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Biomedical subjects

E J Hansen

Publications and source records attributed to E J Hansen.

At least 19 recordsLinked to original sources

Identification of a genetic locus of Haemophilus influenzae type b necessary for the binding and utilization of heme bound to human hemopexin.

The mechanism(s) used by Haemophilus influenzae to acquire the essential nutrient heme from its human host has not been elucidated. The heme carried by the high-affinity serum protein hemopexin is one potential source of this micronutrient in vivo. A colony-blot assay revealed that heme-human hemopexin-binding activity was shared among most capsular serotype b strains of H. influenzae but was uncommon among other strains. We have identified a recombinant clone binding heme-human hemopexin from a H. influenzae type b (Hib) genomic library expressed in Escherichia coli. Both the Hib strain and the heme-hemopexin-binding clone expressed a polypeptide of approximately 100 kDa that bound radiolabeled heme-hemopexin. Oligonucleotide linker insertion mutagenesis of the plasmid DNA from this recombinant clone was used to confirm that expression of the 100-kDa protein correlated with the heme-hemopexin-binding activity. Exchange of one of these mutant alleles into the Hib chromosome eliminated expression of both the 100-kDa protein and the heme-hemopexin-binding activity. Furthermore, this Hib mutant was unable to utilize heme-human hemopexin as a heme source.

Bacterial Proteins

Animal models for the study of noninvasive Haemophilus influenzae disease: pulmonary clearance systems.

Nontypeable Haemophilus influenzae are increasingly being recognized as an important cause of disease in the lower respiratory tract. Information about the pathogenesis of these infections has been limited until recently by the paucity of experimental animal models for studying the host-parasite interaction in vivo. Three different animal models for investigation of the interaction of nontypeable H. influenzae with the lower respiratory tract have been used: Two involve the evaluation of short-term pulmonary clearance in mice or rats, while a new, long-term infection model in rats mimics the more chronic bronchopulmonary infections sometimes caused by these organisms. Results obtained in these three model systems indicate that both humoral and cellular immune mechanisms are involved in immunity to lower respiratory tract disease due to nontypeable H. influenzae.

Animals

Virulent Treponema pallidum activates human vascular endothelial cells.

Perivascular lymphocytic infiltration, fibrin deposition, and endothelial cell abnormalities consistent with cellular activation are prominent histopathologic features of syphilis, a sexually transmitted disease caused by the spirochetal bacterium Treponema pallidum. Because activated endothelial cells play important roles in lymphocyte homing and hemostasis, the ability of virulent T. pallidum to activate cultured human umbilical vein endothelial cells (HUVEC) was investigated. T. pallidum induced the expression of intercellular adhesion molecule-1 (ICAM-1) and procoagulant activity on the surface of HUVEC. Electron microscopy of T. pallidum-stimulated HUVEC revealed extensive networks of fibrin strands not observed in cultures without treponemes. ICAM-1 expression in HUVEC also was promoted by a 47-kDa integral membrane lipoprotein purified from T. pallidum, implicating a role for spirochete membrane lipoproteins in endothelial cell activation. The combined findings are consistent with the pathology of syphilis and provide the first evidence that a pathogenic spirochetal bacterium such as T. pallidum or its constituent integral membrane lipoprotein(s) can activate directly host vascular endothelium.

Antigens, CD

Pulmonary clearance of Moraxella catarrhalis in an animal model.

The virulence mechanisms of Moraxella catarrhalis that are involved in producing pulmonary infection are unknown. A well-characterized murine model was used to study the pulmonary clearance of M. catarrhalis and analyze the histopathologic changes and the role of phagocytic cells in the infected lungs. Ten strains of M. catarrhalis from various isolation sites were evaluated for their ability to resist pulmonary clearance. The rates of clearance of these strains, based on the percentage of the original inoculum remaining at 6 h after challenge, varied considerably. Histopathologic examination of lungs infected with 2 strains that exhibited very different clearance rates revealed similar pathologic responses. Analysis of the phagocytic cell response to these 2 strains revealed significant alveolar recruitment of granulocytes at 3, 6, and 24 h after bacterial challenge. However, granulocyte recruitment in response to strain B22, which was cleared readily, was significantly greater than to strain 035E, which resisted pulmonary clearance. This model system should facilitate investigation of the molecular basis of the interaction between M. catarrhalis and the lower respiratory tract.

