Search PubMed⌕ Search

Biomedical subjects

I Moreno

Publications and source records attributed to I Moreno.

At least 37 records · Page 2Linked to original sources

Changes in osteocalcin response to 1,25-dihydroxyvitamin D(3) stimulation and basal vitamin D receptor expression in human osteoblastic cells according to donor age and skeletal origin.

Age-related osteopenia is known to occur differently throughout the skeleton. In the present study, we examine the influence of donor age (<50 and >50 years), and bone structure (cortical vs. trabecular) on osteocalcin and vitamin D receptor (VDR) expression in primary cultures of human osteoblastic cells (hOB) cells. Cells were isolated from trabecular bone samples obtained from donors undergoing either knee (mainly trabecular) (n = 22; 4 <50 years, 18 >50 years) or hip (mainly cortical) (n = 16; 6 <50 years, 10 >50 years) arthroplasty. Pooling the results from knee and hip hOB cell cultures, we found that secreted osteocalcin was higher in hOB cells from the younger donors, compared with that in older donors, and peaked after stimulation with 10(-6)--10(-8) mol/L 1,25-dihydroxyvitamin D(3) [1,25(OH)(2)D(3)]. In cells from the latter donors, this secretion was maximal after 10(-6) mol/L 1,25(OH)(2)D(3) treatment. On the other hand, using reverse transcription followed by polymerase chain reaction, baseline osteocalcin mRNA was found to be lower in hOB cells from the older donors than in those from younger donors. After treatment with 10(-6)--10(-8) mol/L 1,25(OH)(2)D(3), osteocalcin mRNA increased over baseline in all groups of hOB cells studied. In age-matched cultures, both basal and 10(-6)--10(-8) mol/L 1,25(OH)(2)D(3)-stimulated osteocalcin mRNA showed similar values in hOB cells from both skeletal sites in younger donors. However, in the older donors, baseline as well as 10(-8) mol/L 1,25(OH)(2)D(3)-stimulated osteocalcin mRNA were higher in knee hOB cells than in hip hOB cells. Furthermore, baseline VDR mRNA expression was also higher in the former cells than in the latter cells in the older group. Considering the influence of donor age at each skeletal site of origin, we found lower baseline osteocalcin and VDR mRNA levels in hip hOB cells in the older group than in the younger group. Our findings indicate that the response of osteocalcin secretion and its mRNA to physiological doses of 1,25(OH)(2)D(3) decreases with aging and is associated with decreased VDR mRNA expression in hOB cells from mainly cortical bone.

Adult↗

Sulbactam efficacy in experimental models caused by susceptible and intermediate Acinetobacter baumannii strains.

Sulbactam and imipenem were compared in an experimental pneumonia model in immunocompetent mice, using a susceptible strain of Acinetobacter baumannii, and in an experimental endocarditis model in rabbits, using an intermediately susceptible strain. In the former, sulbactam was as efficacious as imipenem in terms of survival, sterility of lungs and in the bacterial clearance from lungs and blood, provided that the t > MIC for sulbactam (1.84 h) was similar to that for imipenem (2.01 h). In the endocarditis model, imipenem (t > MIC, 2.12 h) was more efficacious than sulbactam (t > MIC, 1.17 h) in bacterial clearance from vegetations. These results show the efficacy of sulbactam in infections caused by susceptible strains of A. baumannii, with an MIC up to 4 mg/L, provided that doses reach a t > MIC similar to that of imipenem. The activity of sulbactam was time dependent.

Acinetobacter↗

Quantitative detection of AML1-ETO rearrangement by real-time RT-PCR using fluorescently labeled probes.

The persistence of the AML1-ETO rearrangement performed by reverse transcription polymerase chain reaction (RT-PCR) has been reported in acute myeloid leukemia (AML) patients in long-term complete remission (CR). This persistence, which is not associated with hematological relapse, limits the clinical use of qualitative RT-PCR. Here, we present a new quantitative real-time PCR method to detect AML1-ETO rearrangement using fluorescently labeled probes. Quantitative detection of AML1-ETO was performed in capillary tubes using two fluorescently labeled probes in the LightCycler equipment. The reliability of the method was checked in twenty-two bone marrow samples and one apheresis sample from eight patients with t(8;21) collected at diagnosis and during follow-up assessment. The regression coefficients obtained for standard curves of AML1-ETO and AML were all greater than 0.98. The sensitivity attained allowed the detection of rearrangements at a dilution of 10(-5) Kasumi-1 cDNA. The intra-assay coefficient of variation was 4% for AML1-ETO, and 7% for AML. The inter-assay coefficient of variation was 19% for AML1-ETO and 12% for AML. A log reduction from two to four in the AML1-ETO/AML ratio was evident after CR. The study of the method and first results obtained in patient samples support that quantitative real-time PCR with hybridization probes is a new reliable and sensitive method to monitor minimal residual disease in AML patients. Moreover, the fluorescent probes with the Light-Cycler technology offer the advantage of a rapid detection.

