Simon S A, Hall W L, Schiffman S S
Department of Neurobiology and Anesthesiology, Duke University Medical Center, Durham, NC 27710.
Pharmacol Biochem Behav. 1992 Sep;43(1):271-83. doi: 10.1016/0091-3057(92)90668-6.
The effects of acid and astringent compounds on ion transport across isolated canine lingual epithelia were measured in an Ussing chamber. Lowering the pH from 7.4 to 3.2 decreases ion transport, as measured by the short-circuit current (Isc), when the dorsal surface of the tongue is bathed in 0.5 M NaCl and increases Isc when it is bathed in 0.05 M NaCl, tannic acid (0.1 M) inhibits Isc at both pH 3.2 and 7.4. At 0.05 M NaCl, pH 7.4 tannic acid also inhibits Isc. Thus, inhibition of Isc by tannic acid does not depend upon the pH, meaning that the reduction in transport arises from tannic acid. In the presence of NaCl (at both 0.05 and 0.5 M NaCl), 0.1 M AlK (SO4)2 or 0.1 M AlNH4(SO4)2 also inhibit Isc. For these salts, the decrease in Isc arises from the aluminum ion and not from K+, NH4+, or SO(4-)-. Other less astringent compounds (gallic and tartaric acids) had only slight effects on Isc. The main findings of this study are that both tannic acid and the aluminum salts inhibited ion transport, likely Na+ influx, via amiloride-inhibitable channels in isolated lingual epithelia. Inhibition of such Na+ channels may contribute to astringent taste.
在尤斯灌流小室中测量了酸和收敛性化合物对犬离体舌上皮离子转运的影响。当舌背浸泡在0.5M氯化钠中时,将pH从7.4降至3.2会降低离子转运,这通过短路电流(Isc)来衡量;而当舌背浸泡在0.05M氯化钠中时,pH降低则会增加Isc。单宁酸(0.1M)在pH 3.2和7.4时均抑制Isc。在0.05M氯化钠、pH 7.4条件下,单宁酸也抑制Isc。因此,单宁酸对Isc的抑制不依赖于pH,这意味着转运的减少源于单宁酸。在存在氯化钠的情况下(0.05M和0.5M氯化钠),0.1M硫酸铝钾或0.1M硫酸铝铵也抑制Isc。对于这些盐类,Isc的降低源于铝离子而非钾离子、铵根离子或硫酸根离子。其他收敛性较弱的化合物(没食子酸和酒石酸)对Isc只有轻微影响。本研究的主要发现是,单宁酸和铝盐均通过抑制离体舌上皮中氨氯吡咪敏感通道来抑制离子转运,可能是抑制钠离子内流。抑制此类钠离子通道可能导致收敛性味觉。