PubMed Health⌕ Search

Biomedical subjects

David Butler

Publications and source records attributed to David Butler.

14 recordsLinked to original sources

Potential compensatory responses through autophagic/lysosomal pathways in neurodegenerative diseases.

Intracellular protein degradation decreases with age, altering the important balance between protein synthesis and breakdown. Slowly, protein accumulation events increase causing axonopathy, synaptic deterioration, and subsequent cell death. As toxic species accumulate, autophagy-lysosomal protein degradation pathways are activated. Responses include autophagic vacuoles that degrade damaged cellular components and long-lived proteins, as well as enhanced levels of lysosomal hydrolases. Although such changes correlate with neuronal atrophy in age-related neurodegenerative disorders and in related models of protein accumulation, the autophagic/lysosomal responses appear to be compensatory reactions. Recent studies indicate that protein oligomerization/ aggregation induces autophagy and activates lysosomal protein degradation in an attempt to clear toxic accumulations. Such compensatory responses may delay cell death and account for the gradual nature of protein deposition pathology that can extend over months/years in model systems and years/decades in the human diseases. Correspondingly, enhancement of compensatory pathways shifts the balance from pathogenesis to protection. Positive modulation of protein degradation processes represents a strategy to promote clearance of toxic accumulations and to slow the synaptopathogenesis and associated cognitive decline in aging-related dementias.

Aging↗

1-(4-Methylphenyl)-2-pyrrolidin-1-yl-pentan-1-one (Pyrovalerone) analogues: a promising class of monoamine uptake inhibitors.

Dopamine, serotonin, and norepinephrine are essential for neurotransmission in the mammalian system. These three neurotransmitters have been the focus of considerable research because the modulation of their production and their interaction at monoamine receptors has profound effects upon a multitude of pharmacological outcomes. Our interest has focused on neurotransmitter reuptake mechanisms in a search for medications for cocaine abuse. Herein we describe the synthesis and biological evaluation of an array of 2-aminopentanophenones. This array has yielded selective inhibitors of the dopamine and norepinephrine transporters with little effect upon serotonin trafficking. A subset of compounds had no significant affinity at 5HT1A, 5HT1B, 5HT1C, D1, D2, or D3 receptors. The lead compound, racemic 1-(4-methylphenyl)-2-pyrrolidin-1-yl-pentan-1-one 4a, was resolved into its enantiomers and the S isomer was found to be the most biologically active enantiomer. Among the most potent of these DAT/NET selective compounds are the 1-(3,4-dichlorophenyl)- (4u) and the 1-naphthyl- (4t) 2-pyrrolidin-1-yl-pentan-1-one analogues.

Adrenergic Uptake Inhibitors↗

Development of a GC-MS method for the simultaneous analysis of latent fingerprint components.

Latent fingerprint residue is a complex mixture of organic and inorganic compounds. A full understanding of the composition of this mixture and how it changes after deposition is lacking. Three solvent systems were compared for the simultaneous extraction and derivatization with ethyl chloroformate of selected amino and fatty acids from a nonporous substrate (Mylar for subsequent analysis by gas chromatography-mass spectrometry. A solvent system comprised of sodium hydroxide, ethanol, and pyridine was found to be the most effective. This method was applied to the analysis of latent fingerprint residue deposited on Mylar and preliminary data are presented. Twelve amino acids (e.g., serine, glycine, and aspartic acid) and 10 fatty acids (e.g., tetradecanoic, hexadecanoic, and octadecanoic acids) were identified. The potential application of this method to further the understanding of latent fingerprint chemistry has been demonstrated.

Amino Acids↗

Cellular responses to protein accumulation involve autophagy and lysosomal enzyme activation.

