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D L Goldman

Publications and source records attributed to D L Goldman.

At least 19 recordsLinked to original sources

Phenotypic switching in Cryptococcus neoformans.

Phenotypic switching has been described in serotype A and D strains of Cryptococcus neoformans. It occurs in vivo during chronic infection and is associated with differential gene expression and changes in virulence. The switch involves changes in the polysaccharide capsule and cell wall that affect the yeast's ability to resist phagocytosis. In addition, the phenotypic switch variants elicit qualitatively different inflammatory responses in the host. In animal models of chronic cryptococosis, the immune response of the host ultimately determines which of the switch variants are selected and maintained. The importance of phenotypic switching is further underscored by several findings that are relevant in the setting of human disease. These include the ability of the mucoid colony variant of RC-2 (RC-2 MC) but not the smooth variant (RC-2 SM) to promote increased intracerebral pressure in a rat model of cryptococcal meningitis. Furthermore, chemotherapeutic and immunological antifungal interventions can promote the selection of the RC-2 MC variant during chronic murine infection.

Animals↗

Phenotypic switching of Cryptococcus neoformans can produce variants that elicit increased intracranial pressure in a rat model of cryptococcal meningoencephalitis.

Increased intracranial pressure (ICP) plays an important role in the morbidity and mortality of cryptococcal meningoencephalitis. The microbial and host factors that contribute to the development of increased ICP are poorly understood. We found that phenotypic switch variants of Cryptococcus neoformans (smooth and mucoid) differed in their abilities to promote increased ICP in a rat model of cryptococcal meningitis. Rats infected with the mucoid variant developed increased ICP, whereas rats infected with the smooth parent did not. This trend correlated with a shorter survival time and a higher cerebrospinal fluid (CSF) fungal burden for mucoid variant-infected rats, although brain fungal burdens were comparable between mucoid variant- and smooth parent-infected rats. Magnetic resonance imaging revealed enhanced T2 signal intensity over the surfaces of the brains of mucoid variant-infected rats. In addition, more polysaccharide accumulated in the CSF and brains of mucoid variant-infected rats. The accumulation of glucorunoxylomannan was associated with elevated levels of MCP-1 (CCL2) and, accordingly, a more pronounced but ineffective monocytic inflammatory response in the meninges of mucoid variant-infected rats. In summary, these findings suggest that strain-specific characteristics can influence the development of increased ICP and indicate a manner in which phenotypic switching could influence the outcome of a central nervous system infection.

Animals↗

Serologic evidence for Cryptococcus neoformans infection in early childhood.

OBJECTIVE: Cryptococcus neoformans is an important cause of central nervous system infection in adults with acquired immunodeficiency syndrome (AIDS) but an unusual cause of disease in children with AIDS. The basis for this age-related difference in incidence is not known but may be caused by differences in exposure or immune response. The objective of this study was to determine whether the low prevalence of cryptococcal disease among children is related to a lack of exposure to C neoformans. METHODS: Sera were obtained from 185 immunocompetent individuals ranging in age from 1 week to 21 years who were being evaluated in an urban emergency department. Sera were analyzed for antibodies to C neoformans and Candida albicans proteins by immunoblotting. Immunoblot patterns were compared with those obtained from sera of patients with cryptococcosis (n = 10) and workers in a laboratory devoted to the study of C neoformans. The specificity of our results was confirmed by several approaches, including antibody absorption and blocking studies. Sera were also analyzed for the presence of cryptococcal polysaccharide by both enzyme-linked immunosorbent assay and latex agglutination assays. RESULTS: Sera from children 1.1 to 2 years old demonstrated minimal reactivity to C neoformans proteins. In contrast, the majority of sera from children >2 years old recognized many (>/=6) C neoformans proteins. For children between 2.1 and 5 years old, 56% of sera (n = 25) reacted with many proteins, whereas for children >5 years old (n = 120), 70% of samples reacted with many proteins. Reactivity was decreased by absorbing sera with C neoformans extracts or by preincubating blots with sera from experimentally infected but not from control rats. Reactivity to C neoformans proteins did not correlate with reactivity to C albicans proteins, which was common in sera from children between the ages of 1.1 and 2 years. Cryptococcal polysaccharide was detected at a titer of 1:16 (~10 ng/mL) in the sera of 1 child, a 5.6-year-old boy who presented to the emergency department with vomiting. CONCLUSIONS: Our findings provide both indirect and direct evidence of C neoformans infection in immunocompetent children. Our results indicate that C neoformans infects a majority of children living in the Bronx after 2 years old. These results are consistent with several observations: the ubiquitous nature of C neoformans in the environment, including its association with pigeon excreta; the large number of pigeons in urban areas; and the increased likelihood of environmental exposure for children once they have learned to walk. The signs and symptoms associated with C neoformans infection in immunocompetent children remained to be determined. Primary pulmonary cryptococcosis may be asymptomatic or produce symptoms confused with viral infections and, therefore, not recognized as a fungal infection. Our results suggest that the low incidence of symptomatic cryptococcal disease in children with AIDS is not a result of lack of exposure to C neoformans. These findings have important implications for C neoformans pathogenesis and the development of vaccine strategies.

