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N Ma

Publications and source records attributed to N Ma.

At least 37 records · Page 2Linked to original sources

Saturation mutagenesis of the E. coli RecA loop L2 homologous DNA pairing region reveals residues essential for recombination and recombinational repair.

The disordered mobile loop L2 of the Escherichia coli RecA protein is known to play a central role in DNA binding and pairing. To investigate the local chemical environment in relation to function we performed saturation mutagenesis of the loop L2 region (amino acid positions 193-212) using a site-directed mutagenesis procedure, and determined the recombinational proficiency of the 380 mutants using genetic assays for homologous recombination and recombinational repair. Residues Asn193, Gln194, Arg196, Glu207, Thr209, Gly211, and Gly212 were identified as stringently required for recombinational events in bacterial cells. In addition, our findings suggest the involvement of loop L2 in the ATPase activity of RecA, and a role for residues Gln194, Arg196, Lys198 and Thr209 in the DNA-dependent hydrolysis of ATP. Finally, since 20 residue peptides that comprise this region can pair homologous DNAs by forming filamentous beta-structures, we propose how the information from the mutant analysis might facilitate the use of a simplified amino acid alphabet to design beta-structure forming L2 peptides with improved RecA-like activities.

DNA Repair↗

The Arabidopsis blue light receptor cryptochrome 2 is a nuclear protein regulated by a blue light-dependent post-transcriptional mechanism.

Cryptochrome 2 is a flavin-type blue light receptor mediating floral induction in response to photoperiod and a blue light-induced hypocotyl growth inhibition. cry2 is required for the elevated expression of the flowering-time gene CO in response to long-day photoperiods, but the molecular mechanism underlying the function of cry2 is not clear. The carboxyl domain of cry2 bears a basic bipartite nuclear localization signal, and the cry2 protein was co-fractionated with the nucleus. Analysis of transgenic plants expressing a fusion protein of CRY2 and the reporter enzyme GUS (GUS-CRY2) indicated that the GUS-CRY2 fusion protein accumulated in the nucleus of transgenic plants grown in dark or light. The C-terminal domain of cry2 that contains the basic bipartite nuclear localization signal was sufficient to confer nuclear localization of the fusion protein. Phenotypic analysis of transgenic plants expressing the fusion protein GUS-CRY2 demonstrated that GUS-CRY2 acts as a functional photoreceptor in vivo, mediating the blue light-induced inhibition of hypocotyl elongation. These results strongly suggest that cry2 is a nuclear protein. Although no obvious light regulation was found for the nuclear compartmentation of GUS-CRY2 fusion protein, the abundance of GUS-CRY2 was regulated by blue light in a way similar to that of cry2.

Amino Acid Sequence↗

VEGF increases retinal vascular ICAM-1 expression in vivo.

PURPOSE: Intraocular injections of vascular endothelial growth factor (VEGF), a peptide implicated in the pathogenesis of diabetic retinopathy, can induce retinal ischemia. Diabetic retinal ischemia may be caused, in part, by the adhesion of leukocytes to the retinal vasculature. In this study, the ability of VEGF to increase the expression of intercellular adhesion molecule-1 (ICAM-1) and other adhesion molecules in capillary endothelium and the retinal vasculature was examined. METHODS: The expression of ICAM-1, vascular cell adhesion molecule-1 (VCAM-1), E-selectin, and P-selectin on human brain capillary endothelial cell monolayers exposed to VEGF was quantitated by immunoassay. The effect of VEGF on retinal vascular ICAM-1 expression was determined in ICAM-1 immunofluorescence studies of retinal flat-mounts and in RNase protection assays. RESULTS: VEGF increased capillary endothelial cell ICAM-1 levels in a dose- and time-dependent manner (6-24 hours, plateau after 6 hours; EC50, 25 ng/ml). VEGF failed to alter E-selectin, P-selectin, or VCAM-1 levels under the conditions tested. Intravitreal injections of pathophysiologically relevant concentrations of VEGF increased ICAM-1 protein and mRNA levels in the retinal vasculature. CONCLUSIONS: VEGF increases retinal vascular ICAM-1 expression. VEGF-induced increases in ICAM-1 may promote retinal leukostasis in diabetic eyes.

