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Biomedical subjects

B E Hull

Publications and source records attributed to B E Hull.

At least 19 recordsLinked to original sources

The efficacy of a DNA vaccine encoding herpes simplex virus type 1 (HSV-1) glycoprotein D in decreasing ocular disease severity following corneal HSV-1 challenge.

Antiviral effects of a DNA vaccine against herpes simplex virus 1 (HSV-1) glycoprotein D (gD) were evaluated in eight week-old female BALB/c mice. The nuclease-insensitive construct (gD-ASOR) consisted of an HSV-1 gD encoding plasmid coupled to asialo orosomucoid (ASOR), targeting it to cells bearing ASOR receptors. Mice were immunized on day 0 and 7 with 10 microg doses of gD-ASOR or control substances. Fourteen days later, mice were infected by the corneal route with 10(5) pfu or 10(6) pfu HSV-1, strain 17syn+. Immunized mice showed a significant decrease in ocular disease severity over a 21-day observation period following infection compared to sham-immunized mice. Acute replication kinetic assays demonstrated a 100-fold decrease in viral titers on day 6 in trigeminal ganglia from immunized BALB/c mice compared to sham-immunized mice. Immunized mice showed a significant increase in numbers of CD4(+)T cells infiltrating the trigeminal ganglia at day 6 post infection compared to sham-immunized mice. Significant differences were not seen in latent viral reservoir between immunized and unimmunized mouse groups. Immunization with gD-ASOR decreased the severity of acute ocular HSV-1 infection, induced a CD4(+) T cell response, decreased the viral load in the trigeminal ganglia, but did not diminish viral latency.

Animals↗

Murine response to DNA encoding herpes simplex virus type-1 glycoprotein D targeted to the liver.

Plasmid DNA encoding herpes simplex virus type-1 glycoprotein D (gD-1) was complexed with asialoorosomucoid conjugated to poly-L-lysine. Following its intravenous injection into BALB/c mice, this complex was targeted to the liver. Liver cells expressing gD-1 were detected immunohistochemically through day 6 post-immunization, while gD-1 DNA was detectable through 14 days post-immunization. Decline of gD-1 expression and detectable gD-1 DNA in the liver correlated with influx of T cells, predominantly CD4(+). The ASOR-poly-L-lysine DNA carrier system promotes hepatic expression of gD-1 and may be useful in vaccination against herpes simplex virus type-1.

Animals↗

Targeted delivery of DNA encoding herpes simplex virus type-1 glycoprotein D enhances the cellular response to primary viral challenge.

Intravenous injection of plasmid DNA encoding herpes simplex virus type-1 glycoprotein D (gD-1) complexed with asialoorosomucoid-poly-L-lysine (gD-ASOR) targets foreign DNA to the liver, leading to hepatic expression of gD-1. BALB/c mice were given two intravenous injections of gD-ASOR, pBK-ASOR (plasmid lacking the gD-1 gene but complexed with ASOR), or PBS. The skin was inoculated with 1 x 10(4) PFU of HSV-1 or sham-inoculated, and analyzed for infectious virus and cellular infiltration 1, 3, and 5 days after inoculation. Prior immunization with gD-ASOR led to significantly lower (P < 0.05) viral titers in the skin 5 days after inoculation compared with controls. Infiltration of the skin at the site of inoculation by polymorphonuclear neutrophils (PMNs), T cells, B cells, dendritic cells, and macrophages was monitored immunohistochemically. Significantly higher numbers (P < 0.05) of CD4+ and CD8+ T cells, dendritic cells, and macrophages responded to HSV-1 challenge in mice immunized with gD-ASOR than in mice immunized with pBK-ASOR or PBS. The response by PMNs and B cells was indistinguishable among the treatment groups. These results suggest that BALB/c mice sensitized to gD-1 following gD-ASOR immunization develop an enhanced T-cell response to primary HSV-1 infection.

Animals↗

Differential response of basal keratinocytes in a human skin equivalent to ultraviolet irradiation.

