Search bioRxiv⌕ Search

Biology subjects

Kusi, K. A.

Publications and source records attributed to Kusi, K. A..

2 recordsLinked to original sources

Mosquito bites and stages specific antibody responses against Plasmodium falciparum in southern Ghana

BackgroundThe human host elicits specific immune responses after exposure to various life stages of the malaria parasite as well as components of mosquito saliva injected into the host during a mosquito bite. This study describes differences in IgG responses against antigens derived from the sporozoite (PfCSP), asexual stage parasite (PfEBA175) and the gametocyte (Pfs230) in addition to an Anopheles gambiae salivary gland antigen (gSG6-P1) in two communities in Ghana with similar blood stage malaria parasite prevalence. MethodologyThis study used archived plasma samples collected from an earlier cross-sectional study that enrolled volunteers aged from 6 months to 70 years from Simiw, peri-urban community (N=347) and Obom, rural community (N=291). An archived thick and thin blood smear for microscopy was used for the estimation of Plasmodium parasite density and species and DNA extraction from blood spots and P. falciparum confirmation was performed using PCR. This study used the stored plasma samples to determine IgG antibody levels to Plasmodium falciparum and Anopheles salivary antigens using indirect ELISA. ResultsIndividuals from Simiw had significantly higher levels of IgG against mosquito gSG6-P1 (median (95%CI)) (2.590 (2.452-2.783) ng/mL) compared to those from Obom (2.119 (1.957-2.345) ng/mL), p<0.0001. Both IgG responses against Pfs230proC (p=0.0006), and PfCSP (p=0.002) were significantly lower in volunteers from Simiw compared to the participants from Obom. The seroprevalence of PfEBA-175.5R (p=0.8613), gSG6-P1 (p=0.0704), PfCSP (p=0.7798) IgG were all similar in Obom and Simiw. However, Pfs230 seroprevalence was significantly higher at Obom compared to Simiw (p=0.0006). Spearman correlation analysis showed no significant association between IgG responses against gSG6-P1, PfCSP, Pfs230proC and PfEBA-175.5R and parasite density at both Obom and Simiw (p>0.05). ConclusionIn conclusion, malaria transmission dynamics is highly complex. The similar malaria transmission intensity identified in the two communities resulted from a different combination of vector, environmental and host factors. With one community likely having a higher prevalence of uninfected mosquitoes and the other a larger reservoir of gametocyte carriers.

immunology↗

Blood donor variability is a modulatory factor for P. falciparum invasion phenotyping assays

Human erythrocytes are indispensable for Plasmodium falciparum development. Unlike other eukaryotic cells, there is no existing erythroid cell line capable of supporting long-term P. falciparum in vitro experiments. Consequently, invasion phenotyping experiments rely on erythrocytes of different backgrounds. However, the contribution of the erythrocytes variation in influencing invasion rates remains unknown, which presents a challenge for conducting large-scale comparative studies. Here, we used erythrocytes of different blood groups harboring different hemoglobin genotypes to assess the relative contribution of blood donor variability in P. falciparum invasion phenotyping assays. For each donor, we investigated the relationship between parasite invasion phenotypes and erythrocyte phenotypic characteristics, including; the expression levels of surface receptors (e.g. the human glycophorins A and C, the complement receptor 1 and decay accelerating factor), blood groups (e.g. ABO/Rh system), and hemoglobin genotypes (e.g. AA, AS and AC). Across all donors, there were significant differences in invasion efficiency following treatment with either neuraminidase, trypsin or chymotrypsin relative to the control erythrocytes. Primarily, we showed that the levels of key erythrocyte surface receptors and their sensitivity to enzyme treatment, significantly differed across donors. However, invasion efficiency correlated neither with susceptibility to enzyme treatment nor with the levels of the selected erythrocyte surface receptors. Upon further analysis, we found no relationship between P. falciparum invasion phenotype and blood group or hemoglobin genotype. ImportanceAssays to decipher P. falciparum invasion phenotypes are of great importance in the quest for an efficient malaria vaccine. Malaria associated mortality is mainly attributed to the blood stage of the parasites life cycle, a major focus of vaccine development strategies. Further, testing and validating blood stage vaccines necessitates conducting large-scale studies in endemic countries. However, comparing results from such studies is challenged by the lack of standard assays. As human erythrocytes play a pivotal role in P. falciparum invasion assays, the need to investigate the effect of blood donor variability in the outcome of such assays is apparent. The significance of our study is in reporting the absence of relationship between P. falciparum invasion efficiency and commonly shared erythrocyte features across different erythrocyte donors, therefore emphasizing the need to consider erythrocyte donor uniformity and to anticipate challenges associated to blood donor variability in early stages of large-scale study design.

microbiology↗