1950Experimental Biology and MedicineRequires access

Direct Determinations of Plasma, Cell, and Organ-Blood Volumes in Normal and Hypervolemic Mice

L. Wish, J. Fürth, Robert H. Storey

Open publisher page 99 citations

Abstract

Direct single and combined cell- and plasma-volume determinations were made on normal and polycythemic mice with 32P-tagged red cells and 131I-tagged plasma. The data indicate that: (a) The Evans-blue plasma volumes in mice are above the probably more correct 131I-plasma volumes by a factor of 1.2 and in rabbits by a factor of 1.08. (b) The so-called mixing time of Evans blue is a withdrawal time of this dye by Evans blue-affin cells, most of which are probably macrophages. (c) The cell volume calculations based on Evans-blue values are higher than those obtained by direct determinations with the 32P technic by a factor of 1.56 in normal and 1.51 in tumor-bearing mice tested. (d) The average body hematocrit in mice is approximately 0.88 times the venous hematocrit. (e) On the basis of these conversion values a calculation of all values can be made if only one technic is employed (Fig. 1). (f) Hypervolemia caused by estrogen-secreting tumors is attributable to an almost selective plasma-volume rise while that with luteoma is due primarily to polycythemia and, to a lesser extent, to a plasma volume rise.

About this research paper

What this paper is about

Direct single and combined cell- and plasma-volume determinations were made on normal and polycythemic mice with 32P-tagged red cells and 131I-tagged plasma. The data indicate that: (a) The Evans-blue plasma volumes in mice are above the probably more correct 131I-plasma volumes by a factor of 1.2 and in rabbits by a factor of 1.08. (b) The so-called mixing time of Evans blue is a withdrawal time of this dye by Evans blue-affin cells, most of which are probably macrophages. (c) The cell volume calculations based on Evans-blue values are higher than those obtained by direct determinations with the 32P technic by a factor of 1.56 in normal and 1.51 in tumor-bearing mice tested. (d) The average body hematocrit in mice is approximately 0.88 times the venous hematocrit. (e) On the basis of these conversion values a calculation of all values can be made if only one technic is employed (Fig. 1). (f) Hypervolemia caused by estrogen-secreting tumors is attributable to an almost selective plasma-volume rise while that with luteoma is due primarily to polycythemia and, to a lesser extent, to a plasma volume rise.

Why it matters

OpenAlex reports 99 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Direct single and combined cell- and plasma-volume determinations were made on normal and polycythemic mice with 32P-tagged red cells and 131I-tagged plasma. The data indicate that: (a) The Evans-blue plasma volumes in mice are above the probably more correct 131I-plasma volumes by a factor of 1.2 and in rabbits by a factor of 1.08. (b) The so-called mixing time of Evans blue is a withdrawal time of this dye by Evans blue-affin cells, most of which are probably macrophages. (c) The cell volume calculations based on Evans-blue values are higher than those obtained by direct determinations with the 32P technic by a factor of 1.56 in normal and 1.51 in tumor-bearing mice tested. (d) The average body hematocrit in mice is approximately 0.88 times the venous hematocrit. (e) On the basis of these conversion values a calculation of all values can be made if only one technic is employed (Fig. 1). (f) Hypervolemia caused by estrogen-secreting tumors is attributable to an almost selective plasma-volume rise while that with luteoma is due primarily to polycythemia and, to a lesser extent, to a plasma volume rise.

Key concepts: Evans Blue, Hematocrit, Plasma volume, Chemistry, Hypervolemia, Endocrinology, Blood volume, Internal medicine

Related papers

Back to paper searchBrowse research topicsOriginal source
Direct Determinations of Plasma, Cell, and Organ-Blood Volumes in Normal and Hypervolemic Mice — Research Paper | ScholarLens