AIDS-Related Opportunistic Infections↗

Persistent Cryptococcus neoformans pulmonary infection in the rat is associated with intracellular parasitism, decreased inducible nitric oxide synthase expression, and altered antibody responsiveness to cryptococcal polysaccharide.

Fungal pathogens are notorious for causing chronic and latent infections, but the mechanism by which they evade the immune response is poorly understood. A major limitation in the study of chronic fungal infection has been the lack of suitable animal models where the infection is controlled and yet persists. Pulmonary Cryptococcus neoformans infection in rats results in a diffuse pneumonitis that resolves without dissemination or scarring except for the persistence of interstitial and subpleural granulomas that harbor viable cryptococci inside macrophages and epithelioid cells. Infected rats are asymptomatic but remain infected for as long as 18 months after inoculation with C. neoformans. Containment of infection is associated with granuloma formation that can be partially abrogated by glucocorticoid administration. Using this model, we identified several features associated with persistent infection in the rat lung, including (i) localization of C. neoformans to discrete, well-organized granulomas; (ii) intracellular persistence of C. neoformans within macrophages and epithelioid cells; (iii) reduced inducible nitric oxide synthase expression by granulomas harboring C. neoformans; and (iv) reduced antibody responses to cryptococcal polysaccharide. The results show that maintenance of persistent infection is associated with downregulation of both cellular and humoral immune responses.

Adrenal Cortex Hormones↗

Fungal morphogenesis and virulence.

Phenotypic variability in pathogenic fungi has long been correlated with virulence, but specific genetic and molecular mechanisms are only recently being unraveled. Fungal morphogenesis, reflecting the expression of several regulated genes, and the capacity of the rising forms or phases to cause disease has been focused on at the XIVth Congress of the International Society for Human and Animal Mycology. Three experimental models of pathogenic fungi have been discussed. In Cryptococcus neoformans, phenotypic variability or switching represents controlled and programmed changes rather than random mutations. Evaluated phenotypic traits were the capsular polysaccharide, cell and colony morphology and virulence. In the dimorphic Paracoccidioides brasiliensis, the serine-thiol proteinase from the yeast phase cleaves the main components of the basal membrane, thus being potentially relevant in fungal dissemination. In Candida albicans, relationships between adhesion proteins and those of lymphocytes and neutrophils are related to fungal pathogenicity. Regulation of the directional growth of hyphae and its tropic responses are correlated with the invasive potential of C. albicans.

Candida albicans↗

Phenotypic switching in Cryptococcus neoformans results in changes in cellular morphology and glucuronoxylomannan structure.

Cryptococcus neoformans strains exhibit variability in their capsular polysaccharide, cell morphology, karyotype, and virulence, but the relationship between these variables is poorly understood. A hypovirulent C. neoformans 24067A isolate, which usually produces smooth (SM) colony types, was found to undergo phenotypic switching and to produce wrinkled (WR) and pseudohyphal (PH) colony types at frequencies of approximately 10(-4) to 10(-5) when plated on Sabouraud agar. Cells from these colony types had large polysaccharide capsules and PH morphology, respectively. Scanning electron microscopy showed that different colony types were the result of altered cellular packing in the colony. Phenotypic switching was associated with quantitative and qualitative changes in capsular polysaccharide. Specifically, the glucuronoxylomannan (GXM) of the WR polysaccharide differed in the proportion of structural reporter groups and in increased xylose residue content linked at the 4 to 0 position. The relative virulence of the colony types was WR > PH > SM, as measured by CFU in rat lungs after intratracheal infection. Karyotype instability was observed in strain 24067A and involved primarily two chromosomes. Colonies with an alternative colony type exhibited more karyotype changes, which did not revert to the original karyotype in reverted colonies. In summary, this study revealed that phenotypic switching in C. neoformans (i) can produce WR colonies consisting of cells with either large capsule or PH morphology, (ii) is associated with production of structurally different GXM, (iii) is commonly associated with karyotype changes, (iv) can produce cells of PH morphology, and (v) can increase the virulence of a strain. Hence, phenotypic switching is an adaptive mechanism linked to virulence that can generate cell types with very different biological characteristics.

