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The evolution of experimental Trypanosoma cruzi cardiomyopathy in rabbits: further parasitological, morphological and functional studies.

Young rabbits (1-2 months of age) inoculated with trypomastigote forms of the Colombia strain of Trypanosoma cruzi have been shown to develop cardiac pathological changes (together with parasitological and immunological alterations) which are very similar to those observed in the acute and chronic phases of Chagas' disease in man. The cardiac alterations in the acute phase are characterized grossly by slight cardiomegaly with dilatation of the right-sided chambers. Microscopically they are characterized by mild focal myocarditis. The chronic phase is characterized by moderate to marked cardiomegaly with hypertrophy and dilatation of both ventricular chambers. There is thinning of the apical region (apical aneurysm), particularly of the left ventricle. Focal myocarditis is seen microscopically with areas of myocytolytic necrosis, atrophic and hypertrophic myofibers, an inflammatory response predominantly composed of mononuclear cells and interstitial fibrosis. Cineventriculography in the left ventricle of rabbits during the chronic phase disclosed regional myocardial dysfunction, with typical apical systolic bulging. The pathogenesis of Chagasic cardiomyopathy is briefly discussed in the light of these findings. Our investigation has further shown that this animal model is particularly suitable for studies on on the mechanisms, pathology and treatment of Chagas' heart disease.

Actin Cytoskeleton↗

Experimental RNA evolution.

The recent ability to select functional RNA molecules through combinatorial chemistry has ignited exobiological research by offering a set of tools for testing early theories of RNA evolution without the need for organisms. This process can retrieve molecules present in as few as one in 1 x 1015 sequences, which suggests that careful design may allow 'resuscitation' of active RNA molecules that have been 'extinct' for over three billion years, if they ever 'lived' at all. These experiments now provide a wonderful setting for exploring the basic process of evolution at its most fundamental level - a single molecule - as well as providing a window onto the set of building blocks and constraints that would have defined many events in prebiotic evolution.

Journal Article↗

Evolution of experimentally induced papillary necrosis to focal segmental glomerulosclerosis and nephrotic proteinuria.

Bromoethylamine (BEA)-induced papillary necrosis is a reproducible model for analgesic nephropathy. We induced this lesion in groups of male Sprague-Dawley rats and followed the functional and histological changes for 1 year. We found that by 1 month, necrosis of the papilla was complete, glomerular filtration rate was depressed, and urine albumin excretion was increased. There was an extensive interstitial fibrosis characterized by a mononuclear cell infiltrate and patchy tubular atrophy. By 6 months, there was re-epithelialization of the papillary stump accompanied by a marked increase in albuminuria and an improvement in concentrating ability. Changes seen at 9 months were more advanced. There was extensive cortical fibrosis manifested by pitting of the surface of the kidney. At 1 year, renal function remained impaired (creatinine clearance reduced by 65% to 0.26 mL/min/100 g), and the animals were now markedly nephrotic, with albuminuria of 254 mg of albumin/24 h. In the BEA rats, there was selective destruction of the deep nephrons leading to an increase in the volume-ratio of superficial to deep nephrons. Glomerular changes, affecting approximately 60% of the glomeruli, were characteristic of focal segmental glomerular sclerosis. This model of papillary necrosis/interstitial fibrosis is associated with chronic renal insufficiency and leads to the development of focal glomerular sclerosis and nephrotic proteinuria by 6 to 12 months after its induction.

Animals↗

Histopathological evolution of experimental paracoccidioidomycosis in Wistar rats.