Animals↗

[A study on tumor necrosis factor alpha, macrophage inflammatory protein-2 and myeloperoxidase in blood, broncho-alveolar fluid and lung tissues of rat chronic bronchitis model].

OBJECTIVE: To study the nature and mechanisms of airway inflammation in chronic bronchitis and observe the effects of inhaled glucocorticoids on inflammatory indices. METHODS: Rat chronic bronchitis model was established by intratracheal instillation of small dose of lipopolysaccharide (LPS, 1 g/L). Experiments were performed in 28 male Sprague-Dawley rats, which comprised four groups in random, i.e. chronic bronchitis model group, normal saline treated group, dexamethasone treated group and healthy control group. The levels of myeloperoxidase (MPO) of blood and lung tissues, and tumor necrosis factor (TNF)alpha and macrophage inflammatory protein-2 (MIP-2) of plasma, broncho-alveolar fluid (BALF) and lung tissues were determined by biochemical and ELISA methods. Total and differential white blood cell counts of BALFwere carried out. RESULTS: (1) The levels of TNFalpha and MIP-2 in BALF and lung tissues, and MPO in lung tissues of chronic bronchitis model group were significantly increased than those of control group (P < 0.05). (2) More significant increase in total white blood cell count and neutrophils in BALF was found in rat chronic bronchitis group than in control group (P < 0.001). (3) Significant positive correlations were observed between the level of MPO and MIP-2 of lung tissues, the level of MPO and TNFalpha of lung tissue and the total cell counts and the level of MIP-2 of BALF and lung tissue. (4) More significant decrease in total cell counts and neutrophils of BALF and levels of MPO in lung tissue was found in dexamethasone-treated group as compared to those of chronic bronchitis group. CONCLUSION: Recruitment and activation of neutrophils seem to be the characteristics of chronic bronchitis. TNFalpha and MIP-2 may be involved in the process of chemotaxis and activation in airway inflammation in chronic bronchitis. Inhaled steroids might have some effects on chronic bronchitis by limiting the airway inflammation.

Animals↗

Contribution of carbon monoxide-producing cells in the gastric mucosa of rat and monkey.

Recent studies have shown that carbon monoxide (CO) may function as a gaseous signaling molecule in a similar way to nitric oxide. In the gastrointestinal tract, immunoreactivity against a CO-producing enzyme, heme oxygenase-2 (HO-2), was reported in epithelial cells and neurons of submucosal and myenteric plexus. However, details of the epithelial cells in the gastric mucosa remain unknown. The aim of this study was to clarify if mRNA for HO-2 is expressed in the rat stomach, if HO-2 protein is present in the mucosa, and to define the cell types of the HO-2-immunoreactive cells. HO-2 mRNA and protein were detected in fundic and pyloric mucosa of rat stomach using an RNA protection assay and western blot analysis. Immunohistochemical study showed that HO-2 was localized in parietal cells of the fundic glands and gastrin cells of the pyloric glands of both rat and monkey. The results suggest that HO-2 enzyme is produced in the gastric mucosa, and that CO is released from parietal cells and gastrin cells.

Amino Acid Sequence↗

CNI-1493 prolongs survival and reduces myocyte loss, apoptosis, and inflammation during rat cardiac allograft rejection.

