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Biomedical subjects

F F Cruz-Sánchez

Publications and source records attributed to F F Cruz-Sánchez.

At least 19 recordsLinked to original sources

Brain-derived neurotrophic factor and neurotrophin 3 in schizophrenic psychoses.

Disturbed neural development has been postulated as a crucial factor in the pathophysiology of schizophrenic psychoses. The neurobiochemical basis for such changes of cytoarchitecture and changed neural plasticity could involve an alteration in the regulation of neurotrophic factors. In order to test this hypothesis, BDNF and NT-3 levels in post-mortem brain tissue from schizophrenic patients were determined by ELISA. There was a significant increase in BDNF concentrations in cortical areas and a significant decrease of this neurotrophin in hippocampus of patients when compared with controls. NT-3 concentrations of frontal and parietal cortical areas were significantly lower in patients than in controls. These findings lend further evidence to the neurotrophin hypothesis of schizophrenic psychoses which proposes that alterations in expression of neurotrophic factors could be responsible for neural maldevelopment and disturbed neural plasticity, thus being an important event in the etiopathogenesis of schizophrenic psychoses.

Aged↗

Biologic parameters that correlate with the prognosis of human gliomas.

Much clinical and biologic data have been processed in the search for useful objective parameters to predict brain tumor behavior. Seventy cases of astrocytic glioma collected by a single clinical team were studied using a full complement of clinical procedures: follow up (7 years), histologic analysis, DNA content estimation, and cell kinetics by flow cytometry. Proliferating cell nuclear antigen (PCNA) was determined by immunocytochemical-coupling flow cytometry (PFC) and also by counting under light microscopy (PIHC). A statistical evaluation was carried out to establish the usefulness of several parameters for glioma prognosis. The cases were histologically classified as 14 low-grade astrocytomas, 20 anaplastic astrocytomas, and 36 glioblastomas multiforme. The survival curve showed significant differences between histologic groups. Diploid populations were more frequent in low-grade astrocytomas, and aneuploid tumors often had increased S-phase and proliferative fractions. The PCNA-labeled index (PCNA-LI) increased with malignancy and correlated with histologic grading (P = 0.01). The PCNA-LI and age segregated low- from high-grade astrocytomas (including anaplastic astrocytoma and glioblastoma multiforme), but none of the variables considered differentiated anaplastic astrocytoma from glioblastoma multiforme. The Cox regression test displayed significant values for age, histologic diagnosis, and PCNA determinations when considered in tandem. Discriminant analysis obtained a function integrating age and specifically PIHC-LI to help in the prognosis of doubtful cases. The results emphasize the importance of parameters integrating different variables in an attempt to provide an accurate prognosis, the most significant being age, histopathologic diagnosis, and the proliferative fraction determined by PCNA.

Adult↗

Increased frequency of the alpha-1-antichymotrypsin T allele in cerebral amyloid angiopathy.

Cerebral amyloid angiopathy (CAA) is a process of unknown etiology characterized by amyloid deposition in the wall of small cerebral and meningeal blood vessels. CAA is also a feature of Alzheimer's disease (AD) and of a subgroup of elderly people. Alpha-1-Antichymotrypsin (ACT) is a serum glycoprotein frequently associated with vascular and senile plaque amyloid. The ACT gene is known to have a bi-allele polymorphism that causes a simple amino acid substitution. In an attempt to clarify the possible role of ACT polymorphism in AD and in cases of CAA, the ACT genotype was investigated in AD, CAA, and intellectually intact controls. Representative brain areas (cerebral cortex, hippocampus, putamen, white matter, and gyrus cinguli) from all cases were studied using classical histologic staining techniques (hematoxylin-eosin (HE), Mallory's thrichromic or alkaline congo red stain), and immunohistochemistry for tau and beta-amyloid proteins. There was a significantly increased T allele and TT genotype frequency in the CAA group, but not in the AD group, suggesting a role for the ACT genotype in the development of vascular lesions. The presence of the apolipoprotein E4 allele (ApoE4) did not correlate with the ACT-A allele, as previously reported, and appeared to be independent of the risk for developing AD.

