The induction and expression of IgA anti-DNP antibodies in rat bile and secretions.

@article{Montgomery1981TheIA,
  title={The induction and expression of IgA anti-DNP antibodies in rat bile and secretions.},
  author={Paul C. Montgomery and I M Lema{\^i}tre-Coelho and Jean Pierrre Vaerman},
  journal={Scandinavian journal of immunology},
  year={1981},
  volume={13 6},
  pages={587-95}
}
Pregnant rats were immunized with dinitrophenylated type III-pneumococcal vaccine by the intravenous, gastric, or intramammary routes. Anti-DNP antibody responses in the IgA, IgG and IgM isotypes were measured in serum, secretions and bile. Gastric intubation was most effective at eliciting IgA antibody responses in bile and secretions, whereas the other routes were more effective at inducing IgG responses in serum and bile. IgM antibody responses were infrequent and were found in fluids most… CONTINUE READING

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Gastric intubation was most effective at eliciting IgA antibody responses in bile and secretions , whereas the other routes were more effective at inducing IgG responses in serum and bile .
The induction and expression of IgA anti - DNP antibodies in rat bile and secretions .
After gastric stimulation , the appearance of IgA antibodies with identical spectral components in secretions and bile favours the concept that IgA precursor cells with identical clonotype potential migrate from the gastrointestinal area to secretory sites .
Isoelectric focusing studies of IgA antibodies appearing in secretions and bile revealed that the gastric route consistently elicited antibody spectrotypes with shared components .
Gastric intubation was most effective at eliciting IgA antibody responses in bile and secretions , whereas the other routes were more effective at inducing IgG responses in serum and bile .
Anti - DNP antibody responses in the IgA , IgG and IgM isotypes were measured in serum , secretions and bile .
Gastric intubation was most effective at eliciting IgA antibody responses in bile and secretions , whereas the other routes were more effective at inducing IgG responses in serum and bile .
The induction and expression of IgA anti - DNP antibodies in rat bile and secretions .
After gastric stimulation , the appearance of IgA antibodies with identical spectral components in secretions and bile favours the concept that IgA precursor cells with identical clonotype potential migrate from the gastrointestinal area to secretory sites .
Isoelectric focusing studies of IgA antibodies appearing in secretions and bile revealed that the gastric route consistently elicited antibody spectrotypes with shared components .
Gastric intubation was most effective at eliciting IgA antibody responses in bile and secretions , whereas the other routes were more effective at inducing IgG responses in serum and bile .
Anti - DNP antibody responses in the IgA , IgG and IgM isotypes were measured in serum , secretions and bile .
Anti - DNP antibody responses in the IgA , IgG and IgM isotypes were measured in serum , secretions and bile .
The induction and expression of IgA anti - DNP antibodies in rat bile and secretions .
Gastric intubation was most effective at eliciting IgA antibody responses in bile and secretions , whereas the other routes were more effective at inducing IgG responses in serum and bile .
Gastric intubation was most effective at eliciting IgA antibody responses in bile and secretions , whereas the other routes were more effective at inducing IgG responses in serum and bile .
Isoelectric focusing studies of IgA antibodies appearing in secretions and bile revealed that the gastric route consistently elicited antibody spectrotypes with shared components .
Anti - DNP antibody responses in the IgA , IgG and IgM isotypes were measured in serum , secretions and bile .
After gastric stimulation , the appearance of IgA antibodies with identical spectral components in secretions and bile favours the concept that IgA precursor cells with identical clonotype potential migrate from the gastrointestinal area to secretory sites .
After gastric stimulation , the appearance of IgA antibodies with identical spectral components in secretions and bile favours the concept that IgA precursor cells with identical clonotype potential migrate from the gastrointestinal area to secretory sites .
After gastric stimulation , the appearance of IgA antibodies with identical spectral components in secretions and bile favours the concept that IgA precursor cells with identical clonotype potential migrate from the gastrointestinal area to secretory sites .
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