Twenty Wistar rats were inoculated, by the intracardiac route, with 0.5 ml each of a yeast phase suspension of Paracoccidioides brasiliensis Utero strain. The rats were sacrificed at regular intervals post-infection, at which time their lungs, heart, liver, spleen and kidneys were removed, fixed and stained for study. The parameters of interest for the lung specimens were: (a) extent of the lesions; (b) number of fungi; (c) presence of a lymphomononuclear halo. Extrapulmonary lesions were also sought. Until the fourth month post-infection, the lesions were progressive in nature, contained great numbers of viable fungi, and were surrounded by an important lymphomononuclear halo which tended to be confluent. At four and a half months p.i., the extent of the pulmonary lesions was reduced, the granulomas were less compact with fewer viable fungi, macrophages showed microvacuolation, and the lymphomononuclear halo was less pronounced. Extrapulmonary lesions, which were frequently identified in the first months post-infection, diminished from the seventh month onwards. The histological characteristics of extrapulmonary lesions were always the same as those found in the lungs. Infection tended to be controlled by the animals from the fourth month, but without complete resolution of the lesions.

Animals↗

Experimental social evolution with Myxococcus xanthus.

Genetically-based social behaviors are subject to evolutionary change in response to natural selection. Numerous microbial systems provide not only the opportunity to understand the genetic mechanisms underlying specific social interactions, but also to observe evolutionary changes in sociality over short time periods. Here we summarize experiments in which behaviors of the social bacterium Myxococcus xanthus changed extensively during evolutionary adaptation to two relatively asocial laboratory environments. M. xanthus moves cooperatively, exhibits cooperative multicellular development upon starvation and also appears to prey cooperatively on other bacteria. Replicate populations of M. xanthus were evolved in both structured (agar plate) and unstructured (liquid) environments that contained abundant resources. The importance of social cooperation for evolutionary fitness in these habitats was limited by the absence of positive selection for starvation-induced spore production or predatory efficiency. Evolved populations showed major losses in all measured categories of social proficiency- motility, predation, fruiting ability, and sporulation. Moreover, several evolved genotypes were observed to exploit the social behavior of their ancestral parent when mixed together during the developmental process. These experiments that resulted in both socially defective and socially exploitative genotypes demonstrate the power of laboratory selection experiments for studying social evolution at the microbial level. Results from additional selection experiments that place positive selection pressure on social phenotypes can be integrated with direct study of natural populations to increase our understanding of principles that underlie the evolution of microbial social behavior.

Biological Evolution↗

Cellular events in the evolution of experimental diabetic nephropathy.

In several models of progressive glomerular disease, mesangial cell proliferation, phenotypic change and increased growth factor expression precede up-regulation of genes for extracellular matrix components (ECM) and mesangial expansion. To examine these events in diabetic nephropathy (DN) we conducted sequential studies of glomeruli in rats with streptozotocin induced DN. We found prominent mesangial cell proliferation at three days (4.34 +/- 2.24 PCNA + cells/glom vs. 1.6 +/- 0.74 in controls, P < 0.001) associated with increased alpha-actin expression. PDGF B-chain mRNA was slightly increased at day one, and PDGF B-chain immunostaining was slightly increased at days one and six. Staining for bFGF was significantly increased at three days (2.2 +/- 0.6 vs. 1.2 +/- 0.1 in controls, P < 0.01). There was also an early increase in platelets in glomeruli of diabetic animals, and platelet depletion significantly inhibited the early phase of proliferation. In addition to mesangial cell proliferation, a prominent glomerular macrophage infiltration began at day three and peaked at day 30 (3.94 +/- 1.47 vs. 2.08 +/- 1.13 in controls, P < 0.01). TGF-beta mRNA increased at days 14 and 30. Insulin treatment prevented mesangial cell proliferation, actin expression, and macrophage infiltration, and normalized TGF-beta expression at 14 and 30 days. These multiple cellular events preceded any detectable increases in glomerular gene expression or deposition of collagen I, IV or laminin.

Animals↗

Experimental genome evolution: large-scale genome rearrangements associated with resistance to replacement of a chromosomal restriction-modification gene complex.