The human skin equivalent (HSE) provides a convenient model system for studying the cellular responses of basal keratinocytes to UV irradiation. HSEs, constructed by overlaying a collagen-fibroblast matrix with epidermal cells, were raised to an air-liquid interface to promote epidermal differentiation. HSEs were exposed to ultraviolet radiation from a 500-W Hot Quartz Hanovia therapeutic sunlamp, at a total dose of 100 J/m2. The HSEs were then frozen every 4 h over a 48-h period and cryosectioned. For each time period, the expression of beta1 integrin and cyclin E, p53, or Bcl-2 were quantified using dual immunolocalization. Basal cells expressing beta1 integrin were divided into two subpopulations, denoted beta1high or beta1low. The proportion of beta1high keratinocytes expressing Bcl-2 and cyclin E increased significantly 4 and 8 h, respectively, after exposure to UV; during the subsequent 16 h, this basal cell subpopulation expressed p53. By contrast, significant numbers of beta1low basal keratinocytes expressed p53, but not Bcl-2. These results suggest that beta1high and beta1low populations of basal epidermal cells in HSEs respond differently to UV irradiation.

Adolescent↗

Characterization of label-retaining cells in the epidermis of a human skin equivalent.

The human skin equivalent (HSE) is an in vitro reconstructed model that resembles skin morphologically and biochemically. The HSE is formed by overlaying a fibroblast-populated collagen matrix with a suspension of epidermal cells. Basal keratinocytes attach to the dermal equivalent via a newly formed basement membrane and multiply to form a stratified, differentiated epidermis. The aim of the studies described here was to characterize the basal cells of the HSE in terms of their cell cycling potential. The experiments utilized long-term labelling of the cells with tritiated thymidine ([3H]dT), followed by irradiation with ultraviolet light. [3H]dT incorporation was analysed via routine autoradiography. Irradiation with 100 J/m2 UV light increased the number of labelled basal cells by 58% over the control, the maximal stimulation observed. Decreased numbers of labelled basal cells were observed at doses of UV light greater than 100 J/m2. The maximal number of labelled basal cells was observed on day 14 and decreased over time; the number of labelled suprabasal cells increased concomitantly. Label-retaining cells (12%) persisted in the stratum basale of control HSEs after 32 days in culture. Labelled cells were observed in the apical layers of the stratum granulosum of control HSEs after 22 days in culture. These data suggest that the stratum basale of the HSE contains a population of slow-cycling cells whose characteristics resemble a subpopulation of slowly cycling cells found in normal human skin.

Autoradiography↗

Production of IL-1 alpha and IL-1 beta by human skin equivalents parasitized by Sarcoptes scabiei.

Human skin equivalents (HSEs) were used as a model to investigate interleukin (IL)-1 alpha and IL-1 beta secretions by keratinocytes stimulated by Sarcoptes scabiei (SS). SS mites burrowed into the stratum corneum when placed on the surface of cultured HSEs. Mites lived for 14 days. Mites and mite products induced cells in the HSEs to secrete IL-1 alpha and IL-1 beta within 16 hr. Scabies mites induced production of greater amounts of IL-1 alpha than IL-1 beta. Hepatocyte growth factor in the culture medium at 3 and 30 ng/ml upregulated the secretions of both IL-1 alpha and IL-1 beta by mite-infested skin equivalents, whereas 10 ng/ml of IL-6 upregulated production of only IL-1 beta. Therefore, these cytokines were important immunomodulating factors influencing keratinocyte secretion of IL-1 alpha and IL-1 beta in vitro. The results of this study provide the first evidence that keratinocytes (possibly fibroblasts) in the skin produce these cytokines in response to scabies mites or other ectoparasitic arthropods. Because IL-1 alpha and IL-1 beta are potent inducers of inflammation and keratinocytes are among the first effector cells to encounter scabies mites and their products, these cells may be key initiators of the inflammatory/immune reaction to scabies.

Animals↗

Characterization of ultraviolet radiation-induced damage to keratinocytes in a skin equivalent in vitro.