Acute Disease↗

Imipenem, doxycycline and amikacin in monotherapy and in combination in Acinetobacter baumannii experimental pneumonia.

Acinetobacter baumannii is a common cause of nosocomial pneumonia and other nosocomial infections. Multiresistant A. baumannii has also a high prevalence, which can make effective treatment difficult. We designed a new model of A. baumannii experimental pneumonia using C57BL/6 immunocompetent mice. This model was used to compare the efficacy of imipenem, doxycycline and amikacin in monotherapy, and the combination of imipenem plus amikacin and doxycycline plus amikacin. Doxycycline plus amikacin were synergic in vitro after 24 h incubation, whereas imipenem plus amikacin showed no in vitro synergy. The number of sterile lungs and the lung clearance of A. baumannii were greater in the group treated with imipenem than in those treated with amikacin or doxycycline in monotherapy (P < 0.05). The combination of imipenem plus amikacin and doxycycline plus amikacin was no more effective than imipenem alone in the clearance of organisms from lungs (2.42 +/- 1.46 cfu/g versus 2.7 +/- 1.5 cfu/g versus 1.23 +/- 1.02 cfu/g). These results suggest that the addition of amikacin does not improve the results obtained by imipenem monotherapy. Doxycycline plus amikacin is an alternative to imipenem in the therapy of A. baumannii pneumonia.

Acinetobacter↗

Genomic variability of Haemophilus influenzae isolated from Mexican children determined by using enterobacterial repetitive intergenic consensus sequences and PCR.

Genomic fingerprints from 92 capsulated and noncapsulated strains of Haemophilus influenzae from Mexican children with different diseases and healthy carriers were generated by PCR using the enterobacterial repetitive intergenic consensus (ERIC) sequences. A cluster analysis by the unweighted pair-group method with arithmetic averages based on the overall similarity as estimated from the characteristics of the genomic fingerprints, was conducted to group the strains. A total of 69 fingerprint patterns were detected in the H. influenzae strains. Isolates from patients with different diseases were represented by a variety of patterns, which clustered into two major groups. Of the 37 strains isolated from cases of meningitis, 24 shared patterns and were clustered into five groups within a similarity level of 1.0. One fragment of 1.25 kb was common to all meningitis strains. H. influenzae strains from healthy carriers presented fingerprint patterns different from those found in strains from sick children. Isolates from healthy individuals were more variable and were distributed differently from those from patients. The results show that ERIC-PCR provides a powerful tool for the determination of the distinctive pathogenicity potentials of H. influenzae strains and encourage its use for molecular epidemiology investigations.

Carrier State↗

Generalized formulation and symmetry properties of reciprocal nonabsorbing polarization devices: application to liquid-crystal displays.

We present a general formulation based on the Jones-matrix theory for reciprocal nonabsorbing polarization devices, including polarization interference filters and liquid-crystal displays. The development of this formulation is based on general symmetry conditions that relate the Jones matrix when the device is illuminated from the front side and from the back side. The application to liquid-crystal displays results in a constraint of the Jones-matrix elements, which represents a generalization of the existing models that explain their modulation properties.

Journal Article↗

Preoperative high-dose cisplatin versus moderate-dose cisplatin combined with ifosfamide and mitomycin in stage IIIA (N2) non small-cell lung cancer: results of a randomized multicenter trial.