Animals

The hbpA gene of Haemophilus influenzae type b encodes a heme-binding lipoprotein conserved among heme-dependent Haemophilus species.

A membrane-associated lipoprotein of Haemophilus influenzae type b has previously been shown to bind heme in vitro and to promote binding of this compound by Escherichia coli recombinants expressing this protein. The H. influenzae type b heme-binding protein A (HbpA) was found to be highly conserved with respect to both antigenicity and apparent molecular weight among heme-requiring Haemophilus species pathogenic for humans. To further the characterization of the structure and function of HbpA, the complete nucleotide sequence of its gene, hbpA, was determined. Analysis of the nucleotide sequence revealed a single large open reading frame of 1,638 bp encoding a protein of 546 amino acid residues, with a molecular weight of 60,695. The sequence of the amino-terminal end of this protein contained a potential site for lipid acylation and for cleavage by signal peptidase II, consistent with earlier biochemical evidence which indicated that HbpA is a lipoprotein. A search of GenBank for proteins with amino acid sequence similarity to HbpA revealed that the periplasmic dipeptide transport protein of E. coli, DppA, has 53% sequence identity to HbpA.

Amino Acid Sequence

Use of electroporation to construct isogenic mutants of Haemophilus ducreyi.

Little is known about the genetics of Haemophilus ducreyi, the etiologic agent of chancroid. To develop a method for constructing isogenic mutants of this organism that could be utilized in pathogenesis-related studies, electroporation techniques were evaluated as a means of introducing DNA into this organism. Electroporation of the plasmid shuttle vector pLS88 into H. ducreyi yielded approximately 10(6) antibiotic-resistant transformants per microgram of plasmid DNA. Studies of the feasibility of moving mutated genes into H. ducreyi were initiated by using NotI linker insertion and mini-Tn10kan mutagenesis techniques to introduce insertion mutations into cloned H. ducreyi genes encoding cell envelope antigens. In the former case, a gene encoding chloramphenicol acetyltransferase was then inserted into the NotI linker site created in the cloned H. ducreyi gene. The recombinant Escherichia coli strains containing these mutated plasmids no longer expressed the homologous H. ducreyi cell envelope antigens, as evidenced by their lack of reactivity with monoclonal antibody probes for these H. ducreyi proteins. Subsequent electroporation of both circular and linearized forms of plasmids carrying these mutated H. ducreyi genes into the homologous wild-type strain of H. ducreyi yielded antibiotic-resistant transformants which also lacked reactivity with the cell envelope antigen-specific monoclonal antibodies. Southern blot analysis confirmed that homologous recombination had occurred in these monoclonal antibody-unreactive transformants, resulting in the replacement of the wild-type allele with the mutated allele. Allelic exchange was most efficient when linear DNA molecules were used for electroporation. These results indicate that electroporation methods can be utilized to construct isogenic mutants of H. ducreyi.

Blotting, Southern

Endotoxin concentrations in cerebrospinal fluid correlate with clinical severity and neurologic outcome of Haemophilus influenzae type B meningitis.

Endotoxin concentrations were measured in paired samples of cerebrospinal fluid from 38 patients with Haemophilus influenzae type b meningitis. On admission, the median concentration of endotoxin in cerebrospinal fluid was 104 ng/mL and decreased rapidly in follow-up samples. From 17 to 48 hours after admission, 50% of the patients had concentrations of less than 1 ng/mL. Endotoxin concentrations correlated significantly with concentrations of interleukin 1 beta, protein, and glucose in cerebrospinal fluid, duration of secondary fever, and neurologic abnormalities during hospitalization and on follow-up examinations. Twenty-eight percent of patients with endotoxin concentrations of 100 ng/mL or more on admission had long-term complications, compared with none of those with lower endotoxin concentrations (relative risk, 2.31; 95% confidence interval, 1.53 to 3.48). These results indicate that quantitation of endotoxin in cerebrospinal fluid could be a valuable aid in identifying those children at increased risk of complications during Haemophilus influenzae type b meningitis and provide additional evidence that the Haemophilus influenzae type b meningitis lipo-oligosaccharide is important in the pathogenesis of meningitis.