The human skin equivalent (HSE) provides a convenient model for studying the dermatological effects of exposure to ultraviolet (UV) radiation. HSEs, constructed by overlaying a collagen-fibroblast matrix with epidermal cells, were maintained submerged for 1 week after the addition of epidermal cells and then raised to the air-liquid interface for an additional 3 weeks. HSEs were exposed to sublethal doses of UV radiation ranging from 0 to 500 J/m2, incubated up to 48 h in medium containing 3H-thymidine and fixed for ultrastructural and autoradiographic analysis. Exposure to radiation doses greater than 50 J/m2 led to vacuolation of the cornified envelopes and enlargement of intercellular spaces. These doses also led to the formation of dense cytoplasmic bodies, and separation and vesiculation of the nuclear envelope in the basal cells. DNA synthesis in the basal cells was analyzed autoradiographically. Maximal numbers of labeled basal cells were observed 24 h after exposure to UV radiation at 50 J/m2. Although the proportions of labeled cells varied among different epidermal donors, the maximal responses and time-course of 3H-thymidine incorporation remained consistent, supporting the usefulness of the HSE in studying the effects of UV irradiation on human skin.

Cells, Cultured↗

Long term effects of diaminophenoxypentane in the rat retina: protection against light damage.

The retinotoxic drug diaminophenoxypentane (DAPP) was administered to rats to determine its long term effects on rhodopsin levels, retinal morphology and the retina's susceptibility to damage from visible light. In rats given 2 intraperitoneal injections of DAPP at doses of 65 mg/kg body wt, there was a dramatic and sustained loss of rhodopsin. One wk later visual pigment levels were 41% lower than in comparable dark maintained rats injected with saline. Rhodopsin levels in the DAPP treated rats remained lower than in control animals for the 13 wk period of the study. Morphologically, the ROS of rats 1-2 wks after DAPP treatment exhibited some disorganization and shortening; the RPE was unremarkable. Seven wks after DAPP treatment an occasional focal area of damage was seen in the RPE. Similarly, focal areas of degeneration were seen in the outer nuclear layer between the rows of photoreceptor cells. As determined by photoreceptor cell nuclear counts, the retinotoxic effect of DAPP persisted long after drug administration. In the treated rats the loss of visual cell nuclei was 11% at 7 wks; it was 22% 13 wks after DAPP treatment. Immediately after exposure to intense visible light, damage was seen in both the photoreceptor cells and RPE of DAPP treated rats. However, the effects of exposure in the treated rats were less dramatic than in retinas from rats without DAPP treatment. Following a 2 wk dark recovery period, the DAPP treated rats had a normal appearing retinal morphology and an intact RPE layer. The retinas of rats without DAPP treatment showed extensive visual cell and RPE loss.(ABSTRACT TRUNCATED AT 250 WORDS)

Aniline Compounds↗

Coverage of full-thickness burns with bilayered skin equivalents: a preliminary clinical trial.

A total of six patients have received bilayered skin-equivalent coverage of full-thickness burns, with takes of 50% to 70% in the later patients. These skin-equivalent grafts are constructed by combining allogeneic fibroblasts with collagen to form a sheet and adding a suspension of autologous epidermal cells to the surface of the collagen matrix. These bilayered skin-equivalent grafts have provided an expansion of at least fifteenfold to twentyfold for the area covered by the donor epidermis. By 8 months after grafting, the skin-equivalent grafts appeared smooth and approximated the color of normal skin. Long-term problems associated with hypertrophic scarring or graft fragility have not developed during the 18-month period of follow-up.

Adolescent↗

Toxic cardiomyopathy: the effect of antipsychotic-antidepressant drugs and calcium on myocardial protein degradation and structural integrity.