Aged↗

Apolipoprotein E genotype in Spanish schizophrenic patients.

Apolipoprotein E (ApoE) is a lipoprotein that, in the central nervous system, is thought to play a role in neuronal growth and repair. ApoE has three isoforms (ApoE2, ApoE3 and ApoE4) coded by three different alleles (epsilon2, epsilon3 and epsilon4). Evidence from family, twin and adoption studies suggest that there is an important genetic contribution to the etiology of schizophrenia. Schizophrenia is in some cases associated with cognitive impairment similar to that of Alzheimer patients; therefore, one may postulate that the ApoE gene, whose role in the dementia of Alzheimer's type has been clearly demonstrated, may also be involved in schizophrenia. In the present study, we have genotyped 114 schizophrenic Spanish patients and 94 healthy matched controls, and found no association between the ApoE genotype and schizophrenia. Subdivision of patients in clinical subgroups showed a slight increase of ApoE4 in early-age onset of the disease and a slight decrease in positive family history for psychiatric diseases; the group with a poor response to neuroleptic drugs had a lower ApoE2 allele frequency. However, as the differences did not reach statistical significance, we cannot draw evidence of an association. Our negative data do not support an involvement of ApoE in schizophrenia, and suggest that the underlying mechanism for the cognitive impairment found in schizophrenic patients is not related to that of Alzheimer's patients nor to a higher prevalence of the ApoE allele 4.

Adolescent↗

Correlation between Apolipoprotein-E polymorphism and Alzheimer's disease pathology.

Alzheimer's disease (AD) and small vessel disease dementia (SVDD) are common causes of dementia. The ApoE genotype has been proposed as a risk factor for AD. The frequency of the three ApoE alleles was correlated with the neuropathological changes of AD (senile plaques, neurofibrillary tangles and amyloid angiopathy) and SVDD (status lacunaris, status cribosus, leucoencephalopathy, micronecrosis and vascular fibrohyalinosis) in order to validate previous ApoE genotyping results in AD and to identify pre-clinical AD. Representative cerebral regions (cortex, gyrus cinguli, putamen, hippocampus, white matter) from 28 AD cases, 7 SVDD and 38 non-neurological controls were studied using classical histological techniques and immunohistochemistry for tau protein and amyloid-beta. The frequency of the ApoE allele 4 was significantly increased not only in AD patients but also in aged controls. However, following a detailed histopathological examination was found 62% of this group to exhibit histological changes associated with AD in limited brain areas (entorhinal region, hippocampus and adjacent temporal cortex or entorhinal region and hippocampus, or only in the entorhinal region), but 87% of these cases were found to be ApoE4 positive. The significant differences found in the distribution of ApoE allele frequencies were more marked when these cases were excluded from the control group and included as AD cases. In contrast, the frequency of the ApoE allele 2 is significantly increased in SVDD patients. Using histological techniques we confirmed the clinical diagnoses of all cases and classified the AD patients according to the severity of cortical pathology related to AD, while re-grouping from the control group those cases which had no clinical history of the disease but exhibited typical AD and SVDD histological lessions which could be considered as "pre-clinical" forms of these diseases.

Journal Article↗

Brain-derived neurotrophic factor and neurotrophin-3 levels in Alzheimer's disease brains.

In the present study, we investigated the levels of brain-derived neurotrophic factor (BDNF) and neurotrophin-3 (NT-3) in post-mortem brain tissue of Alzheimer's disease (AD) patients, and we observed a significant increase of BDNF concentration in hippocampus and parietal cortex of AD patients, as well as a negative correlation between NT-3 levels and age in hippocampus and putamen of control subjects, and for BDNF in frontal cortex. A defining feature of AD is the post-mortem identification of neuritic plaques and neurofibrillary tangles in the brain, however, a more significant neuropathological finding is the degeneration of cholinergic neurones of the basal forebrain, critically involved in memory and cognition. Neurotrophic factors are partly responsible for the maintenance of neuronal function and structural integrity in the adult brain. Our results provide, therefore, evidence that, under conditions of progressive neurodegeneration the brain stimulates the over expression of certain neurotrophic factors as a possible mechanisms of compensation, and that during senescence the expression of these molecules is regulated.

