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Biomedical subjects

Rafael Molina

Publications and source records attributed to Rafael Molina.

25 records · Page 2Linked to original sources

Pro-gastrin-releasing peptide in patients with benign and malignant diseases.

The specificity and sensitivity of pro-gastrin-releasing peptide (ProGRP) was evaluated in 37 healthy subjects, 197 patients with benign diseases and 310 patients with malignant diseases of different origins. Abnormal ProGRP serum levels (>50 pg/ml) were found in 10% of the patients with benign diseases and in 26.1% of the patients with active cancer. None of the healthy subjects had abnormal ProGRP levels. The benign disease with the highest ProGRP concentration was renal failure, with abnormal values in 51.6% of the patients studied. Excluding patients with renal failure or patients with creatinine levels greater than 1.5 mg/dl, raised ProGRP values (<80 ng/ml) were found in 2.5% (4/160) of patients with benign diseases and in 4.9% of patients with active malignancies other than lung cancer or neuroendocrine tumors (<110 ng/ml). Abnormal ProGRP serum levels were found in 26.2% of patients with non-small cell lung cancer (NSCLC) (mean 40.5 +/- 35.4 pg/ml) and in 76.8% of patients with small cell lung cancer (SCLC) (mean 694 +/- 1,776 pg/ml) (p < 0.001). ProGRP serum levels >300 pg/ml were only found in SCLC patients (41.4%). ProGRP results were related to tumor extension in SCLC (sensitivity in limited disease 58.3%, in extensive disease 95.5%) but not in NSCLC. In summary, renal failure is the most frequent source of false-positive results with ProGRP, and this marker is useful in the histological differential diagnosis of lung cancer.

Aged↗

Clinical evaluation of the simultaneous determination of tumor markers in fluid and serum and their ratio in the differential diagnosis of serous effusions.

We evaluated the diagnostic utility of simultaneous determination of 5 tumor markers, CEA, CA 125, CA 15-3, CA 19-9 and cytokeratin 19 (CYFRA 21-1), in fluid and serum from 101 patients, 52 with pleural effusion (22 malignant) and 49 patients with ascites (14 malignant). Tumor marker concentrations in fluid from patients with malignant effusions were significantly higher than those obtained in benign fluids or serum. However, there are two types of tumor markers: those released/secreted by normal mesothelia such as CA 125 and cytokeratin 19 (higher levels in benign fluids than in serum) and non-released/secreted tumor markers (low concentrations in benign fluids) such as CEA, CA 19-9 and CA 15-3. The fluid/serum (F/S) ratio showed better sensitivity with maximum specificity than a single determination in fluid for CEA, CA 15-3 and CA 19-9, but not for CA 125 and CYFRA. The combination of a F/S ratio greater than 1.2 and a cut-off of 5 ng/ml for CEA, 30 U/ml for CA 15-3 and 37 U/ml for CA 19-9 showed sensitivities of 58, 57 and 44%, respectively, and a specificity of 100%, with a combined sensitivity of 82% for overall effusions and 79% for fluids with negative cytology with a specificity of 100%. In conclusion, the use of the F/S ratio in nonsecreted tumor markers such as CEA, CA 19-9 and CA 15-3 improve the sensitivity and specificity and allow standardization of the cut-off.

Antigens, Neoplasm↗

Tumor markers in breast cancer- European Group on Tumor Markers recommendations.

Recommendations are presented for the routine clinical use of serum and tissue-based markers in the diagnosis and management of patients with breast cancer. Their low sensitivity and specificity preclude the use of serum markers such as the MUC-1 mucin glycoproteins (CA 15.3, BR 27.29) and carcinoembryonic antigen in the diagnosis of early breast cancer. However, serial measurement of these markers can result in the early detection of recurrent disease as well as indicate the efficacy of therapy. Of the tissue-based markers, measurement of estrogen and progesterone receptors is mandatory in the selection of patients for treatment with hormone therapy, while HER-2 is essential in selecting patients with advanced breast cancer for treatment with Herceptin (trastuzumab). Urokinase plasminogen activator and plasminogen activator inhibitor 1 are recently validated prognostic markers for lymph node-negative breast cancer patients and thus may be of value in selecting node-negative patients that do not require adjuvant chemotherapy.

Biomarkers, Tumor↗

Decrease in specific micronutrient intake in colorectal cancer patients with tumors presenting Ki-ras mutation.

BACKGROUND: The diversity of the Mediterranean diet and the heterogeneity of acquired genetic alterations in colorectal cancer (CRC) led us to examine the possible association between dietary factors and mutations, such as Ki-ras mutations, in genes implicated in the pathogenesis of these neoplasms. PATIENTS AND METHODS: The study was based on 246 cases and 296 controls. For the molecular study only 117 patients with Ki-ras tumor expression were included. Dietary patterns were assessed using a semi-quantitative food frequency questionnaire. RESULTS: Patients with Ki-ras mutations in codon 12 (K12) consumed significantly less vitamin A (p=0.02), B1 (p=0.01), D (p=0.02) and iron (p=0.03) than controls, whereas patients without these mutations had similar intakes of these nutrients to controls. The consumption of fiber, folate, vitamin E and potassium was lower in the two subgroups of patients (K12-positive or -negative) than in controls. Mutation in codon 13 was not associated with any nutrient deficit. CONCLUSION: These results support previous findings that certain micronutrients protect against colorectal neoplasia and emphasize the importance of considering the different molecular forms of CRC as etiologically distinct diseases.