Animals

Blood-brain barrier alterations in bacterial meningitis: development of an in vitro model and observations on the effects of lipopolysaccharide.

To further examine the effects of purified Haemophilus influenzae type b lipopolysaccharide (LPS) on blood-brain barrier permeability, we have developed an in vitro model of the BBB. Microvascular endothelial cells were isolated from rat cerebral cortices by enzymatic digestion, dextran centrifugation, and separation on percoll gradients. The cells were determined to be endothelial in origin by positive fluorescent staining for Factor VIII-related antigen and the ability to take up acetylated low density lipoproteins, and their cerebral origin by the formation of junctional complexes in vitro. Cells were seeded onto semipermeable polycarbonate filters and permeability assessed by measuring traversal of radioactive albumin across the monolayer. Treatment of the cells with LPS at concentrations of 1.0 microgram/ml and 0.1 microgram/ml for 4 h led to statistically significant increases in albumin permeability of 4.6% (P = 0.001) and 5.6% (P less than 0.001), respectively, without evidence of cell death as assessed by release of lactate dehydrogenase into the media. These results indicate that LPS significantly increases albumin permeability across a monolayer of cerebral microvascular endothelial cells in the absence of host inflammatory cells. Future studies on the effects of LPS on intracellular regulation will determine the mechanisms responsible for these alterations.

Albumins

Induction of suppurative arthritis in rabbits by Haemophilus endotoxin, tumor necrosis factor-alpha, and interleukin-1 beta.

Because Haemophilus influenzae type b (Hib) is the principal cause of suppurative arthritis in young children and its lipooligosaccharide (LOS) is thought to be the main virulence factor, Hib endotoxin was evaluated for its ability to induce synovial inflammation in rabbits. Also, the role of the cytokines tumor necrosis factor-alpha (TNF alpha) and interleukin-1 beta (IL-1 beta) in mediating the synovial inflammatory process was studied. Intraarticular inoculation of 2 pg to 20 ng of Hib LOS produced a dose-dependent increase in concentrations of leukocytes and protein in synovial lavage fluid that was significantly modulated by concomitant administration of rabbit TNF alpha- and rabbit IL-1 beta-specific antibodies. Inoculation of joints with either 10(4) IU of rabbit TNF alpha or 10 ng recombinant rabbit IL-beta induced synovial inflammatory changes similar to those observed after LOS intraarticular challenge. These data provide evidence for the role of Hib LOS in inducing suppurative arthritis and for the critical participation of TNF alpha and IL-1 beta in the initial events of the synovial inflammatory response.

Animals

Detection of experimental Haemophilus influenzae type b bacteremia and endotoxemia by means of an immunolimulus assay.

The rapid quantitation of bacteria in blood was achieved by using a novel assay method for gram-negative bacterial lipopolysaccharide (endotoxin, LPS). The assay involves the capture of specific LPS onto microtiter plates by means of monoclonal antibodies directed against the oligosaccharide region of the LPS, followed by detection of the bound LPS by a chromogenic Limulus amebocyte lysate (LAL) system. This immunolimulus (IML) assay combines the specificity of monoclonal antibodies with the sensitivity of the LAL system to achieve the first specific, sensitive quantitation of bioactive endotoxin in plasma. In the animal model tested, Haemophilus influenzae type b (Hib) bacteremia in infant rats, there was a strong correlation between IML results and the concentration of Hib colony-forming units in blood samples (r = .845, P less than .001). Using antibodies with appropriate specificities, this approach should be useful for rapid detection of a wide range of gram-negative bacteria and endotoxins in blood.

Animals

A temperature-dependent rabbit model for production of dermal lesions by Haemophilus ducreyi.

The fact that optimal in vitro growth of Haemophilus ducreyi occurs at 33 degrees C prompted evaluation of the effect of temperature on the ability of this organism to produce skin lesions in rabbits after intradermal inoculation. Animals housed at a reduced ambient temperature (15-17 degrees C) consistently developed necrotic lesions when injected intradermally with 10(5) cfu of H. ducreyi; this inoculum did not produce necrotic lesions in animals housed at normal room temperature (23-25 degrees C). Lesion production in this new model was dependent on both viability of the H. ducreyi inoculum and replication of these organisms after intradermal injection. Histopathologic examination of the lesions revealed that H. ducreyi infection of the rabbit dermis evolves from an acute inflammatory reaction to abscess formation. Evaluation of three additional strains of H. ducreyi in this model confirmed that lesion formation was not bacterial strain-dependent. This new temperature-dependent rabbit model for productive H. ducreyi infection will facilitate investigation of the molecular pathogenesis of chancroid.