Cytokines and cytotoxic agents, including nitric oxide (NO) released by macrophages, play important roles during cardiac allograft rejection. In contrast to agents that suppress T-lymphocyte function, CNI-1493 is a multivalent guanylhydrazone compound that inhibits the synthesis and release of proinflammatory cytokines and NO from macrophages. This study investigated the effects of CNI-1493 on rejecting rat cardiac allografts by using Lewis to Wistar-Furth heterotopic cardiac transplants. CNI-1493 (2 mg/kg i.p., b.i.d.) or vehicle (water) was administered beginning the day before surgery. Rat cardiac allograft survival to cessation of heart beat, apoptosis of cardiac myocytes, degree of myocardial inflammation, and inducible nitric oxide synthase (iNOS) messenger RNA (mRNA), protein, and enzyme activity were studied at days 1, 3, 5, and 7 after transplantation. Allograft survival was increased significantly by 26% from 7.5 +/- 0.8 days in vehicle-treated rats (n = 6) to 9.5 +/- 1.2 days in CNI-1493-treated rats (n = 8, p < 0.05). Apoptotic cells per mm2 myocardium decreased from 2.25 +/- 1.25 to 0.84 +/- 0.49 at day 3 and 31.2 +/- 2.9 to 17.6 +/- 5.43 at day 5 after transplantation with CNI-1493 treatment (p < 0.05). The number of apoptotic myocytes and loss of cardiac muscle cells also decreased significantly at day 5 in the treated animals (p < 0.05). The reduction of myocyte loss at day 5 coincided with a significant decrease of the inflammatory response and reduced macrophage influx (p < 0.05). Myocardial iNOS mRNA, protein, and enzyme levels increased during the course of allograft rejection, and CNI-1493 did not significantly reduce iNOS expression in the rejecting rat allograft. CNI-1493 prolongs allograft survival and reduces myocyte loss, apoptosis, and inflammation during rat cardiac allograft rejection. These effects of CNI-1493 appear to be unrelated to altered NO synthesis but may be related to effects of the drug to inhibit macrophage synthesis of cytokines.

Animals↗

Importance of CD49d-VCAM interactions in human monocyte adhesion to porcine endothelium.

By using a primate model of natural antibody depletion, we have previously shown that delayed rejection of porcine cardiac xenografts in unmodified primate recipients resulted from xenograft infiltration with monocyte/macrophage lineage cells. In the present study, we initially showed that human monocytes/macrophages demonstrated significantly greater adherence to unstimulated pig aortic endothelial cells (PAEC) than to human umbilical vein endothelial cells (HUVEC). Human TNF-alpha augmented monocyte adhesion to HUVEC by 5-fold higher levels than to PAEC. This effect could not be explained on the basis of incompatibility between human TNF-alpha and its receptor on PAEC since porcine VCAM expression increased by 75-85% after stimulation with TNF-alpha. TNF-augmented monocyte adherence was abrogated by either treatment of PAEC with an anti-VCAM Mab or monocytes with an anti-CD49d Mab. These results suggest that VCAM-CD49d interactions are important in adhesion of human monocytes to PAEC but may not be as effective as those between human monocytes and allogeneic endothelium, perhaps because of structural differences across species. Other interactions, as yet undefined, must explain the relative increase in adhesiveness of human monocytes for unstimulated PAEC versus HUVEC. In experiments investigating the functional consequences of this enhanced monocyte adherence, PAEC stimulation induced 10-fold higher levels of macrophage-derived IL-1 beta and 3-fold higher levels of T cell proliferation compared with HUVEC. Using an anti-DR Mab to interrupt antigen presentation by autologous macrophages markedly reduced the T cell proliferative response to PAEC. Together, these results indicate that the enhanced adherence of human monocytes to PAEC contributes to xenograft rejection beyond the hyperacute period by leading to tissue infiltration, elaboration of cytokines, and an augmented indirect pathway of T cell xenoantigen recognition.

Animals↗

Expression and distribution of heme oxygenase-2 mRNA and protein in rat kidney.