Protein oligomerization and aggregation are key events in age-related neurodegenerative disorders, causing neuronal disturbances including microtubule destabilization, transport failure and loss of synaptic integrity that precede cell death. The abnormal buildup of proteins can overload digestive systems and this, in turn, activates lysosomes in different disease states and stimulates the inducible class of lysosomal protein degradation, macroautophagy. These responses were studied in a hippocampal slice model well known for amyloidogenic species, tau aggregates, and ubiquitinated proteins in response to chloroquine-mediated disruption of degradative processes. Chloroquine was found to cause a pronounced appearance of prelysosomal autophagic vacuoles in pyramidal neurons. The vacuoles and dense bodies were concentrated in the basal pole of neurons and in dystrophic neurites. In hippocampal slice cultures treated with Abeta(142), ultrastructural changes were also induced. Autophagic responses may be an attempt to compensate for protein accumulation, however, they were not sufficient to prevent axonopathy indicated by swellings, transport deficits, and reduced expression of synaptic components. Additional chloroquine effects included activation of cathepsin D and other lysosomal hydrolases. Abeta(142) produced similar lysosomal activation, and the effects of Abeta(142) and chloroquine were not additive, suggesting a common mechanism. Activated levels of cathepsin D were enhanced with the lysosomal modulator Z-Phe-Ala-diazomethylketone (PADK). PADK-mediated lysosomal enhancement corresponded with the restoration of synaptic markers, in association with stabilization of microtubules and transport capability. To show that PADK can modulate the lysosomal system in vivo, IP injections were administered over a 5-day period, resulting in a dose-dependent increase in lysosomal hydrolases. The findings indicate that degradative responses can be modulated to promote synaptic maintenance.

Animals↗

Cytokeratin 7/20 and MUC1, 2, 5AC, and 6 expression patterns in Barrett's esophagus and intestinal metaplasia of the stomach: intestinal metaplasia of the cardia is related to Barrett's esophagus.

Intestinal metaplasia (IM) in endoscopic biopsies obtained from close to the gastroesophageal junction may represent IM of the cardia (CIM) or Barrett's esophagus (BE), which have different malignant potentials despite similar morphology. This study compared cytokeratin (CK) 7/20 and mucin (MUC1, 2, 5AC, and 6) immunopatterns in biopsies from BE (n = 41), CIM (n = 35), and antral gastric IM (AIM, n = 37) to evaluate their roles as diagnostic aids. CK7 and CK20 expression was described as absent, patchy (superficial and deep), continuous superficial only, continuous deep only, and diffuse. Eleven different combinations of CK7/20 expression were seen. Since CK20 staining was positive in all cases, four main patterns were defined on the basis of the observed CK7 staining as 1, absent; 2, patchy (superficial and/or deep); 3, diffuse; and 4, continuous superficial only. Overall CK7 positivity (regardless of pattern) was higher in BE and CIM than in AIM. CK patterns 3 and 4 were also higher in BE and CIM than in AIM. For either pattern 3 or 4, the positive and negative predictive values for BE versus AIM were 95% and 67%, respectively. MUC1 was rarely expressed in BE and CIM compared with AIM, whereas the opposite was noted for MUC5AC expression. MUC2 and MUC6 expression was similar in all locations. In conclusion, diffuse or continuous superficial CK7 staining is highly characteristic of BE and CIM and contrasts with AIM. It is, however, not very sensitive. CK20 profiles have no added value. Mucin expression also differs between BE and CIM versus AIM, but the specificity of any pattern is insufficient for distinction in individual cases. Importantly, CK and MUC expression patterns in BE and CIM are virtually indistinguishable, limiting their use in this differential and raising the question of whether they are biologically related.

Barrett Esophagus↗

Investigation into a possible association between oral lichen planus, the human herpesviruses, and the human papillomaviruses.

BACKGROUND: Oral lichen planus (OLP) is a chronic relapsing cell-mediated condition of unknown etiology. The purpose of this study was to ascertain if the human herpesviruses (HHVs) or human papillomaviruses (HPVs) act as possible factors or co-factors in the pathogenesis of OLP. METHODS: Thirty-eight histologically confirmed OLP and 20 normal control buccal mucosa tissue samples were analyzed. Polymerase chain reaction analysis was employed to detect members of the HHV and HPV families. RESULTS: The Epstein-Barr virus and HHV-7 were detected in a small percentage of tissue samples. However, HPV-16 was detected in 26.3% of OLP samples and 0% of the normal control tissues. The epidermodysplasia verruciformis-related HPV types were detected in 42% of OLP samples and 45% of normal control samples. CONCLUSION: The results of this study do not suggest a causative role for members of the HHV family in the pathology of OLP. However, a statistical association was found between HPV-16 presence and OLP.