Animals

In vivo and in vitro expression of Haemophilus influenzae type b lipooligosaccharide epitopes.

An indirect immunofluorescence system involving monoclonal antibodies (MAbs) directed against surface epitopes of Haemophilus influenzae type b (Hib) lipooligosaccharide (LOS) was used to examine individual Hib cells in cerebrospinal fluid (CSF) from infants with Hib meningitis. In four of five CSF samples studied, 100% of the bacteria bound at least one LOS-directed MAb. When the bacteria from these CSF samples were grown in broth, most of these cells lost some or all of their ability to bind the MAb(s) that were bound by the same organisms present in human CSF. When in vitro-grown cells were used for intracisternal injection of rabbits, the populations of Hib cells observed in rabbit CSF after the development of meningitis generally resembled those of the respective broth-grown inocula in terms of their LOS antigenic characteristics. Hib cell populations recovered in infant rat CSF after intranasal challenge again had LOS antigenic characteristics similar to those of the in vitro-grown challenge inocula. These results indicate that a population of Hib cells growing in the infected human host may be quite different, with regard to its LOS antigenic characteristics, from the same Hib strain growing in vitro or in vivo in animal models.

Animals

Molecular cloning of a gene involved in lipooligosaccharide biosynthesis and virulence expression by Haemophilus influenzae type B.

A wild-type Haemophilus influenzae type b (Hib) genomic DNA library was constructed in the plasmid shuttle vector pGJB103. A virulence-deficient lipooligosaccharide (LOS) mutant of Hib was used as a recipient for genetic transformation to screen this Hib genomic DNA library for genes involved in LOS expression. A recombinant plasmid containing a 7.8 kb PstI fragment of Hib DNA was shown to transform this LOS mutant to reactivity with a monoclonal antibody (mAb) specific for a wild-type LOS epitope. Transformation of two different virulence-deficient LOS mutants with a 4.4 kb BglII fragment of this recombinant plasmid yielded transformants which expressed LOS that bound the wild-type LOS-specific mAb and yielded profiles in sodium dodecyl sulphate/polyacrylamide gradient gel electrophoresis different from those of the original LOS mutants. These transformants with structurally altered LOS molecules also exhibited increased virulence in an animal model for invasive Hib disease. The virulence-transforming ability was further localized to a 1.8 kb BglII-AlwNI fragment of the Hib DNA insert. Nucleotide sequence analysis indicated the presence of a single large open reading frame within this fragment. This open reading frame contained 19 consecutive repeats of the tetramer CAAT near the 5' end. Linker insertion mutagenesis was used to demonstrate directly the involvement of this open reading frame in both LOS biosynthesis and virulence expression by Hib.

Amino Acid Sequence

Molecular cloning, partial purification, and characterization of a haemin-binding lipoprotein from Haemophilus influenzae type b.

A library of genomic DNA fragments from Haemophilus influenzae type b (Hib) DL42 was constructed in plasmid pBR322, transformed into Escherichia coli strain RR1, and screened for recombinant clones with haemin-binding activity by plating onto haemin-containing agar. Expression of haemin-binding activity by clones correlated with the expression of a protein with an apparent molecular weight of 51,000 (51K) that was also recognized by anti-Hib strain DL42 serum in immunoblots. One recombinant clone, designated pHM2, with the smallest DNA insert (3.62 kb) was characterized further. Ethanol inhibition of expression of pHM2 in minicells revealed that the 51K protein was the result of a processing event involving a larger precursor. E. coli RR1(pHM2) adsorbed haemin in liquid suspensions as well as from solid media. Subcloning of a 2.6 kb fragment of pHM2 into a shuttle vector permitted the construction of a recombinant Hib clone, DL42(pHM1002), which overexpressed the 51K haemin-binding protein. This 51K protein appears to be peripherally associated with the inner, and possibly outer, membranes of Hib. Affinity chromatography on haemin-agarose was utilized to purify the haemin-binding protein from both E. coli RR1(pHM2) and Hib DL42(pHM1002) to near homogeneity. The use of the antibiotic globomycin in a minicell expression system and radioimmunoprecipitation analysis of Hib proteins intrinsically radiolabelled with [3H]-palmitate indicated that the 51K haemin-binding protein is a lipoprotein.