In the nonrecirculating isolated perfused rat heart it has recently been described that basal myocardial protein degradation is suppressed by 30% within 5 min of maximal beta-adrenergic receptor occupancy under 5 X 10(-7) M isoproterenol (Lockwood, 1985, Biochem. J. 231, 299-308). This adrenergic-controlled proteolytic process presumably contributes to the well-known normal coordination of myocardial protein mass with functional demand. It is presently reported that elevated intracellular calcium is among the messengers that somehow suppress protein degradation. Acute elevation of extracellular calcium to a maximal concentration of 9.0 mM mimicked the simultaneous effects of isoproterenol on increasing inotropy and decreasing protein degradation, although this concentration was eventually lethal. Conversely, infusion of trifluoperazine (TFP), a calmodulin-blocking antipsychotic drug, caused stimulation of protein degradation above basal levels within 5 min. The stimulation of degradation by 30-60% was transient at 5 X 10(-7) M and returned to the control level in 5-10 min. However, TFP produced massive irreversible release of amino acid peptides and proteins at 10(-5) M within 30 min, followed by grossly observable cell structural disruption and cell separation. The degradative stimulation caused by TFP was potentiated by lowering the normal 2.5-mM extracellular Ca2+ concentration to 1.25 mM. Trifluoperazine at 10(-5) M caused longitudinal separation of myofibrils by disrupting lateral attachments between adjacent Z lines, leading to a loss of lateral myofibrillar registry followed by myofibrillar degeneration. Spot desmosomes were disrupted, leading to lateral cell separation; however, the fascia adherens region of the intercalated disks remained intact and cells maintained end-to-end attachment. Perfusion under the low extracellular Ca2+ concentration of 0.1 mM for 0.5 hr caused separation of the fascia adherens region and spot desmosomes of the intercalated disks as well as disruption of cytoplasmic myofibrils and other changes. Although the structural disorganization caused by perfusion with low (0.1 mM) Ca2+ were similar to those caused by TFP, cells also lost end to end attachment under low Ca2+. Amitriptyline (10(-5) M), thioridazine (10(-5) M), and calmidazolium (10(-6) M) stimulated protein degradation and caused structural damage. It is speculated that the above Ca2+-related phenomena describe the mechanism of the well-known toxic cardiomyopathy resulting from overdoses of some of the antipsychotic-antidepressant drugs.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Acceptance of allogeneic fibroblasts in skin equivalent transplants.

Living skin equivalents (SE) were prepared by combining cultured fibroblasts with a collagen matrix and overlaying this lattice with keratinocytes. SEs prepared using allogeneic female rat fibroblasts or xenogeneic rabbit or human fibroblasts and keratinocytes isogeneic to the graft recipient were transplanted to recipient male rats. Biopsies of some of these SE grafts were examined histologically at intervals ranging from 5 days to 2 months. Biopsies of other grafts were done, and fibroblasts grown from them were karyotyped to determine the percentage of donor fibroblasts remaining in the graft. SEs containing xenogeneic fibroblasts were rejected. Allografted fibroblasts in SEs were accepted by recipient rats after a transient mononuclear cell response. A second SE allograft from the same donor strain did not provoke rejection either in the original allograft or in the challenge allograft. A secondary graft of allogeneic skin did not provoke rejection in the original SE graft, although the skin graft was rejected. Grafting the recipient first with allogeneic skin and then with the SE allograft led to rejection of the skin but not of the SE graft, ruling out the possibility that suppressor T cells were responsible for SE allograft acceptance. Allografted fibroblasts in SEs do not provoke a rejection response, even in presensitized animals, do not render the recipient tolerant to allogeneic skin, and do not act as targets when active rejection is taking place. We propose that cells bearing class I antigens may be acceptable graft constitutents if incorporated in a tissue equivalent excluding cells with class II antigens.

Animals↗

Structural integration of skin equivalents grafted to Lewis and Sprague-Dawley rats.