Age Factors↗

Evaluation of neuronal loss, astrocytosis and abnormalities of cytoskeletal components of large motor neurons in the human anterior horn in aging.

In order to identify possible morphological changes which occur in the anterior horn of normal individuals during aging, 40 controls with no neurological disease were studied. Brain and spinal cord tissue was processed according to a brain banking protocol. Controls were grouped according to age in 10 year intervals. Serial sections (20 microm) of formalin fixed, paraffin-embedded tissue were obtained, from each cervical, thoracic and lumbar spinal cord segment. Every 5th section (until 2 mm) was stained with haematoxylin and eosin and the numbers of motor neurons in the anterior horn counted at x400 magnification. Descriptive statistical analysis was performed using the SPSS program. Parallel sections (5 microm) of the same spinal segments were immunostained with a panel of antibodies including glial fibrillary acidic protein (GFAP), tau, ubiquitin and two phosphorylated neurofilaments subunits. Significant neuronal loss with aging was found by regression line analysis where three equations were used to calculate the number of motor neurons by age in each spinal segment. In 24/40 cases spheroids were observed and they were more numerous in the lumbar segment. GFAP staining revealed a distinctive cellular pattern in the anterior horn of oldest cases. Large and intensely stained astrocytes were seen in the anterior horn of cases aged over 75 years. The number of astrocytes increased progressively with age up to 70 years. Some of the changes observed in the present study may be the result of a selective vulnerability of large motor neurons to aging which could play an important role in the progression of MND. Most of these changes may also have similar pathophysiological mechanisms.

Adult↗

Variants in neurotrophic factor genes and schizophrenic psychoses: no associations in a Spanish population.

Possible associations between schizophrenic psychoses, a ciliary neurotrophic factor (CNTF) null mutation and a neurotrophin in 3 (NT3) bi-allele polymorphism were investigated in a Spanish population. The sample consisted of 107 patients suffering from schizophrenic psychoses and 100 healthy volunteers. There was no statistical difference in the frequencies of the mutant CNTF allele in the index and control groups (0.125 vs. 0.121). The frequency of the rare NT3 allele (Glu) was very low and similar in both groups (0.005). Previous findings supporting the involvement of these genetic markers in the pathogenesis of schizophrenic psychoses were thus not confirmed. In light of neurodevelopmental hypotheses of schizophrenia, however, genes coding for neurotrophic factors remain interesting susceptibility loci in schizophrenia research. Subsequent studies should not focus exclusively on genetic alterations but also take into account secondary changes of the neurotrophic factor system at the mRNA and protein levels. Further, the current unsatisfying operationalized classification of the heterogeneous syndrome 'schizophrenia' remains a crucial problem that could be partially resolved by introducing more differentiated diagnoses defined on the basis of neurobiological criteria.

Ciliary Neurotrophic Factor↗

Aging and the nigro-striatal pathway.

Aging is associated with a progressive impairment in motor function. This feature, together with the decline in mental function, could be considered as an aging syndrome which may finally compromise the ability of the elderly to maintain an active, independent life-style. In the present paper a wide variety of morphological aspects, which have been classically related to brain aging and others such as cytoskeletal changes, the role of growth factors and molecular changes, will be reviewed focusing on aging of the nigrostriatal pathway. In addition to sharing features of aging common to other structures, it is likely that the nigrostriatal pathway has specific characteristics derived from its particular molecular characteristics and/or from a selective vulnerability to aging. To gain further insight into the aging syndrome, the acquisition of rigorous criteria for selecting control cases is paramount. The improvement of methods for the preservation of human tissue is also crucial.

Aged↗

Lectin histochemistry of ethylnitrosourea-induced oligodendrogliomas in the rat.