Recent studies suggest that carbon monoxide (CO), which is formed by the enzyme heme oxygenase (HO) during the conversion of heme to biliverdin, shares some of the chemical and biological properties of nitric oxide (NO) and may play roles similar to those of NO. Heme oxygenase activity in the kidney has been reported for many years, and there are some reports on the expression of mRNA for two HO isozymes (HO-1 and HO-2) and cellular localization of HO-1 protein. However, cellular localization of HO-2 protein in the kidney under normal conditions has not been reported. In the present study we examined the expression and distribution of HO-2 mRNA and HO-2 protein in rat kidney using RNA protection assay and light and electron immunocytochemistry. RNA protection assay confirmed constitutive expression of HO-2 transcript in rat kidney. HO-2 immunoreactivity was selectively found in epithelial cells of the thick ascending limb and distal convoluted tubule, connecting tubule cells, and principal cells of the collecting duct. These results suggest that HO-2 is synthesized in the kidney and that HO-2 in the epithelial cells of renal tubules may serve as a source for CO generation under normal conditions.

Animals↗

Immunocytochemical localization of glutamate in normal and detached cat retina.

PURPOSE: Glutamate immunoreactivity in the mammalian retina has generally been observed using immersion fixation. The authors investigated glutamate immunoreactivity in the detached cat retina and reevaluated this activity in the normal retina using rapid fixation by perfusion. METHODS: Unilateral retinal detachment was produced in cats by injecting 0.25% sodium hyaluronate into the subretinal space using a glass micropipet. The eyes were fixed by perfusion with a mixture of 1% glutaraldehyde and 4% formaldehyde 10 minutes and 60 minutes after detachment, and then they were examined by conventional light and electron microscopic immunocytochemistry. RESULTS: In contrast to previous reports based on immersion fixation, the inner segment was not glutamate immunopositive in the normal retina. The inner segment showed intense glutamate immunoreactivity 10 minutes and 60 minutes after retinal detachment. CONCLUSIONS: Glutamate immunoreactivity in photoreceptor inner segments may be a postmortem change induced by strong ischemia. Perfusion fixation is of critical importance when studying the immunocytochemical distribution of glutamate in the retina.

Animals↗

Contribution of microglia as passenger leukocytes to the fate of intraocular neuronal retinal grafts.

PURPOSE: To determine whether donor-derived microglial cells play a role in dictating the immunogenicity of immature neuronal retinal tissue transplanted intraocularly. METHODS: Neonatal neural retinas (aged <24 hours) from C57BL/6 or BALB/c mice were implanted in the anterior chamber or the subretinal space of adult syngeneic or allogeneic eyes. After 12 and 35 days of engraftment, retinal grafts were harvested and analyzed immunohistochemically with 20 microg/ml Griffonia simplicifolia (GS) isolectin to identify microglia and define their morphology, monoclonal antibodies to study expression of donor and recipient major histocompatibility complex (MHC) class I and II antigens, and anti-CD3 and -CD14 antibodies to distinguish microglia from T cells and macrophages. RESULTS: Neonatal retinas were found to contain significant numbers of GS+ cells (microglia) at the time of grafting. By day 12 after grafting, markedly increased numbers of microglia were found in syngeneic and allogeneic grafts. Whereas most microglia in syngeneic grafts displayed a ramified (inactive) morphology at this time, most of the microglia in allografts displayed an ameboid (activated) configuration, with retracted processes and enlarged somas. By day 35 after grafting, although the density of microglia was reduced in syngeneic and allogeneic grafts, intensely labeled GS+ cells were localized in the centers of rosettes in syngeneic, but not in allogeneic, grafts. Instead, donor-derived microglia displayed intense expression of MHC class I and II antigens, and these grafts contained small numbers of recipient-derived T cells, but not macrophages. CONCLUSIONS: Microglia within developing neuronal retinal transplants display morphologic features that are consistent with the ability to function as "passenger leukocytes," and they distribute themselves within rosettes as though performing surrogate support functions usually adopted by retinal pigment epithelial cells. Because this latter property causes activation of the microglia, it may also cause these cells to enhance the immunogenicity of the allograft.

Animals↗

cis-Active Ras G2-like sequence implicated in the heterotropic activation of the deoxyadenosine kinase of Lactobacillus acidophilus R-26.

