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18 results on '"Boyd CA"'

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1. Differential effect of cross-linking the CD98 heavy chain on fusion and amino acid transport in the human placental trophoblast (BeWo) cell line.

2. Hypoxia alters expression and function of syncytin and its receptor during trophoblast cell fusion of human placental BeWo cells: implications for impaired trophoblast syncytialisation in pre-eclampsia.

3. Quantifying the syncytialisation of human placental trophoblast BeWo cells grown in vitro.

4. A study of L-leucine, L-phenylalanine and L-alanine transport in the perfused rat mammary gland: possible involvement of LAT1 and LAT2.

5. Human placental indoleamine 2,3-dioxygenase: cellular localization and characterization of an enzyme preventing fetal rejection.

6. Preferential recognition of zwitterionic dipeptides as transportable substrates by the high-affinity peptide transporter PEPT2.

7. Peptide aminonitrogen transport by the lactating rat mammary gland.

8. Proton-coupled oligopeptide transport by rat renal cortical brush border membrane vesicles: a functional analysis using ACE inhibitors to determine the isoform of the transporter.

9. The influence of luminal pH on transport of neutral and charged dipeptides by rat small intestine, in vitro.

10. Both the H13 gene product and 4F2 antigen are involved in the induction of system y+ cationic amino-acid transport following activation of human peripheral blood mononuclear cells (PBM).

11. Dipeptide transport and hydrolysis in rat small intestine, in vitro.

12. Tripeptide transport in rat lung.

13. Substrate-specific differences in the rate of bile acid carrier reorientation: studies on human placental basal vesicles.

14. Whole-cell K+ currents in type II pneumocytes freshly isolated from rat lung: pharmacological evidence for two subpopulations of cells.

15. Characterization of amino acid transport systems in human placental basal membrane vesicles.

17. Sulphate transport in human placental brush-border membrane vesicles: competitive inhibition by selenate.

18. The presence of K+dependent phophatase in intestinal epithelial cell brush borders isolated by a new method.

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