| Literature DB >> 29386549 |
Yun-Jung Choi1, Rae Hyung Ryu2, Hye-Jin Park2, Jae-Il Lee3,4.
Abstract
Nonhuman primates are important animal models in transplantation. To prevent fatal transplantation-induced immune responses, it is necessary to accurately phenotype the monkey ABH antigens, which are the same as those in humans but (unlike in humans) are not expressed on red blood cells (RBCs). We compared the ability of two established ABO-typing methods, namely, serological testing and immunohistochemistry (IHC), and our novel polymerase chain reaction (PCR)-based assay to type 66 rhesus monkeys. The serological test assessed the ability of monkey sera to hemagglutinate human RBCs. The IHC assay measured the binding of murine anti-A and anti-B antibodies to monkey buccal mucosa cells. The whole blood-based PCR assay involved selective primers that were derived from the exon 7 sequences of A+, B+, and O+ monkeys. IHC and PCR unequivocally yielded the same types in all monkeys. Serological testing yielded inconsistent types in seven (10.6%). FACS analysis with monkey sera preabsorbed with O+ RBCs showed that the incorrect serological results related to nonspecific or xenoreactive binding of the human RBCs. Unlike previous PCR-based assay, our algorithm directly detected O+ monkeys and A and B homozygotes and heterozygotes. Given the logistical limitations of IHC, this PCR assay may be useful for typing rhesus monkeys.Entities:
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Year: 2018 PMID: 29386549 PMCID: PMC5792491 DOI: 10.1038/s41598-018-20395-0
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Primer sequences used in the PCR analyses.
| Primer | SET | Sequences |
|---|---|---|
| E7F | ||
| E7R | ||
| PA2-F | SET-1 | |
| PO2-F | ||
| CAB | ||
| PB-F | SET-2 | |
| PO3-F | ||
| CAB |
E7F, exon 7 forward; E7R, exon 7 reverse; CAB, common AB reverse primer.
Results of ABO phenotyping in 66 rhesus monkeys using serotyping, immunohistochemistry, and PCR analysis.
| ID | Serotyping | IHC staining | PCR analysis | ID | Serotyping | IHC staining | PCR analysis | ||
|---|---|---|---|---|---|---|---|---|---|
| Microscope | Plate | Microscope | Plate | ||||||
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| R153 | B | B | B | BB | |
| R021 | B | B | B | BB |
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| R022 | AB | AB | AB | AB | R155 | A | A | A | AO |
| R023 | B | B | B | BO | R156 | B | B | B | BB |
| R024 | AB | AB | AB | AB | R195 | B | B | B | BB |
| R039 | O | O | O | OO | R197 | B | B | B | BB |
| R054 | B | B | B | BO | R199 | B | B | B | BB |
| R055 | B | B | B | BB | R200 | B | B | B | BO |
| R056 | AB | AB | AB | AB | R202 | B | B | B | BB |
| R057 | AB | AB | AB | AB | R203 | AB | AB | AB | AB |
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| R205 | B | B | B | BB | |
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| R207 | B | B | B | BB | |
| R060 | B | B | B | BB | R209 | O | O | O | OO |
| R061 | O | O | O | OO | R1043 | AB | AB | AB | AB |
| R062 | A | A | A | AA | R1051 | B | B | B | BB |
| R063 | B | B | B | BB | R1079 | B | B | B | BO |
| R064 | B | B | B | BB | R1087 | B | B | B | BO |
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| R1099 | B | B | B | BB | |
| R066 | B | B | B | BB | R1105 | AB | AB | AB | AB |
| R071 | B | B | B | BO | R1109 | AB | AB | AB | AB |
| R072 | B | B | B | BB | R1121 | B | B | B | BO |
| R073 | B | B | B | BB | R1123 | B | B | B | BB |
| R075 | B | B | B | BB | R1165 | O | O | O | OO |
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| R1171 | B | B | B | BB | |
| R081 | AB | AB | AB | AB | R1187 | B | B | B | BO |
| R083 | O | O | O | OO | R1195 | B | B | B | BB |
| R085 | B | B | B | BO | R1203 | B | B | B | BB |
| R133 | B | B | B | BO | R1305 | A | A | A | AO |
| R134 | B | B | B | BB | R1365 | B | B | B | BO |
| R135 | B | B | B | BB | R1375 | AB | AB | AB | AB |
| R136 | B | B | B | BB | R1499 | A | A | A | AO |
| R137 | B | B | B | BB | R1551 | B | B | B | BO |
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| R1973 | B | B | B | BB | |
An asterisk (*) indicates inconsistency between the methods in terms of the monkey’s blood phenotype.
Figure 1FACS analysis of the 66 rhesus monkey sera before (A) and after (B) preabsorption with human O+ red blood cells (RBCs). (A) Two monkeys (asterisks; R058 and R154) showed false-positive antibody binding to human A+ and B+ RBCs. (B) After preabsorption with human O+ RBCs, such nonspecific or xenoreactive binding was eliminated and the phenotypes of these two monkeys were corrected.
Figure 2Immunohistochemical staining of buccal mucosal cells from the rhesus monkeys. Representative images are shown. The cells from A+ and B+ monkeys were recognized by FITC-labeled murine anti-A and anti-B antibodies, respectively. The cells from AB+ monkeys were recognized by both murine antibodies. The cells from the O+ monkeys did not react with either antibody. DAPI, 4′,6-diamidino-2-phenylindole; FITC, fluorescein isothiocyanate.
Figure 3PCR banding patterns for the AA, AO, BB, BO, AB, and OO blood phenotypes in rhesus monkeys. Two ABO allele-specific primer sets were generated on the basis of single nucleotide polymorphisms in exon 7 of the ABO locus. Whole blood from 66 rhesus monkeys was subjected to PCR with the primer. (A) SET-1 consisted of PA2 and PO2. (B) SET-2 consisted of PO3 and PB. The SET-1- and SET-2-based PCR algorithm successfully determines homozygosity and heterozygosity for A, B, and O. AA homozygotes are indicated by the PA2 and PO2 bands, AO heterozygotes are indicated by the PA2, PO2, and PO3 bands, BB homozygotes are indicated by the PO2 and PB bands, BO heterozygotes are indicated by all four bands, AB heterozygotes are indicated by the PA2, PO2, and PB bands, and OO homozygotes are indicated by the PA2 and PO3 bands. L, ladder; bp, base pair.