Oligodendrogliomas (n = 26) induced by ethylnitrosourea (ENU) in wistar rats were examined to assess the lectin specificity to oligodendroglial membranes. Two different types of oligodendrogliomas were found in our material: an isomorphous type (n = 12), and a polymorphous type (n = 14). The first one, with two variants according to its size, macro- (n = 9) and microtumors (n = 3), had predominantly a honey-comb pattern with 'clear halos' around the nuclei without anaplasia. The second type, composed mostly by macrotumours, was anaplastic, with high cellular density, necrosis and intratumoral hemorrhages. Peanut agglutinin (PNA) labelled plasma membranes of well-differentiated cellular components of the first group. The tumoral oligodendrocytes lost the property to bind PNA in the second group of tumours, while Concanavalin A (Con A) showed affinity to intracytoplasmic structures of these tumours. PNA is a reliable marker of oligodendroglial plasma membrane of well-differentiated ENU-induced oligodendrogliomas. This experimental model, using PNA and Con A, may have important clinical applications regarding the biological behaviour of this type of neoplasm.

Animals↗

Phosphoglycerate mutase, 2,3-bisphosphoglycerate phosphatase and creatine kinase activity and isoenzymes in human brain tumours.

The distribution of phosphoglycerate mutase (EC 5.4.2.1, PGM), 2,3-bisphosphoglycerate phosphatase (EC 3.1.3.13, BPGP) and creatine kinase (EC 2.7.3.2, CK) activity and isoenzymes in various regions of adult human brain and in brain tumours (astrocytomas, anaplastic astrocytomas, glioblastomas and meningiomas) has been determined using electrophoresis. PGM and cytosolic CK exist in mammalian tissues as three isoenzymes that result from the homodimeric and heterodimeric combinations of two subunits [types M (muscle) and B (brain)] coded by separated genes. In addition, a dimeric form and an octameric form of mitochondrial CK exist in mammals. Type BB-PGM was the major PGM isoenzyme found in normal brain, although type MB-PGM and type MM-PGM were also detected. All brain tumours possessed lower PGM activity than normal brain, and meningiomas showed higher BPGP activity. In astrocytic tumours, the proportion of type MB- and type MM-PGM decreased, and in meningiomas these isoenzymes were not detected. Type BB-CK and mitochondrial CK were the only CK isoenzymes detected in normal brain. Astrocytomas possessed lower CK activity than anaplastic astrocytomas and glioblastomas and, in addition, tended to possess lower CK content than normal brain. No qualitative changes of the normal CK isoenzyme pattern were observed in the tumours.

Adult↗

Cerebellar cortex delayed maturation in sudden infant death syndrome.

The cerebellum shows afferent and efferent connections with intrinsic bulbar nuclei and plays an important role in respiration and cardiovascular control. Pathological and neurochemical abnormalities of bulbar nuclei including the arcuate nucleus have been postulated in sudden infant death syndrome (SIDS). Most of these abnormalities have been related to impairment in brain development. The cerebellar cortex has a well-documented evolution from fetal life until infancy; thus, it may be a very good model to assess brain maturation in SIDS. The present study was conducted to investigate changes in the cerebellar cortex in 19 SIDS cases compared with 12 age-related controls using morphological, quantitative, and statistical approaches. Five-microns paraffin sections from the midsagittal cerebellar vermis were stained with hematoxylin and eosin (H&E). Immunohistochemical staining was carried out using a polyclonal antiserum to glial fibrillary acidic protein (GFAP). Each case consisted of a 25-microns parallel paraffin section stained with H&E, where the cerebellar external granular layer (EGL) cell density was obtained in one field magnification (x1,000) using an optical dissector procedure on the basis of a stereological method. A statistically significant high EGL cell density, mostly related to the presence of immature bipolar, elongated neuronal cells of the premigratory zone with hyperchromatic, oval or poor differentiated nuclei, was observed in SIDS. In these cases, EGL expressed immunoreactivity for GFAP mainly in the subpial and the postmitotic zone. These findings demonstrate a delayed or slower decline in the number of EGL neurons in SIDS, suggesting either a prolongation of the growth phase related to postnatal cerebellar foliation or a delay in inward migration. These results suggest that in SIDS there is delayed maturation of the cerebellar cortex/EGL, which may support the hypothesized cardiopulmonary control dysfunction, leading to death in a vulnerable period of postnatal development.