Base Sequence↗

Adenomatous polyposis coli gene, beta-catenin, and E-cadherin expression in proximal and distal gastric cancers and precursor lesions: an immunohistochemical study using tissue microarrays.

The aims of this study were (1) to compare protein expression of adenomatous polyposis coli (APC) gene, beta-catenin, and E-cadherin between proximal and distal gastric adenocarcinomas and (2) to investigate their use as markers of cancer risk in intestinal metaplasia (IM). The epidemiology of proximal (cardia and gastroesophageal junction) and distal (antrum and corpus) gastric carcinomas is strikingly different despite similar morphologies. Carcinoma of the distal stomach is decreasing in incidence, whereas proximal carcinomas are increasing in incidence more than any other cancer in the Western world. This phenomenon has so far not been satisfactorily explained. IM is a well-established precursor for adenocarcinoma in the distal stomach but less so in the proximal stomach. However, its specificity as a predictor of gastric carcinoma is very low. Abnormalities of APC, beta-catenin, and E-cadherin are implicated in carcinogenesis of the stomach and may show aberrant expression at early stages of the neoplastic process. This study evaluated their immunoprofiles in 3 groups: biopsies showing normal mucosa (n = 108), biopsies showing IM (n = 99), and gastric cancer resections (n = 117). In the last group, carcinoma and noninvolved mucosa were studied. All groups included material from both proximal and distal locations. The results of this study showed that there were no differences between proximal and distal locations with regard to APC, beta-catenin, or E-cadherin expression. In both locations, high normal expression rates for all 3 molecules were present in biopsies showing normal gastric mucosa or IM and noninvolved mucosa from gastric cancer resections. In carcinomas, there was a significant decrease in both APC and E-cadherin expression, whereas beta-catenin showed abnormal cytoplasmic and nuclear staining. Diffuse-type cancers showed significantly lower E-cadherin expression than intestinal types. Noninvolved mucosa from cancer resections showed normal APC, beta-catenin, and E-cadherin expression regardless of adjacent tumor type and whether the mucosa was morphologically normal or showed IM. In conclusion, proximal and distal gastric carcinomas show no differences in expression of APC, beta-catenin, or E-cadherin; thus, the observed abnormalities do not seem to contribute to the observed epidemiologic differences between these tumors. Because loss of APC, decreased E-cadherin, or abnormal beta-catenin expression did not occur in IM, even when associated with carcinoma these immunostains are unlikely to be of value in the assessment of malignant potential in IM.

Adult↗

CD44v6: a potential marker of malignant transformation in intestinal metaplasia of the stomach? An immunohistochemical study using tissue microarrays.

OBJECTIVE: Intestinal metaplasia is a well-established risk factor in the development of stomach cancer. However, since the specificity is low it would be of great practical value to find a marker to separate cases of intestinal metaplasia into low and high risk for progression to dysplasia/carcinoma. So far this has not been achieved. CD44 is a cell surface molecule involved in cell-cell and cell-matrix interactions, and the spliced variant 6 has been shown to play a role in the progression of gastric carcinoma. The aim of this study was therefore to evaluate CD44v6 as a marker of increased cancer risk in intestinal metaplasia. METHODS: The current study investigated immunohistochemical CD44v6 expression in biopsies of normal gastric mucosa (n = 154) and gastric mucosa with intestinal metaplasia (n = 127). A third group consisted of cancer gastrectomies (n = 117) in which both tumour and uninvolved mucosa was studied. Proximal (cardia) and distal (corpus/antrum) locations were noted in all cases. RESULTS: There was a significant sequential increase in CD44v6 expression from normal mucosa and mucosa showing intestinal metaplasia to uninvolved mucosa adjacent to cancers without and with intestinal metaplasia to tumour. The most striking increase was from 'normal' to intestinal metaplastic mucosa adjacent to cancers. There were no differences between proximal and distal cases in any group. CONCLUSION: These findings strongly suggest that CD44v6 expression is a late phenomenon in the transformation of intestinal metaplasia to dysplasia/cancer. It may therefore be a useful marker of cancer risk in patients with intestinal metaplasia.