Adaptation, Physiological↗

Antibody response to Cryptococcus neoformans proteins in rodents and humans.

The prevalence and specificity of serum antibodies to Cryptococcus neoformans proteins was studied in mice and rats with experimental infection, in individuals with or without a history of potential laboratory exposure to C. neoformans, human immunodeficiency virus (HIV)-positive individuals who developed cryptococcosis, in matched samples from HIV-positive individuals who did not develop cryptococcosis, and in HIV-negative individuals. Rodents had little or no serum antibody reactive with C. neoformans proteins prior to infection. The intensity and specificity of the rodent antibody response were dependent on the species, the mouse strain, and the viability of the inoculum. All humans had serum antibodies reactive with C. neoformans proteins regardless of the potential exposure, the HIV infection status, or the subsequent development of cryptococcosis. Our results indicate (i) a high prevalence of antibodies reactive with C. neoformans proteins in the sera of rodents after cryptococcal infection and in humans with or without HIV infection; (ii) qualitative and quantitative differences in the antibody profiles of HIV-positive individuals; and (iii) similarities and differences between humans, mice, and rats with respect to the specificity of the antibodies reactive with C. neoformans proteins. The results are consistent with the view that C. neoformans infections are common in human populations, and the results have implications for the development of vaccination strategies against cryptococcosis.

AIDS-Related Opportunistic Infections↗

Phenotypic switching in the human pathogenic fungus Cryptococcus neoformans is associated with changes in virulence and pulmonary inflammatory response in rodents.

High-frequency reversible changes in colony morphology were observed in three strains of Cryptococcus neoformans. For one strain (SB4, serotype A), this process produced three colony types: smooth (S), wrinkled (W), and serrated (C). The frequency of switching between colony types varied for the individual colony transitions and was as high as 10(-3). Mice infected with colony type W died faster than those infected with other colony types. The rat inflammatory response to infection with colony types S, W, and C was C > S > W and ranged from intense granulomatous inflammation with caseous necrosis for infection with type C to minimal inflammation for infection with type W. Infection with the various colony types was associated with different antibody responses to cryptococcal proteins in rats. Analysis of cellular characteristics revealed differences between the three colony types. High-frequency changes in colony morphology were also observed in two additional strains of C. neoformans. For one strain (24067A, serotype D) the switching occurred between smooth and wrinkled colonies. For the other strain (J32A, serotype A), the switching occurred between mucoid and nonmucoid colonies. The findings indicate that C. neoformans undergoes phenotypic switching and that this process can affect virulence and host inflammatory and immune responses. Phenotypic switching may play a role in the ability of this fungus to escape host defenses and establish chronic infections.

Animals↗

Effect of immune mechanisms on the pharmacokinetics and organ distribution of cryptococcal polysaccharide.

Cryptococcus neoformans is an encapsulated opportunistic fungus that can cause chronic infections accompanied by high tissue levels of capsular polysaccharide (CPS). CPS or its major component, glucuronoxylomannan (GXM), was administered to mice, and whole-body and tissue levels were measured. The role of monoclonal antibody (MAb), complement, and CD4 T cells in GXM clearance was also examined. These studies demonstrate that CPS is cleared from the blood within days but is retained in the body for weeks; that MAbs of all isotypes examined promote GXM clearance; that MAb-mediated GXM deposition in liver, but not in spleen, is Fc-dependent; that complement enhances IgM-mediated GXM sequestration in liver but not spleen; and that CD4 T cells are not necessary for serum GXM clearance. The results have important implications for the eventual use of MAbs in treatment of cryptococcosis.