Anti-Bacterial Agents

Enhanced attenuation of meningeal inflammation and brain edema by concomitant administration of anti-CD18 monoclonal antibodies and dexamethasone in experimental Haemophilus meningitis.

Antiinflammatory therapy has been shown to reduce the adverse pathophysiological consequences that occur in bacterial meningitis and to improve outcome from disease. In the present study, modulation of two principal steps of the meningeal inflammatory cascade was accomplished by concomitant administration of dexamethasone to diminish overproduction of cytokines in response to a bacterial stimulus and of a monoclonal antibody directed against adhesion-promoting receptors on leukocytes to inhibit recruitment of white blood cells into the subarachnoid space. Dexamethasone and antibody therapy produced a marked attenuation of all indices of meningeal inflammation and reduction of brain water accumulation after H. influenzae-induced meningitis in rabbits compared with results of each agent given alone and of untreated animals. In addition, the enhanced host's meningeal inflammatory reaction that follows antibiotic-induced bacterial lysis was profoundly ameliorated when dual therapy was administered without affecting clearance rates of bacteria from cerebrospinal fluid and vascular compartments. The combination of both therapeutic approaches may offer a promising mode of treatment to improve further the outcome from bacterial meningitis.

Animals

Tumor necrosis factor alpha/cachectin and interleukin 1 beta initiate meningeal inflammation.

Although previous studies using human cytokines in rabbits and rats have provided evidence of the participation of tumor necrosis factor alpha (TNF-alpha) and interleukin 1 beta (IL-1 beta) in the meningeal inflammatory cascade, the results obtained by several groups of investigators have been discordant or, at times, contradictory. In the present study, homologous cytokines were applied to the rabbit meningitis model. Intracisternal administration of 10(2)-10(5) IU of purified rabbit TNF-alpha (RaTNF-alpha) produced significant cerebrospinal fluid (CSF) inflammation. A similar response was observed after intracisternal inoculation of 5-200 ng of rabbit recombinant IL-1 beta (rrIL-1 beta). Preincubation of these two mediators with their specific antibodies resulted in an almost complete suppression of the CSF inflammatory response. In animals with Haemophilus influenzae type b lipooligosaccharide-induced meningitis, intracisternal administration of anti-rrIL-1 beta, anti-RaTNF-alpha, or both resulted in a significant modulation of meningeal inflammation. Simultaneous administration of 10(3) IU of RaTNF-alpha and 5 ng of rrIL-1 beta resulted in a synergistic inflammatory response manifested by a more rapid and significantly increased influx of white blood cells into the CSF compared with results after each cytokine given alone. These data provide evidence for a seminal role of TNF-alpha and IL-1 beta in the initial events of meningeal inflammation.

Animals

Pulmonary host defenses and oropharyngeal pathogens.

The lower respiratory tract is repetitively inoculated with oropharyngeal bacteria and yet pneumonia is an infrequent event. Efficient mechanisms of antibacterial defense are present in the respiratory tract that eliminate microbes before their presence or multiplication leads to disease in the majority of instances. Resident pulmonary defenses consist of aerodynamic defenses, the mucociliary apparatus, alveolar macrophages, complement, and surfactant. These resident defenses can be augmented by the development of an inflammatory response or the development of specific immunity. Significant species variability exists in the efficiency and mechanisms of clearance for oropharyngeal organisms. Streptococci are cleared promptly, Branhamella catarrhalis is cleared slowly, whereas non-typable Haemophilus influenzae multiply before being cleared. A dual phagocytic system of alveolar macrophages and recruited polymorphonuclear leukocytes is required for clearance of most oropharyngeal microbes. Systemic immunization can significantly enhance clearance of non-typable H. influenzae, suggesting immunoprophylaxis might be possible for this organism.

Animals