Type II restriction enzymes are paired with modification enzymes that protect type II restriction sites from cleavage by methylating them. A plasmid carrying a type II restriction-modification gene complex is not easily replaced by an incompatible plasmid because loss of the former leads to cell death through chromosome cleavage. In the present work, we looked to see whether a chromosomally located restriction-modification gene complex could be replaced by a homologous stretch of DNA. We tried to replace the PaeR7I gene complex on the Escherichia coli chromosome by transducing a homologous stretch of PaeR7I-modified DNA. The replacement efficiency of the restriction-modification complex was lower than expected. Some of the resulting recombinant clones retained the recipient restriction-modification gene complex as well as the homologous DNA (donor allele), and slowly lost the donor allele in the absence of selection. Analysis of their genome-wide rearrangements by Southern hybridization, inverse polymerase chain reaction (iPCR) and sequence determination demonstrated the occurrence of unequal homologous recombination between copies of the transposon IS3. It was strongly suggested that multiple rounds of unequal IS3-IS3 recombination caused large-scale duplication and inversion of the chromosome, and that only one of the duplicated copies of the recipient PaeR7I was replaced.

Chromosomes, Bacterial↗

Expression of inducible nitric oxide synthase and nitrotyrosine during the evolution of experimental pulmonary tuberculosis.

Nitric oxide (NO) is a relevant antimycobacterial factor in mouse macrophages. NO is a product of inducible nitric oxide synthase (iNOS). NO toxicity is greatly enhanced by reacting with superoxide to form peroxynitrite that reacts with many biological molecules. Tyrosine is one of the molecules with which NO reacts and the product is nitrotyrosine (NT). The production of peroxynitrite and the nitrosylation of proteins might play a role in bacterial killing and also in mediating host injury. In this study, we used a well-characterized mouse model of pulmonary tuberculosis to examine the local kinetics of expression and cellular distribution of iNOS and NT at the cellular and subcellular level. The histopathological study showed two phases of the disease: early and late. The early phase was characterized by mononuclear inflammation and granuloma formation. During this phase, high percentages of activated macrophages were observed that were immunostained for iNOS and NT. Immuno-electronmicroscopy showed NT immunoreactivity in lysosomes and mycobacterial wall and cytoplasm. The concentration of iNOS mRNA and NO metabolites were also elevated. The late phase was characterized by progressive pneumonia with focal necrosis and a decrease of iNOS mRNA and NO metabolites. The strongest NT immunostained areas were the necrotic tissue. Macrophages became foamy cells with scarce iNOS immunostaining but strong NT immunoreactivity. At the ultrastructural level, these cells showed NT immunolabeling in cytoskeleton, mitochondria, lysosomes and cell membrane. NT was also located in bronchial epithelial cell mitochondria, in cell membranes and cytoplasm of endothelial cells and in actin bundles within smooth muscle cells. These results suggest an important role of NO in mycobacterial killing, particularly during the early phase of the infection. They also suggest an important participation by NO in tissue damage during the late phase of the disease.

Animals↗

Experimental genomic evolution: extensive compensation for loss of DNA ligase activity in a virus.

Deletion of the viral ligase gene drastically reduced the fitness of bacteriophage T7 on a ligase-deficient host. Viral evolution recovered much of this fitness during long-term passage, but the final fitness remained below that of the intact virus. Compensatory changes occurred chiefly in genes involved in DNA metabolism: the viral endonuclease, helicase, and DNA polymerase. Two other compensatory changes of unknown function also occurred. Using a method to distinguish compensatory mutations from other beneficial mutations, five additional substitutions from the recovery were shown to enhance adaptation to culture conditions and were not compensatory for the deletion. In contrast to the few previous studies of viral recovery from deletions, the compensatory changes in T7 did not restore the deletion or duplicate major regions of the genome. The ability of this deleted genome to recover much of the lost fitness via mutations in its remaining genes reveals a considerable evolutionary potential to modify the interactions of its elements in maintaining an essential set of functions.

Adaptation, Physiological↗

Effect of reticuloendothelial stimulators on the tissue changes and evolution of experimental atheroma in rabbits.