Preoperative chemotherapy has become an accepted treatment for stage IIIA (N2) non small-cell lung cancer (NSCLC). The majority of induction regimens employ cisplatin, although the importance of cis-platin dose in combination is unclear. A randomized trial was conducted to address whether higher pre-operative cisplatin doses result in improved survival and increased pathologic complete response in NSCLC. Patients with stage IIIA clinically enlarged and biopsy-proven N2 lesions were randomly assigned to receive either high-dose cisplatin (HDCP) (100 mg/m2) or moderate-dose cisplatin (MDCP) (50 mg/ m2) in combination with ifosfamide (3 g/m2) and mitomycin (6 mg/m2). Disease was restaged after 3 cycles, and those patients with response or stable disease underwent thoracotomy. From March 1993 to February 1997, 83 patients were randomized: 46 received HDCP, and 37 received MDCP. Clinical characteristics were well matched. Radiographic response rate was 59% for HDCP patients and 30% for MDCP patients (P = 0.01). Thoracotomy was performed in 71 patients (86%), 58 of whom had resectable disease. Complete resection rate was 61% in the HDCP group, and 51% in the MDCP group (P = 0.5). Postoperative mortality was 11%. Pathologic complete response was observed in one patient who received MDCP. Median survival in the HDCP and MDCP groups was 13 and 11 months, respectively (P = 0.3). In conclusion, higher radiographic response rate is observed in patients who receive HDCP, but this study fails to show any significant improvement in either overall survival or pathologic complete response in this group of patients.

Clinical Trial↗

Rapid quantitative detection of BCR-ABL transcripts in chronic myeloid leukemia patients by real-time reverse transcriptase polymerase-chain reaction using fluorescently labeled probes.

BACKGROUND AND OBJECTIVES: The limited value of qualitative reverse transcription polymerase chain-reaction (RT-PCR) for monitoring chronic myeloid leukemia (CML) patients has prompted the development of quantitative assays. We have developed a quantitative real-time PCR (QC-PCR) method in the LightCycler, based on the use of fluorescently labeled probes (HybProbes), to estimate BCR-ABL fusion gene transcripts in samples from CML patients. DESIGN AND METHODS: Fifty-two samples (45 peripheral blood, five bone marrow, and two apheresis product samples) from nine patients with CML were analyzed. Seven patients were studied at diagnosis and during follow-up after hematopoietic stem cell transplantation (HSCT), whereas two were evaluated only after HSCT. The PCR reaction was carried out in capillary tubes in a final volume of 10 microL, using 2 microL cDNA, the Mensik et al. primers, and two HybProbes. The results for BCR-ABL were normalized with reference to ABL. The PCR program is completed in only 45 min. RESULTS: The sensitivity attained allowed the detection of rearrangements at dilutions of between 5-10(-4) and 10(-5) K562 cDNA. The within-assay coefficient of variation was 11% for BCR-ABL, and 9% for ABL. A greater than 2 log reduction in the BCR-ABL/ABL ratio was evident shortly after transplantation in all allografted patients. INTERPRETATION AND CONCLUSIONS: We may conclude that the TaqMan probe technology can be easily adapted to HybProbes with equivalent results. Besides, the results of BCR-ABL quantification in the follow-up of patients clearly confirm that real-time PCR with HybProbes is a reliable and sensitive method for monitoring minimal residual leukemia after HSCT in CML patients.

Adolescent↗

Influence of skeletal site of origin and donor age on osteoblastic cell growth and differentiation.

Bone loss with aging may be due, at least in part, to inadequate bone formation. Moreover, the process of bone aging is known to follow a different pattern throughout the skeleton. In this study, we examined the cell proliferation rate (area under the cell growth curve, AUC) and the secretion of C-terminal type I procollagen (PICP), alkaline phosphatase (ALP), and osteocalcin (OC) in primary cultures of osteoblastic cells from human trabecular bone. Osteoblastic cells were obtained for 168 donors (100 women and 68 men). Ninety-eight bone samples were obtained from subjects undergoing knee arthroplastia, 52 aged 50-70 years (64 +/- 5) and 46 over age 70 (73 +/- 2). Another 70 bone samples were obtained from subjects undergoing hip arthroplastia; 51 were 50-70 years old (64 +/- 4) and 19 were over 70 (75 +/- 5). Osteoblastic cells from the older donors had a lower proliferation rate and OC secretion than those from younger subjects. However, ALP secretion was higher in the former subjects, whereas PICP secretion was unchanged. Osteoblastic cells from hip had a lower proliferation rate than those from knee. PICP secretion was also lower and ALP secretion was higher in the former cells. In age-matched cell cultures, osteoblastic cells from the knee had higher proliferation rate and PICP secretion than osteoblastic cells from the hip. However, ALP secretion was lower in knee osteoblastic cells than those from hip only in the younger group. With aging, ALP secretion was found to increase in knee osteoblactic cells, whereas OC secretion decreased in osteoblastic cell cultures from the hip. Our findings suggest that bone loss with aging may be accounted for, at least in part, by a decreased osteoblastic cell proliferation and an increased osteoblastic maturation. In addition, our data indicate that these changes with aging do not occur similarly at different skeletal sites.