Aged↗

Complexed prostate-specific antigen for the detection of prostate cancer.

BACKGROUND: The description of a new method for the measurement of complexed prostate-specific antigen (cPSA) offers a new approach to the diagnosis of prostate cancer. PATIENTS AND METHODS: We measured PSA (Hybritech and Bayer), free PSA (Hybritech) and complexed PSA (Bayer) in 72 patients with prostate cancer and 128 with benign prostate hyperplasia. RESULTS AND CONCLUSION: We found an increase of sensitivity using 25 and 7 ng/mL as cut-offs for cPSA in relation to total PSA using as cut-offs 4 and 10 ng/mL (96 and 36% vs. 92 and 35.5%). Similar differences were found for specificity (78% and 31% for cPSA vs. 73% and 29% for total PSA). Therefore, we defined a gray zone for patients with cPSA between 2.5 and 7 ng/mL for which the measurement of the free/complexed PSA ratio saves an important number of negative biopsies maintaining a higher sensitivity.

Aged↗

CYFRA 21.1 in patients with cervical cancer: comparison with SCC and CEA.

The serum levels of CYFRA 21.1, CEA and SCC were prospectively determined in 156 patients diagnosed with carcinoma of the uterine cervix from 1995 to 2003. Histology revealed squamous cancer in 119 patients, adenocarcinoma in 25 patients and adenosquamous carcinoma in the remaining 12 patients. We considered 3.3 ng/ml, 5 ng/ml and 2 ng/ml as the upper limits of normality for CYFRA 21.1, CEA and SCC, respectively. The sensitivity of CYFRA 21.1, CEA and SCC was 26%, 25% and 43%, respectively, at diagnosis. SCC was clearly related to tumor histology, with significantly higher levels in squamous tumors than in other histological types (p<0.0001). The relationship of CEA with the histological type was poor, but the highest concentrations were found in adenocarcinomas (p=0.034). All the tumor markers were related to well known prognostic factors such as tumor size, tumor stage, parametrial invasion and nodal involvement. Abnormal pretreatment serum levels indicated a high probability (>83%) of parametrial invasion in squamous tumors. Likewise, pretreatment SCC and CYFRA 21.1 serum levels were of prognostic value, with a shorter DFS and OS in patients with abnormal levels. Multivariate analysis indicated that stage, histological grade and parametrial invasion were independent prognostic factors, but not tumor markers. In conclusion, SCC is the tumor marker of choice in squamous tumors and the addition of CEA or CYFRA 21.1 does not significantly increase the sensitivity obtained by using SCC alone.

Antigens, Neoplasm↗

Pro-gastrin-releasing peptide (proGRP) in patients with benign and malignant diseases: comparison with CEA, SCC, CYFRA 21-1 and NSE in patients with lung cancer.

We studied the specificity and sensitivity of progastrin releasing peptide (ProGRP) in 37 healthy subjects and 195 patients with benign and 149 with malignant diseases other than lung cancer. Likewise, we compared the ProGRP with other tumor markers used in lung cancer (CEA, SCC, CYFRA and NSE) in 187 patients with NSCLC and in 66 SCLC patients. We considered 50 pg/ml, 5 ng/ml, 2 ng/ml, 3.3 ng/ml and 20 ng/ml as the upper limits of normality for ProGRP, CEA, SCC, CYFRA 21-1 and NSE, respectively. Abnormal ProGRP serum levels were found in 10% of patients with benign diseases and in 13% of patients with malignancies other than lung. Renal failure was the main source of false-positive results (51.6%). Slightly raised ProGRP serum levels, excluding renal failure, were found in 4.1% of patients with benign diseases (<80 pg/ml) and in 5% of patients with malignancies other than lung cancer or neuroendocrine tumors (<120 pg/ml). Abnormal levels of ProGRP, NSE, CEA, CYFRA and SCC were found in 30%, 22.5%, 55.6%, 65.2% and 26.7% of NSCLC and in 73%, 64%, 53%, 46% and 4.5% of SCLC, respectively. Tumor marker serum levels were related to histological type and tumor extension, with ProGRP being the most sensitive marker in SCLC, CEA in adenocarcinomas and CYFRA 21-1 in squamous tumors. The most sensitive combinations of tumor markers were ProGRP and NSE in SCLC (88%), and CEA plus CYFRA in NSCLC (82%). In summary, ProGRP is the tumor marker of choice in SCLC and NSE is a complementary tumor marker in this histological type.

Adult↗