Bilayered skin equivalents, composed of a sheet of epidermal cells overlying a collagen lattice populated with fibroblasts, quickly become structurally integrated with the surrounding host skin after grafting to Lewis rats. Three days after transplantation, the skin equivalent lies on a bed of host granulation tissue and is loosely attached to the adjoining host dermis. Blood vessels begin to invade the collagen lattice by 5 days after grafting. By the 7th day a fully keratinized, hypertrophic epidermis covers the surface of the graft and blood vessels penetrate the lattice to the base of the epidermis. Vascularization of the graft is accompanied by activation and proliferation of the fibroblasts and by a condensation of the collagen matrix. During the 2nd week after grafting, the collagen fibrils become organized into thin fibers that show a basketweave pattern of birefringence when examined using polarized light. By 1 month the structure of the skin equivalent has become stabilized. The fibroblasts now resemble the quiescent fibrocytes of normal, resting dermis and the epidermis remains moderately hypertrophic. One to two years after grafting to Sprague-Dawley rats, the skin equivalents do not appear hypertrophic. The graft lacks secondary derivatives such as hair follicles and sweat glands, presumably because the stem cells are lost during the isolation of the epidermal cells. Grafts that are prepared using epidermal cells overlying a collagen gel without fibroblasts give rise to raised, linear scars within 2 weeks.

Animals↗

Fibroblasts in isogeneic skin equivalents persist for long periods after grafting.

We have fabricated skin equivalents by combining fibroblasts from female Fischer rats with collagen to form a lattice and overlaying the lattice with a suspension of epidermal cells. The epidermal cells attach and form a sheet which differentiates. These skin equivalents were then grafted to male Fischer rats in order to follow the fate of the fibroblasts after implantation. Biopsies of the skin equivalent were taken between 9 days and 13 months after grafting and examined histologically or placed in tissue culture to permit karyotyping of the resident fibroblasts. Approximately 82% of the fibroblasts from the graft biopsied at 9 days were female, with this proportion decreasing sharply to 50% at 2 weeks and 60-64% at 1 month. At 1 month, this initial sharp drop is followed by a slow, linear decline which continues through the 13th month when 42% of the fibroblasts are female. We conclude that fibroblasts of the grafted skin equivalent become permanent residents of the skin of the host rat.

Animals↗

Structural characterization of a rat acinar cell tumor.

A transplantable acinar cell tumor of the rat pancreas has been examined by light and electron microscopy. The tumor cells, though highly cytodifferentiated and characterized by the presence of abundant rough-surfaced endoplasmic reticulum, elements of the Golgi complex, and zymogen granules, undergo mitosis in a manner similar to that seen in the developing pancreas. Cells in the parenchyma of the tumor grow as disarrayed cords and sheets, are randomly oriented with respect to each other, and do not form acinar structures. However, when in contact with the adventitial surface of blood vessels, the tumor cells palisade and form a polarized layer of cells with their zymogen granule-rich poles oriented away from the vessel lumen. Only in this area of the tumor is a basal lamina present that underlies the basal plasmalemma of the reoriented epithelial cells. Freeze-fracture electron microscopy of tumor cells in the parenchyma shows extensive disruption of tight junctions whose sealing strands are randomly distributed over the entire plasmalemma. Gap junctions are infrequent and when present are often enclosed by tight-junctional strands. Intramembrane particles are randomly distributed over the cell surface. Both the absence of basal lamina and derangement of the junctional complexes may account in part for the altered morphogenesis of this tumor.

Animals↗

Cell surface properties of normal, differentiating, and neoplastic pancreatic acinar cells.

Acinar, centroacinar, and endocrine cells of the adult rat pancreas each exhibit distinctive cell-surface glycoconjugate patterns as detected by binding of a battery of lectin-ferritin conjugates. Acquisition of these unique glycoconjugate patterns appears to be developmentally regulated, as studies on embryonic rat pancreases at days 15, 17, and 19 of gestation indicate. Further, the three cell types appear to arise from a common stem cell(s) with surface glycoconjugate properties similar to those of the adult centroacinar cell. STudies on the cell-surface properties of a rat acinar cell tumor indicate that the neoplastic acinar cells are likely to be arrested at a developmental stage equivalent to acinar cells of the day 19 embryonic pancreas and are characterized by absence of detectable basal lamina. We hypothesize that pancreatic cancers may arise from the equivalent of the undifferentiated embryonic stem cell(s) and that the morphologic features of the tumor depend on the extent of cell differentiation, including expression of cell-surface glycoproteins and extracellular matrix, prior to neoplastic proliferation.

Animals↗