Angiotensin iradioimmunoassay

4041147
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Inventors

Pagnucco, Rinaldo G.
Muse, Roberta J.
Murty, Dasika R.

Application #

709674

Filed

Jul-29-1976

Published

Aug-9-1977

Current US Class

435/23
435/800
436/531
436/536
436/542
436/804
436/810
436/826

International Classes

G01N 033/00; G21H 005/02

Field of Search

424/1 424/1.5 424/12 195/103.5 23/230

Assignee

E. R. Squibb & Sons, Inc. (Princeton, NJ)

Examiners

Padgett; Benjamin R.

Attorney, Agent or Firm

Levinson; Lawrence S., Smith; Merle J., Barrack; Donald J.

Referenced by:

View Backward References

Other References

Croll et al., New Techniques in Tumor Location and Radioimmunoassay, John Wiley & Sons, New York, 1974, pp. 39-49.

Citation

Cite This Patent

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Abstract
In a radioimmunoassay for the determination of plasma renin activity, the use of a tris-maleate buffer solution of about pH 7.4 in the incubation of plasma samples results in a high generation of angiotensin I and an improved test.
 
Claims
What is claimed is:

1. A process for maximizing the generation of angiotensin I from angiotensinogen which comprises incubating the angiotensinogen substrate in a buffer solution of pH about 7.4, said buffer comprising about equimolar amounts of tris (hydroxymethyl)aminomethane and maleic acid.

2. A process in accordance with claim 1 wherein the angiotensinogen substrate is incubated at a temperature of about 37.degree. C.

3. A process in accordance with claim 1 wherein the angiotensinogen substrate is incubated for about 2 hours.

4. In a radioimmunoassay for the determination of angiotensin I in a plasma sample which comprises (i) incubating the plasma sample to generate angiotensin I from angiotensinogen, (ii) forming a mixture of the incubated sample, radioisotope-labeled angiotensin I, and angiotensin I antiserum, (iii) separating the radioisotope-labeled angiotensin I bound to the angiotensin I antiserum from the free radioisotope-labeled angiotensin I, (iv) determining the radioactivity of the bound radioisotope-labeled angiotensin I, the radioactivity of the free radioisotope-labeled angiotensin I, or the radioactivity of each, (v) referencing the amount of bound radioisotope-labeled angiotensin I, the amount of free radioisotope-labeled angiotensin I, or the ratio of bound/free or free/bound radioisotope-labeled angiotensin I to corresponding values obtained by carrying out steps (ii), (iii) and (iv) using as a sample known amounts of angiotensin I, and (vi) determining the amount of angiotensin I in the plasma sample using the relationship established in (v), the improvement comprising: incubating the plasma sample in a buffer solution of pH about 7.4, said buffer comprising about equimolar amounts of tris (hydroxymethyl) aminomethane and maleic acid.



Description
BACKGROUND OF THE INVENTION

The measurement of various body constituents by the use of radioimmunoassay techniques has achieved widespread acceptance in recent years. Exemplary of substances which can be measured by radioimmunoassay using currently available commercial kits are ACTH (adrenocorticotropin), aldosterone, angiotensin I, angiotensin II, barbiturates, cyclic AMP, cyclic GMP, digoxin, folic acid, FSH (follicle stimulating hormone), gastrin, HAA (hepatitis associated antigen), HGH (human growth hormone), insulin, TSH (thyroid stimulating hormone), thyroxine (T4), triiodothyronine (T3), and vitamin B12.

Radioimmunoassay tests require a specific antibody, a radioisotope-labeled (hereinafter referred to as "radiolabeled") antigen, a pure sample of the antigen to be measured to serve as a reference standard, and means for the separation of free antigen from antibody-bound antigen. Radioimmunoassays follow the basic principle of saturation analysis, i.e., competition between labeled and unlabeled antigen for a fixed number of antibody binding sites. The term "antigen", as used in the field of radioimmunoassays, may cover substances of limited antigenicity. In those cases where the substance to be measured is of limited antigenicity, the substance can be coupled with an agent which will increase its antigenicity.
 
  Methods and devices are provided for carrying out assays with minimal technical training where quantitative visual determinations may be made. The devices...  A method of determining the concentration of an antigen in a sample solution comprising (a) coating an antigen-protein conjugate onto a solid matrix, (b)...