Administration of histamine phosphate or glycerol trioleate (RE stimulators) to cholesterol-fed rabbits induced identical pattern of changes in cholesterol, phospholipid and triglyceride levels of the blood. However, the incidence of atheroma index in aorta and coronary arteries were significantly higher in histamine-treated and glycerol-trioleate-treated animals compared to cholesterol-fed controls. The rise in these indices appeared to be only partly related to increase in serum beta-lipoproteins but mostly due to increased permeability of the endothelium and internal elastic lamina probably caused by histamine phosphate and glycerol trioleate resulted in greater degree of atheromatous lesions in those groups.

Animals↗

Angiotensin II in the evolution of experimental heart failure.

Although angiotensin II (Ang II) has been implicated in the pathophysiology of congestive heart failure, its temporal and regional changes during the development and progression of the disease are poorly defined. Our objective was to assess circulating, renal, cardiac, and vascular Ang II in a canine model of rapid ventricular pacing-induced heart failure that evolves from early left ventricular dysfunction to overt congestive heart failure. Ang II was measured by radioimmunoassay with low cross-reactivity to other angiotensins. Control, early left ventricular dysfunction, and overt congestive heart failure dogs were studied. Early left ventricular dysfunction was characterized by impaired cardiac function, cardiac enlargement, preserved renal perfusion pressure, maintained urinary sodium excretion, and normal plasma renin activity. Overt congestive heart failure was characterized by further impaired cardiac function and cardiac enlargement, reduced renal perfusion pressure, urinary sodium retention, and increased plasma renin activity and plasma Ang II. In early left ventricular dysfunction dogs, renal cortical, renal medullary, ventricular, and aortic Ang II were unchanged, and atrial Ang II was decreased. In overt congestive heart failure dogs, Ang II was increased in the kidney and heart compared with normal dogs and in all tissues compared with early left ventricular dysfunction dogs. The greatest increase in tissue Ang II occurred in the renal medulla. We conclude that early increases in local renal, myocardial, and vascular Ang II do not occur in this model of early left ventricular dysfunction and may even be suppressed. In contrast, increased myocardial and particularly renal Ang II in association with increased circulating Ang II are hallmarks of overt experimental congestive heart failure. These studies provide new insights into the temporal and regional alterations in Ang II during the progression of experimental congestive heart failure.

Angiotensin II↗

Phenotypic heterogeneity influences apoptotic susceptibility to retinoic acid and cis-platinum of rat arterial smooth muscle cells in vitro: Implications for the evolution of experimental intimal thickening.

Rat aortic smooth muscle cells (SMCs) cultured from intimal thickening 15 days after endothelial injury (IT-15), unlike those of normal media, show a monolayered, epithelioid phenotype and high levels of cellular retinol binding protein-1 (CRBP). Epithelioid clones obtained from the normal media suggest a "mosaicism" of arterial SMCs. Intimal cell homeostasis from the balance of proliferation and apoptosis is critical for the progression of vascular lesions. All-trans retinoic acid (tRA) reduced [(3)H]thymidine incorporation and G(1)-->S phase progression of IT-15 and epithelioid clone but not of normal media and IT 60 days after injury (IT-60) SMCs. Hoechst staining, flow cytometry, and ligation-mediated polymerase chain reaction showed an increased susceptibility of IT-15 and epithelioid clone to tRA and cis-diaminedichloroplatinum II (CDDP)-induced apoptosis and cytotoxicity compared with normal media and IT-60 cells. The latter retained an increased susceptibility to tRA-induced apoptosis compared with normal media SMCs. tRA-induced apoptosis associated with an increased ratio of bax to bcl-2 by bax overexpression and cleavage of caspase-3. Anti-CRBP but not anti-IgG antibody prevented tRA-induced apoptosis and changes in related signaling molecules but not CDDP effects. Our findings support the relevant role of phenotypic heterogeneity in the determining proliferative as well as apoptotic behavior of arterial SMCs.

Animals↗