Aged↗

Association of HLA shared epitope with joint damage progression in rheumatoid arthritis.

A nine years prospective study was performed on 82 Spanish rheumatoid arthritis patients with a disease duration of less than two years at the study entry, in order to evaluate the role of HLA markers in the susceptibility and progression of rheumatoid arthritis. Radiological evaluation of disease severity was performed at the time of diagnosis and 9 years later. High resolution HLA-DR typing demonstrated that the presence of the shared epitope (SE) was more frequent among patients (61% vs. 31% in controls; p = 0.00003; OR = 3.48). Fourteen patients carried two SE+ HLA-DRB1 alleles (SE+/+); 36, one single allele (SE+/-) and 32 were SE negative (SE-/-). HLA-DR4 (particularly DRB1*0401 and DRB 1*0405) and HLA-DR10 were increased among patients. At study entry, the frequencies of locally severe (hands and feet) RA were more frequent among SE+/+ patients (79%) than among SE+/- (47%) and SE-/-(44%) patients (p = 0.05; RR = 1.80). After 9 years of disease these differences disappeared, whereas differences in the extent of the disease arise: 79%, 50% and 32% of SE+/+, SE+/- and SE-/- patients respectively showed large joints involvement (shoulders, elbows, hips and knees) (p = 0.01; RR = 2.44 for SE+/+ vs. SE-/-; and p = 0.04; RR = 1.81 for SE+ vs. SE-). These results suggest that the presence of the shared epitope is associated with the extent and progression of radiological joint damage in rheumatoid arthritis.

Adult↗

Influence of skeletal site of origin and donor age on 1,25(OH)2D3-induced response of various osteoblastic markers in human osteoblastic cells.

Age-related bone loss may be a consequence of a lack of osteoblastic formation and/or function. In vitro, the osteoblastic response to 1,25(OH)2D3, an important regulator of osteoblastic function, appears to depend on the stage of osteoblastic maturation. In this study, we examined the response to 1,25(OH)2D3 of C-terminal type I procollagen (PICP), alkaline phosphatase (ALP), and osteocalcin (OC) secretion in primary cultures of osteoblastic cells from human trabecular bone (hOB). Forty-four bone samples were obtained from subjects undergoing knee arthroplastia, 20 aged 50-70 (64 +/- 5), and 24 >70 (73 +/- 2) years. Another 33 bone samples were obtained from subjects undergoing hip arthroplastia, 21 were aged 50-70 (64 +/- 4) and 12 >70 (75 +/- 5) years. Pooling knee and hip hOB cell cultures, we found that PICP secretion decreased after 1,25(OH)2D3 in hOB cells from the older group (>70 years). Treatment with 1,25(OH)2D3 increased ALP secretion in these cells only in the younger group (50-70 years), whereas it increased OC secretion in hOB cells in both age groups. By pooling hOB cell cultures from both age groups we found that knee hOB cells increased OC secretion, and decreased PICP secretion, after 1,25(OH)2D3. This metabolite also increased OC secretion in hip hOB cells. Considering the influence of donor age at the same skeletal site, 1,25(OH)2D3 was found to stimulate ALP secretion only in knee hOB cells in the younger group. In contrast, this metabolite decreased ALP secretion in hip hOB cells in the older group. PICP secretion decreased after 1,25(OH)2D3 only in hOB cells in the older group, at both skeletal sites. In age-matched cultures, OC secretion was lower in hip hOB cells compared with those from the knee in the older group, but was similar in these cell cultures from both skeletal sites in the younger group. OC secretion after 1,25(OH)2D3 stimulation did not show age differences in knee hOB cells, but was lower in hip hOB in the older group. In summary, our results demonstrate that the response of various osteoblastic markers to 1,25(OH)2D3 in primary cultures of hOB cells depends on the donor age and skeletal site of origin.

Aged↗

Differential interactions among isolates of peanut stunt cucumovirus and its satellite RNA.