Adult↗

Loss of Fhit expression as a potential marker of malignant progression in preinvasive squamous cervical cancer.

OBJECTIVE: In a previous study using the same cases of squamous cervical neoplasia and microinvasive carcinoma (MICA) we found an association between FHIT gene deletion and infection with high-risk HPV (HR HPV). The purpose of this study was to evaluate Fhit protein expression by immunohistochemistry in order to determine whether FHIT gene deletion or infection with HR HPV correlated with aberrant protein expression and grade of lesion. METHODS: A total of 74 archival LLETZ biopsy cases consisting of 23 cervical intraepithelial neoplasia grade 1 (CIN1), 28 CIN3, and 23 MICA cases were selected for Fhit immunostaining. The results of this study on Fhit immunostaining were analyzed in relation to our previous findings using Epi-Info and SPSS-PC statistical analysis software. RESULTS: Fifty percent (14/28) of CIN3 lesions and 78% (18/23) of MICA lesions had a marked reduction or absence of Fhit protein expression (P = <0.001, strength of association, Cramers' V, 0.632). CIN1 lesions were found to have moderate to strong cytoplasmic expression of Fhit. Seventy percent of cases in this study with reduced/absent Fhit protein expression were also positive for FHIT gene loss of heterozygosity (LOH) (P = 0.04, strength of association, phi, 0.254). A significant statistical relationship was found between Fhit protein expression and HPV 16 infection in combined CIN1, CIN3, and MICA cases (P = <0.001). Eighty-seven percent of cases with reduced/absent Fhit protein expression were positive for HPV 16 (strength of association, phi, 0.552). Ninety percent of HPV 16 and 31 positive cases had reduced/absent Fhit expression. CONCLUSION: Our findings suggest an association between HPV infection and FHIT gene abnormalities raising the possibility of a mechanistic role for the FHIT gene as a cofactor with HPV in triggering the development of cervical cancer.

Acid Anhydride Hydrolases↗

Oxidative stress and lysosomes: CNS-related consequences and implications for lysosomal enhancement strategies and induction of autophagy.

The central nervous system is notable for its level of oxygen utilization and ATP synthesis, resulting in a distinct susceptibility to oxidative stress. Generation of reactive oxygen species (ROS) can occur with mitochondrial respiration as well as during other aspects of cellular homeostasis maintained through a balance between biosynthesis and catabolism. Altered catabolic processes often promote oxidative stress, and the autophagy-lysosome pathway stands out as being both affected by and contributing to the resulting stress. ROS production is increased by aging, excitotoxicity, and aberrant protein processing, just a few of the events that also influence lysosomal degradative mechanisms. Oxidative damage leads to very different outcomes, such as compromise of lysosome integrity as well as potential compensatory responses involving amplification of lysosomal enzymes and induced autophagy. Lysosomal activation occurs with brain aging, is a characteristic feature of Alzheimer's disease, and has been suggested to be an avenue for preventing protein accumulation pathology. This review provides examples from the literature to discuss the role of lysosomes in oxidative damage, the brain's distinct vulnerability, and issues regarding the enhancement of lysosomal capacity and autophagic processes.

Aging↗

In-sewer wastewater characterization and model parameter determination using respirometry.

Experimental determination of wastewater characteristics and model parameters is required for robust modeling of in-sewer processes. Respirometric assays can be used to determine some of the model parameters, thus reducing the number of model parameters to be determined by model calibration and verification. However, the model structure has to be considered for this purpose. The model used consists of three main modules, namely hydrodynamics, advection and dispersion, and biochemical processes, and is applicable in sewers under aerobic dry-weather flow conditions. A procedure is proposed to determine important chemical oxygen demand (COD) fractions and model parameters for biochemical processes. Cumulative oxygen utilization proves to be useful for process identification, providing extra information on substrate availability during the assay. While the values obtained for both COD fractions and parameters depend on the model structure adopted, the procedure used can easily be adapted to other model formulations.

Bacteria, Aerobic↗