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Pulmonary microvascular injury following intestinal reperfusion.

Multiple organ failure is the most common cause of death in critically ill patients in the United States. Acute respiratory failure is the most important single component of this clinical scenario, with a mortality risk > 50%. Key pathophysiologic events occur in the pulmonary microvasculature at the interface between circulating elements and the external environment. In particular, the response of the alveolar capillary endothelial cell is of fundamental importance in this injury process. A variety of clinical stimuli initiate a systemic inflammatory response that contributes to acute microvascular lung injury. Sepsis, trauma, thermal injury, acute pancreatitis, and ischemia-reperfusion injury are among these stimuli. The particular emphasis of this review is on events associated with intestinal ischemia-reperfusion, a common and important clinical event. The pathogenic mechanisms that lead to acute lung injury in this setting are not completely understood, although it is clear that neutrophil-endothelial interactions regulated by both humoral and local mediators are crucial. Oxygen-derived free radicals, proteases, cytokines, eicosanoids, endotoxin, complement activation products, and probably platelet activating factor and nitric oxide are involved as either signalling or effector molecules. The key cellular participants during the acute phase of injury are the polymorphonuclear neutrophil (PMN) and the microvascular endothelial cell. Each of these participants is considered with regard to phlogistic behavior and the potential for therapeutic intervention. Adherence of the neutrophil to the endothelium creates a microenvironment in which PMN-derived oxidants, proteases, and cationic proteins are discharged under conditions that lead to cellular injury. Loss of microvascular integrity results and pulmonary dysfunction follows. At present, we offer only nonspecific supportive care for patients with this problem. However, investigations into relevant molecular and cellular regulatory events offer important opportunities for directed therapy. We are now approaching the threshold for utilization of several new and specific approaches. While no single pharmacologic therapy is likely to be curative for this complex problem, it is probable that certain approaches will be of clinical benefit in the near future. This review is designed to provide a basis for understanding this evolution.

Animals

Intra-operative electron beam radiotherapy and abdomino-pelvic surgery for cancer: influence on immunological parameters.

Evolution of some immunological parameters was observed during the first month in 20 patients with different abdomino-pelvic cancers who underwent surgery with intra-operative radiation therapy (IORT) (mean dose of 19.44 Gy, range 15, 25). Observed parameters before (DO-) and after procedure (DO+), on seventh (D7) and fourteenth (D14) days and fifth week (D30) were: lymphocyte count, lymphocyte subsets (CD19, CD3, CD4, CD8, CD56), natural killer (NK) activity, immunoglobulins, C3 and C4b fractions of complement, soluble receptor for interleukin 2 (sIL2-R). Results showed a decrease of circulating lymphocytes (DO-: 1189 +/- 168 cells/mm3; D7: 889 +/- 91; P = 0.011), of absolute number of CD3 lymphocytes (DO-: 785 +/- 114 cells/mm3; D7: 563 +/- 86; P = 0.025), of CD4 lymphocytes (DO-: 441 +/- 70 cells/mm3; DO+: 299 +/- 43; P = 0.013) and of CD8 lymphocytes (DO-:361 +/- 50 cells/mm3, D7:250 +/- 44; P = 0.006). All values returned towards preoperative levels by D30. Absolute number of NK cells was unchanged but NK activity was significantly diminished (effector target ratio 5:1 DO-:33 +/- 5%; DO+:44 +/- 7%; D7:18 +/- 3%; D14:21 +/- 4%; D30:25 +/- 4%). sIL2-R was significantly enhanced from D7 to D30. All these impairments are moderate and these observations provide some evidence of satisfactory tolerance to IORT for abdomino-pelvic cancers during the immediate postoperative period.

Abdominal Neoplasms

An evolutionary conserved target cell antigen along with MHC class I molecules influences susceptibility to murine NK cell lysis.

