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L Valenzuela

Publications and source records attributed to L Valenzuela.

32 records · Page 2Linked to original sources

Quantitation of prostate-specific antigen in serum by a sensitive enzyme immunoassay.

A sensitive sandwich-type enzyme immunoassay has been developed for quantitation of a human prostate-specific antigen (PA). With this method, PA at a concentration as low as 0.10 ng/ml can be detected. The assay was reproducible as within and between assays yielded a coefficient of variation of 5.7% and 4.6%, respectively. Only human prostate tissues (n = 31) were shown to contain PA. No PA was detected in other human normal or tumor tissues (n = 13). PA was not detectable in sera from normal females (n = 17) or female cancer patients (n = 25). A mean +/- S.D. of 0.47 +/- 0.661 ng/ml (ranging from less than 0.10 to 2.6) ws obtained from a group of 51 normal males. Sera from male patients with nonprostatic cancer contained a similar range of PA as that of normal males. Patients with prostate cancer (371 of 442) and benign prostatic hypertrophy (13 of 19) were shown to have elevated levels of circulating PA. Although no quantitative difference in PA levels was found between the benign prostatic hypertrophy group and Stage A of prostatic cancer, patients with Stages C and D prostatic cancer exhibited significantly elevated levels of PA qualitatively and quantitatively. These results therefore indicate that PA is a histiotypic product of the prostate and may be of use as an adjunctive tool in diagnostic procedures of prostate cancer.

Antigens↗

Isoenzymes of human prostate acid phosphatase.

The isoenzymes of human prostatic acid phosphatase have been studied by an isoelectric focusing technique. Purified acid phosphatase from malignant prostates contained eight isoenzymes with pI 4.4--5.3. The sera from patients with prostate cancer were shown to have similar acid phosphatase isoenzyme patterns at pI 4.0--5.5; as the serum enzyme activities increased, the pI of isoenzymes shifted to more acidic pH. These isoenzyme patterns of sera from patients with prostate cancer were different from those of patients with Gaucher's disease or from acid phosphatase of human erythrocytes, both of which exhibited only one enzyme band around pI 5.0 and 6.0, respectively. Treatment of serum sample of prostate cancer with neuraminidase did not result in a single enzyme band but alter the pI of isoenzymes, which shifted to a higher pH region. The significance of acid phosphatase activities and its isoenzyme patterns in prostate cancer merits further investigation.

Acid Phosphatase↗

Synovial sarcoma.

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Adolescent↗

Enzyme markers in human prostatic carcinoma.

In an effort to develop a sensitive and specific method for detecting human prostatic cancer at early stages, we have studied the isoenzyme patterns of acid phosphatase in patients' sera as well as in benign hypertrophic and cancerous prostatic tissues using isoelectric focusing techniques. At least eight acid phosphatase isoenzymes at pI 4.1-5.5 could be observed. The sera with highly elevated acid phosphatase activity generally contained more isoenzymes with pI values of 4.5-5.0. The purified acid phosphatase isolated from benign hypertrophic and malignant prostatic tissues showed no qualitative difference in isoenzyme patterns although quantitative variations were observed. Malignant tissue contained more isoenzymes with pI values of 4.5-4.8. Patients' sera were found to contain isoenzymes of prostate origin. We have also investigated serum ribonuclease (RNase) activity in patients with prostatic cancer. The serum RNase activity of patients was significantly elevated. No significant correlation was observed between serum acid phosphatase and RNase activity. In some instances, where acid phosphatase activity was in the normal range, RNase activity was elevated. These data suggest that simultaneous measurements of RNase and acid phosphatase activities may be of value in the diagnosis of prostatic cancer. The purified RNase has been isolated from human prostatic tissue and its immunologic properties are being studied.

Acid Phosphatase↗