Analysis device
A reagent including a combination of a polyanionic compound and a bivalent cationic compound contains one substance selected from the group consisting of succinic acid, gluconic acid, alanine, glycine, valine, histidine, maltitol, and mannitol or at least one compound of the substance. A dry state of the reagent and deliquescence can be improved.
1 - 14 . (canceled)
15 . An analysis device, comprising:
a microchannel structure rotatable about a rotation axis of the analysis device, the microchannel structure including a passage and a measuring cell;
an analysis reagent carried in the passage of the microchannel structure, the analysis reagent being in a solid and dry state, the analysis reagent comprising a combination of a polyanionic compound and a bivalent cationic compound, and one substance or one compound of the substance as an additive,
wherein the substance is at least one selected from the group consisting of:
succinic acid,
gluconic acid,
alanine,
glycine,
valine,
histidine,
maltitol, and
mannitol.
16 . An analysis device, comprising:
a microchannel structure rotatable about a rotation axis of the analysis device, the microchannel structure including a passage and a measuring cell;
an analysis reagent carried in the passage of the microchannel structure, the analysis reagent being in a solid and dry state, the analysis reagent comprising a combination of a polyanionic compound and a bivalent cationic compound, and one substance or one compound of the substance as an additive,
wherein the substance is at least one selected from the group consisting of:
dicarboxylic acid,
gluconic acid,
alanine,
glycine,
valine,
histidine,
taurine,
a sugar alcohol,
xylose that is a monosaccharide,
a disaccharide, and
a trisaccharide.
17 . The analysis device according to claim 15 , comprising:
a reserving cavity that receives a fixed quantity of diluted plasma serving as a liquid sample;
an operation cavity that is formed next to the reserving cavity in a circumferential direction, is connected to the reserving cavity via a connecting section enabling application of a capillary force, and contains a reagent for analyzing highdensity lipoprotein cholesterol;
a separating cavity that is formed outside the operation cavity and is connected to the operation cavity via a connecting passage serving as a clearance configured to apply a capillary force;
a measuring passage that is adjacent to the separating cavity in the circumferential direction and is connected to the separating cavity via a connecting passage configured to apply a capillary force;
a measuring cell formed outside the measuring passage; and
a capillary area that is formed inside the measuring cell and contains an enzyme reagent and a mediator,
wherein a reaction solution having reacted in the capillary area is transferred to an outer periphery of the measuring cell by increasing the centrifugal force, and then the reaction solution retained on the outer periphery of the measuring cell is accessed to measure HDL of the liquid sample.
18 . The analysis device according to claim 17 , wherein the operation cavity comprises a reagent carrying section configured to carry the reagent for analyzing high-density lipoprotein cholesterol, the reagent carrying section protruding from the operation cavity so as to have a clearance smaller than a clearance of the operation cavity.
19 . The analysis device according to claim 17 , further comprising an agitating rib extended in a radial direction in the operation cavity, the agitating rib being lower in height than an external wall of the operation cavity.