Animals↗

Characterization of a murine monoclonal antibody to Cryptococcus neoformans polysaccharide that is a candidate for human therapeutic studies.

The murine monoclonal antibody (MAb) 18B7 [immunoglobulin G1(kappa)] is in preclinical development for treatment of Cryptococcus neoformans infections. In anticipation of its use in humans, we defined the serological and biological properties of MAb 18B7 in detail. Structural comparison to the related protective MAb 2H1 revealed conservation of the antigen binding site despite several amino acid differences. MAb 18B7 was shown by immunofluorescence and agglutination studies to bind to all four serotypes of C. neoformans, opsonize C. neoformans serotypes A and D, enhance human and mouse effector cell antifungal activity, and activate the complement pathway leading to deposition of complement component 3 (C3) on the cryptococcal capsule. Administration of MAb 18B7 to mice led to rapid clearance of serum cryptococcal antigen and deposition in the liver and spleen. Immunohistochemical studies revealed that MAb 18B7 bound to capsular glucuronoxylomannan in infected mouse tissues. No reactivity of MAb 18B7 with normal human, rat, or mouse tissues was detected. The results show that both the variable and constant regions of MAb 18B7 are biologically functional and support the use of this MAb in human therapeutic trials.

Amino Acid Sequence↗

Cryptococcus neoformans meningitis in the rat.

The primary clinical manifestation of Cryptococcus neoformans infection in humans is meningoencephalitis. To study the defense mechanisms that participate in the host response against C. neoformans infection of the central nervous system (CNS), we have developed a new model of cryptococcal meningitis in rats. Intracisternal inoculation of C. neoformans produced a granulomatous meningitis with minimal brain parenchymal involvement, resembling cryptococcal meningitis in immunocompetent patients. The granulomas were composed of T cells (CD4+ and CD8+) and macrophages (CD11b/c+); a subpopulation of the macrophages expressed inducible nitric oxide synthase (NOS2). In this model, C. neoformans disseminated to systemic organs early in the course of infection and provoked granuloma formation and NOS2 expression. The temporal profile of inflammation indicated that the CNS inflammatory response is delayed relative to that in the lung and the spleen, which suggests that the effective inflammatory response within the CNS may follow activation of T cells in the periphery and their subsequent entry into the CNS. Inflammation in the meninges was associated with signs of subpial and subependymal glial activation, including enhanced expression of CD11b/c and CD4 in microglia and glial fibrillary acidic protein in astrocytes. Neither cells, however, expressed NOS2. Although C. neoformans invasion to the brain parenchyma was rare, soluble polysaccharide was commonly associated with reactive glial cells. Necrosis was not a feature of C. neoformans granulomas, but, instead, inflammatory cells underwent apoptosis in inflamed organs. The current rat intrathecal cryptococcosis model has several unique advantages for the study of human cryptococcal meningoencephalitis that include close resemblance of histopathologic changes to those in humans, easy accessibility to the cerebrospinal fluid compartment, and no requirement of immunosuppressive agents for establishment of infection.

Animals↗

Tissue localization of Cryptococcus neoformans glucuronoxylomannan in the presence and absence of specific antibody.

During infection, Cryptococcus neoformans capsular glucuronoxylomannan (GXM) is released into tissues, where it may be associated with a variety of deleterious immunological effects. Relatively little is known about the organ distribution and cellular localization of GXM antigen. Intravenous administration of GXM to rats resulted in persistent serum levels which declined with a half-life of 14.3 h in the first 74 h and 3 h thereafter, coincident with the appearance of serum antibodies to GXM. GXM was sequestered primarily in spleen tissue, with localization to marginal zone and follicular cells. Administration of the murine immunoglobulin G1 monoclonal antibody (MAb) 2H1 resulted in > 99% reduction in serum GXM level within 3 h. MAb 2H1 administration resulted in liver GXM deposition, with cellular localization primarily to Kupffer cells. GXM was also found in the spleens of MAb 2H1-treated rats, with localization to the marginal zones and follicles. Endotracheal administration of GXM resulted in low serum levels, with lung tissue having the highest GXM organ levels, localized primarily to alveolar macrophages. The results indicate that (i) intravenous administration to rats produced persistent serum GXM levels with a half-life similar to that found in mice and rabbits; (ii) endotracheal administration of GXM resulted in low serum levels; (iii) in the absence of specific antibody, GXM organ deposition occurs primarily in the spleen and is localized primarily to marginal zone macrophages; (iv) in the presence of specific immunoglobulin G1 antibody, GXM organ deposition occurs primarily in the liver and is localized primarily to Kupffer cells; and (vi) reticuloendothelial cells sequester GXM in the presence and absence of specific antibody.