Deoxyadenosine kinase (dAK) forms a heterodimer with either deoxyguanosine kinase (dGK) or deoxycytidine kinase (dCK), and is heterotropically activated 3-5 times by dGuo or dCyd. Expressed alone, dAK is inactive and exhibits no response to dGuo or dCyd; activity and heterotropic response are fully restored upon reassociation with dGK or dCK. However, turnover of independently expressed dGK or dCK is nearly maximal, being further activated only 50-100% upon reassociation with dAK. In neither case is the heterotropic activation due to ligand-induced heterodimer formation. A proline/alanine substitution within a dAK segment homologous to loop G2 of Ras proteins yielded a heterodimer with dAK permanently cis-activated 2-fold, with a corresponding reduction in heterotropic activation by dGuo. A chimeric dAK, with 25% of its C terminus substituted by the homologous sequence from dGK, was inactive alone, and its characteristics were unchanged in the reconstituted heterodimer. Superimposing the Pro/Ala substitution on this chimera also reduced heterotropic activation by half. Cross-linking the dimer by 1,5-difluoro-2,4-dinitrobenzene was inhibited by ATP, dATP, dGTP, and dAdo, suggesting the proximity of the active site(s) to the interface. These data suggest that dAK depends on dGK or dCK in a manner resembling the reliance of Ras upon GTPase activating protein.

Amino Acid Sequence↗

Compromised blood-nerve barrier, astrogliosis, and myelin disruption in optic nerves during fatal murine cerebral malaria.

We examined the optic nerve, as an analogous tissue to brain white matter, to assess possible relationships between changes in the blood-nerve barrier, axonal integrity, and astrocyte morphology in the central nervous system during fatal murine cerebral malaria (FMCM). In the FMCM model, namely, CBA mice infected with Plasmodium berghei ANKA, neurological symptoms begin around day 5 post-inoculation (p.i.) and mice become increasingly ill by day 7 p.i., at which time they lapse into coma and die. Using intravascular perfusion with horseradish peroxidase combined with light and electron microscopy, and GFAP immunohistochemistry, the optic nerves in malaria-infected mice were found to display i) breakdown of the blood-nerve barrier, detectable as early as day 3 p.i. (about 2 days before the onset of neurological symptoms) increasing to peak severity by day 7 p.i.; ii) monocytosis, vascular congestion, and monocyte adherence to the endothelium in the microvasculature during the later stages of the disease process; iii) an increased incidence of patchy axonal demyelination and degeneration, mostly associated with vascular changes and astrogliosis, beginning at day 5 p.i. and more evident by day 7 p.i.; and iv) an increased intensity of GFAP immunostaining, detectable from day 3 p.i. and peaking at day 7 p.i. These optic nerve changes were always seen in the infected individuals, though they varied in intensity. The temporal and anatomical coincidence between the compromised blood-nerve barrier, monocyte adherence to the vascular endothelium, astrocyte changes, neuronal degeneration, and demyelination in the optic nerve in FMCM suggests that these factors are mechanistically inter-related. These findings are consistent with the proposed immunopathological nature of FMCM and provide further evidence for the pivotal role of the CNS microvasculature in the disease process. This is the first investigation of involvement of the optic nerve in FMCM and the first demonstration, to our knowledge, of loss of axonal viability in this condition in any CNS tissue. The observed demyelination is consistent with reports by other workers on such changes in the brain in human cerebral malaria.

Animals↗

Mutations in TWIST, a basic helix-loop-helix transcription factor, in Saethre-Chotzen syndrome.

Saethre-Chotzen syndrome is one of the most common autosomal dominant disorders of craniosynostosis in humans and is characterized by craniofacial and limb anomalies. The locus for Saethre-Chotzen syndrome maps to chromosome 7p21-p22. We have evaluated TWIST, a basic helix-loop-helix transcription factor, as a candidate gene for this condition because its expression pattern and mutant phenotypes in Drosophila and mouse are consistent with the Saethre-Chotzen phenotype. We mapped TWIST to human chromosome 7p21-p22 and mutational analysis reveals nonsense, missense, insertion and deletion mutations in patients. These mutations occur within the basic DNA binding, helix I and loop domains, or result in premature termination of the protein. Studies in Drosophila indicate that twist may affect the transcription of fibroblast growth factor receptors (FGFRs), another gene family implicated in human craniosynostosis. The emerging cascade of molecular components involved in craniofacial and limb development now includes TWIST, which may function as an upstream regulator of FGFRs.