The interactions of seven isolates of peanut stunt cucumovirus (PSV) originating from North America, Europe and Africa, and two variants of PSV satellite RNA (sat RNA) were analysed. Electrophoretic and immunoblot analyses of the coat protein (CP) and Northern blot hybridization analyses of the viral RNAs showed that isolates PSV F352, 1339 and 1507 belonged to subgroup I, and isolates PSV W, Su and B to subgroup II. The seventh isolate, robinia mosaic virus (RoMV) clustered with subgroup I isolates by CP analysis, but was related to both subgroups by RNA hybridization analysis. The ability to support the accumulation of two newly described sat RNA variants, P4 and P6 sat RNAs, was not related to PSV isolate classification: neither PSV W nor RoMV were helper viruses for these PSV sat RNAs. Symptom modulation by both sat RNAs was the same: the presence of sat RNA did not modify the symptoms induced by subgroup I isolates but exacerbated the symptoms induced by subgroup II isolates in both tobacco and cowpea. Sat RNAs P4 and P6 contained 393 nucleotides, and differed only in three nucleotide substitutions. This resulted in marked differences in infectivity, level of accumulation and relative encapsidation between both the sat RNAs. Accumulation levels and relative encapsidation of sat RNAs was also affected by the isolate of helper virus.

Arachis↗

A rapid procedure suitable to assess quantitatively the endocytosis of colloidal gold and its conjugates in cultured cells.

We measured the endocytic uptake of low-density lipoproteins (LDLs) conjugated to colloidal gold in cultured cells, either by counting gold particles on electron micrographs or by inductively coupled plasma (ICP) mass spectrometry (MS). Both procedures are comparable but the latter requires a considerably shorter time and allows analysis of a much larger sample. In addition, ICP MS, compared to alternative radioactive or fluorescent procedures, offers the major advantage of using the same probe to quantify the endocytic uptake and to follow it by electron microscopy. Therefore, ICP MS analysis provides an easy, rapid, and sensitive quantification of endocytosis that complements the electron microscopic studies.

Animals↗

[Surgery of mechanical complications of acute myocardial infarct].

Reviewed are the current surgical methods for the treatment of mechanical complications after an acute myocardial infarction, specially the subacute ventricular rupture, the most frequent complication, and in which we have the greatest experience in the world. Mechanical complications constitute the second cause of death after myocardial infarction, following pump failure. The most frequent mechanical complication is ventricular rupture, which is the cause of death in 26% of the cases of acute myocardial infarction. The setting of solid diagnostic tools, with the association of echocardiographic and hemodynamic criteria, has permitted the identification of a large number of patients with subacute ventricular rupture before death, and has allowed them to be treated surgically. The surgical techniques have evolved to more conservative methods and, nowadays, nearly all the patients can be operated on without extracorporeal circulation and using sutureless techniques. The results is greater surgical survival with satisfactory functional status at follow up. The incidence of septal and papillary muscle rupture is considerably less frequent, but of great interest. The surgical results have been improved on the basis of early diagnosis, aggressive surgical attitude, and better reparative and myocardial protection techniques.

Heart Rupture, Post-Infarction↗

TP53 mutational pattern in Spanish and Polish non-small cell lung cancer patients: null mutations are associated with poor prognosis.

Inactivation of TP53 tumor suppressor gene is the most frequent molecular alteration in NSCLC, involving up to 60% of cases. Furthermore, TP53 mutational spectrum is related to the type of mutagen exposure, as well as racial and/or diet differences. Nearly 95% of TP53 perturbations affect codons included within exons 5-8 which encode for almost the entire DNA-binding domain. In this study we addressed the possible prognostic value of the molecular alterations identified in exons 5-8 of the TP53 gene in DNAs from 151 paraffin-embedded NSCLC sections corresponding to 59 Spanish and 92 Polish stage I-IIIA resected patients. PCR/single-strand conformation polymorphism (SSCP) analysis revealed that the occurrence of TP53 exon 5-8 mutations was 17/59 (29%) in the Spanish cohort and 17/92 (18%) in the Polish group. However, when DNA sequencing analysis was performed, these frequencies were reduced because of the presence of SSCP-false positive, intronic and silent mutations and polymorphisms. Fifteen of the 59 Spanish NSCLC tumors (25%) harbored TP53 mutations affecting exons 5-8 coding sequences, whereas only 12 of 92 Polish neoplasms (13%) contained alterations in the central hydrophobic region of p53. Our results indicate that the occurrence of TP53 mutations affecting exon 5-8 coding sequences in some European NSCLC populations may be lower than previously reported, and that the TP53 mutational patterns of these cohorts differ somewhat. The Spanish NSCLC patients contained missense mutations (9/59, 15%) and a relatively high percentage of null mutations (5/59, 8%) while the Polish patients mostly harbored missense mutations (9/92, 10%) and only one tumor contained a null type (1/92, 1%). Moreover, most TP53 missense mutations in the Spanish group were located outside the conserved regions, whereas the same mutations in the Polish group affected conserved amino acids. Furthermore, the Polish patients harbored a high percentage of G-->A transitions (most of them at non-CpG sites), while G-->T transversions were predominant in the Spanish group. Our findings suggest that there may be different racial or exogenous factors in these two populations which may help to explain both the distinct TP53 mutational pattern and the lower frequency obtained in the Polish group. The presence of missense mutations did not confer a worse clinical outcome in these subsets of NSCLC patients. However, patients whose tumors contained null TP53 gene mutations had a 5 month median disease-free survival time in contrast with 42 months in those patients without mutations (P=0.008). These findings suggest that loss of p53 function may enhance tumor progression in NSCLC patients independently of whether dominant negative TP53 missense mutations are present.

