevreden Park, South AfricaAnthon Heyns South African National Blood Service Private Bag X14 Weltevreden Park 1715 South Africa E-mail: [email protected]Search for more papers by this authorR. Crookes, R. Crookes South African National Blood Service, Private Bag, Weltevreden Park, South AfricaSearch for more papers by this author A. D. P. Heyns, Corresponding Author A. D. P. Heyns South African National Blood Service, Private Bag, Weltevreden Park, South AfricaAnthon Heyns South African National Blood Service Private Bag X14 Weltevreden Park 1715 South Africa E-mail: [email protected]Search for more papers by this authorR. Crookes, R. Crookes South African National Blood Service, Private Bag, Weltevreden Park, South AfricaSearch for more papers by this author First published: 18 March 2005 https://doi.org/10.1111/j.1423-0410.2005.00616.xCitations: 1Read the full textAboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onFacebookTwitterLinkedInRedditWechat No abstract is available for this article.Citing Literature Volume88, Issue3April 2005Pages 206-206 RelatedInformation
Recently, it was demonstrated that one allele (825T) of the gene encoding the G protein beta3 subunit (GNB3) is associated with hypertension in Germans. This study investigates a possible association with obesity in young male Germans, Chinese, and black South Africans with low, intermediate, and high 825T allele frequencies, respectively. In each of these three distinct cohorts, the 825T allele frequency was increased significantly in overweight (body mass index [BMI] > or =25 kg/m2) and obese individuals (BMI >27 kg/m2) compared to those with normal weight. The 825T allele frequencies in these three BMI groups were, respectively, 29.5, 39.3, and 47.7% in Germans, 46.8, 53.9, and 58.6% in Chinese, and 83.1, 87.7, and 90.9% in South Africans. In each of these three distinct groups, the 825T allele was significantly associated with obesity with odds ratios between 2 and 3. More urban than rural black Africans were overweight despite similar 825T allele frequencies in both populations, which underscores the role of both genetic and environmental factors. BP values in young male whites increased significantly with increasing BMI values but were independent of the C825T polymorphism, suggesting that hypertension associated with the 825T allele could be a consequence of obesity. Genotyping of 5254 individuals from 55 native population samples from Africa, the Americas, Europe, Asia, Australia, and New Guinea demonstrated highest 825T allele frequencies in black Africans (82%) and intermediate values in east Asians (47%). It is anticipated that high frequencies of the 825T allele in Africans and Asians may contribute to an obesity and hypertension epidemic if Westernization of lifestyles continues.