Acrocephalosyndactylia↗

Increased c-fos expression in the brain during experimental murine cerebral malaria: possible association with neurologic complications.

Cerebral expression of c-fos protein was studied by immunocytochemistry in murine cerebral malaria (CM) and malaria without cerebral involvement (non-CM). c-fos expression, low in the brains of uninfected mice, increased in frequency, intensity, and distribution during the course of fatal CM (e.g., a 70-fold increase on day 7 after inoculation). These changes paralleled the timing and degree of the neurologic complications and histopathologic changes. Only a slight increase in c-fos expression was detectable in non-CM mice on day 7 after inoculation. Dexamethasone treatment (days 0 and 1 after inoculation) of the CM mice largely prevented the increased cerebral c-fos expression, histopathologic changes, cerebral complications, and death. Increased c-fos expression may indicate the specific neuronal pathways activated by the immunopathologic process of fatal murine CM and could be associated with the behavioral changes and neurologic complications in this model.

Animals↗

The cardiac internuncial cell in Carassius auratus longsdorffii and other 19 teleost species: a fine-structural study.

Thin-section studies of the sino-auricular border region in the hearts of 20 species of teleost fish revealed the cardiac internuncial cell (CIC), hitherto known only in Misgurnus, to occur also in 8 species (Acheilognathus lanceolatus, Carassius auratus longsdorffii, Cyprinus carpio, Girella punctata, Kareius bicoloratus, Rhodeus ocellatus ocellatus, Rhyncopelates oxyrhynchus, Tilapia nilotica), but to be absent in the other 12 species. There was an indication that the CIC was close in nature to myocardial cells because of the findings of Z band-like structures, especially myosin-like thick filaments (ca. 15 nm thick) in the cytoplasm. However, the myosin-like thick filaments were not associated with the actin-like thin filaments (ca. 5 nm thick) or Z band-like structures. Interestingly, the thick filaments showed considerable variation in their occurrence among individuals of a species (Carassius auratus longsdorffii); they were scarce in all of the CICs (Type I) observed in 12 out of 15 individuals studied, and very numerous in all of the CICs (Type II) in the remaining 3 individuals. All of the CICs in Kareius bicoloratus, Girella punctata, Rhodeus ocellatus ocellatus and Rhyncopelates oxyrhynchus were likely to be Type I and all of the CICs in Acheilognathus lanceolatus, Cyprinus carpio and Tilapia nilotica, Type II.

Animals↗

Deoxycytidine kinase and deoxyguanosine kinase of Lactobacillus acidophilus R-26 are colinear products of a single gene.

Three of the four deoxynucleoside kinases required for growth of Lactobacillus acidophilus R-26 exist as heterodimeric pairs specific for deoxyadenosine (dAK) and deoxycytidine (dCK) or dAK and deoxyguanosine (dGK). However, only two tandem genes, dak/dgk, are found, and are expressed only as dAK/dGK in transformed Escherichia coli. Sequencing peptides spanning 63% of the native dCK subunit revealed a sequence identical to that deduced from dgk (beginning MTVIVL...), except that dCK lacks residues 2 and 3 (dCK is M..IVL; dGK is .TVIVL). Also, mass spectrometry indicates that native dCK and dGK subunits are identical in mass adjusted for the first three residues. Furthermore, the native enzymes have identical isoelectric pH values, indicating an equal number of charged residues. To enable E. coli to express peptide having the native dCK sequence, codons 2 and 3 were deleted from the dgk portion of the tandem genes, resulting in expression of protein having the specificities and regulatory properties of native dAK/dCK, including heterotropic stimulation of dAK activity by deoxycytidine or dCTP (not deoxyguanosine or dGTP) and end-product inhibition of the respective activities by dATP and dCTP. Subcloning normal and mutant dgk yielded homodimeric dGK and dCK, respectively. The dCK homodimer strongly resembles human dCK, with a low K(m) for deoxycytidine, the ability to phosphorylate deoxyadenosine and deoxyguanosine at much higher K(m) values, and end-product inhibition by dCTP. Thus two distinct and specific enzymes evidently are derived from a single Lactobacillus gene. The mechanism by which this occurs in vivo has yet to be elucidated.