Aged↗

Reduced survival in patients with stage-I non-small-cell lung cancer associated with DNA-replication errors.

To better understand whether replication-error-type instability (RER+) is a frequent genetic alteration event in surgical-pathologic stage-I non-small-cell lung cancer (NSCLC) and identify whether it constitutes an independent prognostic parameter, we examined 35 surgical-pathologic stage-I-NSCLC patients with complete follow-up in all cases for at least 49 months. The tumor samples and the paired histopathologically normal lung samples for each patient were analyzed for 8 microsatellite markers located at chromosomes 3p and 2p to investigate microsatellite alterations such as RER+ and loss of heterozygosity (LOH). Single-strand-conformation-polymorphism analysis for detection of p53 and k-ras gene mutations was also carried out. Genetic data were correlated with clinical outcome and histopathologically established prognostic factors. RER+ at one or both chromosomes was identified in 24 of the 35 patients; 9 patients showed LOH. A statistically significant correlation was found between RER+ and poor prognosis (p = 0.001). Furthermore, RER+ proved to be an independent factor that predicted decreased survival, ranking first, followed by visceral pleural invasion. A trend towards worse survival was strongest in the group of patients with tumor size greater than 3 cm (T2). Patients with other genetic abnormalities, such as K-ras mutations, p53 mutations or LOH, had prognoses similar to those of patients without such aberrations. The data suggest that RER+ is common in NSCLC, that it may provide important prognostic information in stage-I NSCLC and serve as a useful marker for relapse-risk assessment in operable NSCLC patients.

Adenocarcinoma↗

[Significance of heterozygosity loss in the long arm of chromosome 5 (5q21) in small cell carcinoma of the lung].

BACKGROUND: Loss of heterozygosity (LOH) at 5q21, where the APC/MCC genes reside, is one of the genetic alterations that characterizes lung cancer. The aim of this study was to analyse LOH frequency on chromosome 5q21 in patients with non-small cell lung cancer and its relationship with TNM staging and histological subtypes. PATIENTS AND METHODS: Tumor and corresponding normal DNA were isolated from 60 patients with non-small cell lung cancer and a subsequent polymerase chain reaction (PCR) with microsatellite markets within the APC/MCC region was performed. The PCR products were resolved by electrophoresis. The comparison between the normal and tumor DNA patterns allowed us to detect the samples harboring LOH. RESULTS: LOH at 5q21 was detected in 20% of the patients. LOH at 5q21 was found in 16% of stage I patients, 8% in stage II patients and 40% in stage IIIA patients. A trend towards worse survival was detected in stage IIIA patients with LOH at 5q21 (9 months median time survival) in comparison with patients with LOH (21 months), although the difference was not statistically significant (p = 0.11). No significant differences in LOH were observed among histological types. In addition, we found no correlation between LOH and higher frequency of mutations rate affecting K-ras and p53 genes. CONCLUSIONS: LOH at 5q21 is a frequent genetic alteration in non-small cell lung cancer and correlates with locally advanced disease (stage IIIA). Our results suggest that LOH at the 5q21 region could be a prognostic factor in non-small cell lung cancer.

Carcinoma, Non-Small-Cell Lung↗