Adult↗

Prognostic analysis of astrocytic gliomas correlating histological parameters with the proliferating cell nuclear antigen labelling index (PCNA-LI).

Eighty out of 250 cases of astrocytic glioma collected from a practice served by a single clinical team over a 15-year period were studied using a full complement of clinical, follow up, histopathological analysis and proliferating cell nuclear antigen (PCNA) immunostaining for the obtention of the PCNA-labelling index (LI). A statistical evaluation and discriminant analysis were carried out with the aim of clarifying the importance of various parameters as predictors of tumor behaviour. Data are correlated with survival (with a 10-year follow up). A significant correlation with survival was found when histological grouping and the PCNA-LI were studied with the Cox test. Most significant features were histological as detected using classical techniques including histological grading. The utilization of objective values (mitosis, cellular density and necrosis) appears to be useful in grading astrocytic tumors. Our results emphasize the importance of cytological, histological and PCNA-LI parameters as predictors of tumor behaviour.

Adolescent↗

Ethical aspects to be considered in brain banking.

A brain bank is a prospective source of adequately collected and preserved tissues of the central nervous system obtained via a donor program, which are supplied for neurobiological research. Brain tissue banks collect brains, serum and cerebro-spinal fluid from patients suffering from neurological disorders such as Alzheimer's diseases, Parkinson's disease and multiple sclerosis for diagnostic purposes and for the development of future diagnostic tests. To create and develop the right infrastructure underlying brain bank activities, one should have a medico-legal and ethical support according to local legislation. From an ethical point of view, brain bank activities can be divided into the following categories: a) factors related to the donor program; b) factors related to handling and management of organs; c) factors related to scientific research. The present paper deals with the above mentioned issues according to world-wide recognised ethical considerations and recommendations of several official statements, and specifies the objectives of the European Brain Bank Network (EBBN).

Adult↗

Homozygosity at the dopamine D3 receptor gene in schizophrenic patients.

Dopamine receptors have long been implicated in the etiology of schizophrenia. It has been reported an association of schizophrenia with homozygosity at the dopamine D3 receptor gene locus. We have investigated the distribution of a D3 receptor gene polymorphism (BalI) in 107 schizophrenic Spanish patients and 100 healthy matched controls. No statistically significant differences between the patients and control group were detected with respect to either allele frequencies or genotype distribution. However, if not corrected for multiple testing, a correlation was found between homozygosity and early age of onset of schizophrenia (chi 2 = 3.1, df = 1, P = 0.03) and between A1 allele frequency and disorganized and undifferentiated schizophrenia (chi 2 = 3.4, df = 1, P = 0.03; chi 2 = 2.7, df = 1, P = 0.05, respectively). These results suggest the possibility that D3 polymorphisms may be among the physiological factors underlying schizophrenia; though not the determining factor.

Aged↗

A null mutation allele in the CNTF gene and schizophrenic psychoses.

The maldevelopmental theory postulates disturbances in neural development as crucial factors in the aetiopathogenesis of schizophrenia. Neurotrophic factors, including ciliary neurotrophic factor (CNTF), play a central role in the regulation of such development. A mutation has been described for the CNTF gene, whereby subjects homozygous for the mutation lack CNTF. The polymerase chain reaction was used to amplify the CNTF gene region containing this mutation in whole blood genomic DNA. The mutation was detected by analysis of restriction fragment length polymorphisms. Patients suffering from schizophrenic psychosis (ICD-10 criteria) (51 from Würzburg, 83 from Barcelona), and healthy controls (62 from Würzburg, 50 from Barcelona) were investigated. In the Würzburg group, the frequency of subjects homozygous or heterozygous for the mutation was significantly higher among schizophrenic patients than in controls. However, no difference could be detected in the Spanish sample; the possible reasons for the different allele distribution in the two patient groups is discussed. It is concluded that the CNTF null mutation may be relevant to the aetiopathogenesis of schizophrenia in some patients, but further work is required to identify specifically the patient group for which it is important.

Adult↗