Amino Acid Sequence↗

[Relationship between wound healing and TNF, MDA and SOD contents in granulation tissues of rats in the first week].

An experimental model was used to determine the changes in TNF, MDA and SOD in granulation tissues during natural wound healing after skin excision on rats. Our results indicated that the changes in TNF and SOD exhibited a curve of V. The levels of TNF and SOD were lower on day 7 than day 3. The levels of MDA rose gradually, especially on day 7. A positive correlation was shown between TNF and MDA (at days 3, 5, 7), also between TNF and SOD (at day 3, 7). When the concentration of TNF was lower than 90 Pg/mg protein, the process of wound healing was best, while wound healing was hindered when the levels of SOD were low. The results suggest that in the process of wound repair there are influential changes in the contents of TNF, MDA and SOD. Lower levels of TNF and higher levels of SOD are apparently beneficial to wound healing after trauma.

Animals↗

Correlation between enhanced vascular permeability, up-regulation of cellular adhesion molecules and monocyte adhesion to the endothelium in the retina during the development of fatal murine cerebral malaria.

The relationships between increased vascular permeability to protein, monocyte adherence to the endothelium, and expression of the cell adhesion molecules, intercellular adhesion molecule-1 (ICAM-1) and vascular cell adhesion molecule-1 (VCAM-1) in the central nervous system microvasculature were studied during the progression of fatal murine cerebral malaria. CBA mice were inoculated with Plasmodium berghei ANKA, and changes in the retinal microvasculature were examined on days 3, 5, and 7 postinoculation (p.i.). Evans blue dye and horseradish peroxidase (HRP) were administered intravenously to assess vascular permeability to macromolecules macroscopically and by light and electron microscopy. ICAM-1 and VCAM-1 expression were examined by immunohistochemistry. HRP leakage into the retinal parenchyma was seen macroscopically at a low level on day 3 p.i., increasing progressively at day 5 (the earliest time at which cerebral symptoms were observed) and day 7 (the day on which animals showed severe behavioral abnormalities and died). The inner retinal vascular plexus showed a slight increase in vascular permeability to intravenous Evans blue at day 3 p.i. and congestion, monocyte adherence to the endothelium, and increased vascular permeability to both Evans blue and HRP at day 7 p.i. Electron microscopic observations were consistent with these findings and also revealed disrupted light junctions and the coating of monocytes and endothelium with HRP at day 7 p.i. Immunohistochemical staining and densitometry showed a progressive increase from day 3 to day 7 p.i. in the densities of ICAM-1 and VCAM-1 on the venular endothelium of the inner retinal vascular plexus, with the appearance of adherent ICAM-1+ monocytes at the terminal stage of the disease. None of the pathological changes associated with the inner retinal plexus were seen at any stage in the outer retinal plexus. These results suggest the following sequence of events in the inner retinal vessels, particularly the venules, during the progression of fatal murine cerebral malaria: 1) a mild increase in vascular permeability at approximately day 3 p.i., 2) a progressive increase in endothelial expression of the cell adhesion molecules ICAM-1 and VCAM-1, commencing at approximately day 3 p.i., 3) monocyte adhesion to the endothelium starting at approximately day 5 p.i., and 4) frank disruption of endothelial integrity at the terminal stage (day 7 p.i.), leading to edema and hemorrhage. Similar changes in cerebral vessels may underlie the neurological complications of the disease.

Animals↗