Animals↗

Neuropsychological assessment outcomes of nonacquired immunodeficiency syndrome patients with primary central nervous system lymphoma before and after blood-brain barrier disruption chemotherapy.

The risk of neurotoxicity was evaluated in eight consecutive patients with non-acquired immunodeficiency syndrome (AIDS) primary central nervous system lymphoma who had survived disease free for more than 1 year after completion of treatment with osmotic opening of the blood-brain barrier and chemotherapy (methotrexate, cytoxan, procarbazine, and decadron). Trends in neuropsychological assessment results between baseline and follow-up (1 to 7 years) were analyzed for all eight nonradiated survivors. This serial assessment design addressed the specific issue of neurotoxic risk potential of treatment, when confounding factors of tumor persistence/recurrence and cranial irradiation were ruled out. Follow-up results of an extensive battery of tests to assess higher cortical function provided evidence of the safety of chemotherapy protocol with the blood-brain barrier disruption. These findings stand in contrast to well-known cognitive risks associated with cranial radiotherapy. Long-term follow-up suggests that chemotherapy can be given in conjunction with osmotic opening of the blood-brain barrier in nonradiated patients without cognitive manifestations of neurotoxicity.

Adult↗

Anatomy of a second generation Tarasoff case.

Few medicolegal doctrines have spread so widely and wildly as the Tarasoff duty of professionals to protect potential victims of violence perpetrated by psychiatric patients. Post-Tarasoff decisions have not been limited to identifiable third parties in danger, but in some circumstances have been extended to the community at large. Lipari v. Sears, Roebuck and U.S. is the first of such court rulings to invoke the concept of strict liability for the violent acts of a patient who, in the case presented, randomly fired at club patrons, killing one and wounding many others. A detailed examination of this pivotal and troubling case will facilitate recognition of the inherent complexity associated with subjecting human problems to the legal process.

Adult↗

Primary CNS lymphoma treated with osmotic blood-brain barrier disruption: prolonged survival and preservation of cognitive function.

Combination chemotherapy with or without radiotherapy has had only modest efficacy in the treatment of primary CNS lymphoma. Median survival of these patients, treated primarily with radiotherapy, is 13 months; 5-year survival is less than 5%. Thirty consecutive non-acquired immune deficiency syndrome patients with primary CNS lymphoma were treated with barrier-dependent chemotherapy using intraarterial mannitol to open the blood-brain barrier (BBB). Follow-up included extensive neuropsychologic testing of all patients. Thirteen patients received cranial radiation 1 to 9 months before referral (group 1). Seventeen patients received initial BBB disruption chemotherapy with subsequent radiation only for tumor progression or recurrence (group 2). The difference in median survivals from diagnosis--17.8 months for group 1 and 44.5 months for group 2--was statistically significant (P = .039). Group 1 survival is comparable with the 20-month median survival of a historical series of patients (n = 208) treated with radiotherapy with or without chemotherapy. Group 2 patient survival represents an advance in the survival of CNS lymphoma and was associated with preservation of cognitive function in six of seven nonirradiated complete responders observed for 1 to 7 years. Patient toxicity was manageable in this intensive therapeutic regimen. In this series, a plateau in survival curves suggests that a major portion of these patients may be cured without the neuropsychologic sequelae associated with cranial radiation.

Adult↗

The puzzle of noncompliance in the manic patient.

Patients with affective disorders may be seriously compromised by failure to comply with prescribed medication regimens. At the time of his hospitalization, the patient discussed here had a severe bipolar disorder characterized by disruptive and repetitive manic episodes that were generated by medication noncompliance and substance abuse. Through an understanding of the longitudinal and progressive development of this rapidly cycling disorder, the consultant emphasizes the importance of long-term maintenance pharmacotherapy in the context of environmental restructuring to attempt to reverse the malignant nature of the patient's affective disorder.

Adult↗