We have previously characterized a novel monoclonal antibody (mAb), termed 18C2, which binds to and inhibits the lysis of target cells by human natural killer (NK) cells. We now show that the anti-target cell mAb 18C2 also recognizes a similar structure on the murine NK sensitive target cell YAC-1, as well as on NK resistant target cells P815 and EL-4, as observed by flow cytometry. Functional studies demonstrated that the mAb 18C2 inhibited the lysis of both NK sensitive YAC-1 target cells, as well as NK resistant target cell lines P815 and EL-4 by freshly-isolated nylon wool nonadherent (NWNA) NK cells, 5-day lymphokine activated killer (LAK) cells and adherent lymphokine activated killer (ALAK) cells. The inhibitory activity of the mAb 18C2 occurred at the target cell level only. Single cell conjugate assays as demonstrated that the structure recognized by the mAb 18C2 was involved in recognition between NK cells and NK target cells, as the mAb inhibited conjugate formation between a variety of effector cells and various target cell lines tested. Further, the role of major histocompatibility complex (MHC) class I antigens in NK cell cytotoxicity was examined. We observed that target cells expressing low levels of MHC class I antigens in association with the novel target cell antigen were more sensitive to NK cell lysis, as compared to cells that co-express higher levels of MHC class I antigen and the target cell antigen. Further, the presence of this antigen across different species suggests this target cell antigen/structure to be highly evolutionarily conserved.

Animals

Characterization of the immunological memory state generated in mice susceptible to Leishmania major following exposure to low doses of L. major and resulting in resistance to a normally pathogenic challenge.

BALB/c mice are susceptible to a high-dose infection of the protozoan Leishmania major, which induces a parasite-specific antibody, Th2-like response, exclusive of a significant and protective cell-mediated Th1 component. We have shown, in contrast, that infection with a low number of parasites induces cell-mediated immunity exclusive of antibody production, and results in resistance to substantial subsequent high-dose infection. Low-dose exposure thus constitutes effective vaccination. In the present study, we analyze lymphokine production by parasite-specific T cells from those low-dose exposed, resistant mice and from normal, susceptible mice following high-dose infection. Two findings stand out. First, the parasite-specific T cells in mice rendered resistant appear not to be in an activated, effector state at the time of parasite challenge, as assessed by lack of lymphokine production on short-term stimulation with parasite antigens, but to be rather in a memory state. Second, the ratio of parasite antigen-dependent production of interferon-gamma to that of interleukin-4 by spleen cells of low-dose exposed and normal mice upon high-dose challenge takes a dramatically different course. This ratio is similar in both groups of mice shortly after challenge, but increases dramatically in the resistant and declines dramatically in the control mice over a period of weeks, such that these ratios differ by about 60-fold 12 weeks after the high-dose challenge. In addition, we show that a similar state of resistance occurs following low-dose infection with a more virulent strain of L. major. In toto, our observations suggest that resistance may be generally achievable by low-dose exposure and may be associated with a memory state which, when activated by parasite challenge, results in the evolution of the response over weeks such that the protective, Th1 component becomes ever more dominant over the Th2 component.

Animals

An evolvant of Escherichia coli that employs the L-fucose pathway also for growth on L-galactose and D-arabinose.

L-Galactose, D-arabinose, and L-fucose form six-membered rings with identical stereoconfigurations. However, only L-fucose can serve as the sole carbon and energy source of wild-type Escherichia coli K-12. A mutant that can grow on L-galactose and D-arabinose was isolated by alternate selection on the two sugars. The L-fucose pathway became inducible by all three sugars. Transduction into the mutant of the wild-type fuc+ region containing both the regulatory and structural genes abolished the novel growth abilities on L-galactose and D-arabinose, whereas transduction into the mutant of a fuc deletion abolished the growth abilities on all three sugars. Introduction of the wild-type fucR+ (which encodes the activator protein for the fuc regulon) on a multicopy plasmid depressed the growth abilities of the mutant on L-galactose and D-arabinose, but not on L-fucose. The results suggest that the effector specificity of the activator protein in the mutant was broadened. It is proposed that an adaptive response of an activator-controlled system is more likely than that of a repressor-controlled system to achieve fixation in a population, because the first variant to emerge in response to a novel metabolic demand has a good chance of having an altered specificity of regulation. Such a change entails little or no metabolic liability during the absence of the novel substrate. In contrast, the first variant of a negatively controlled system to emerge has an overwhelming chance of being the result of a random mutation that destroys repressor function.(ABSTRACT TRUNCATED AT 250 WORDS)

Arabinose

Parasites and allergies: a complex bidirectional relationship from evolutionary origins to modern therapeutics.

Parasites and allergic diseases are linked by a complex, bidirectional relationship shaped by long-term host-parasite coevolution. This review discusses how different parasites may either promote or attenuate allergic responses through immunological, epithelial, and microbiome-mediated mechanisms. IgE-mediated immunity, mast cell activation, eosinophilia, and pruritus may have evolved as protective responses against helminths and blood-feeding ectoparasites. In contrast, modern allergies may partly reflect misdirected responses to harmless environmental antigens. The effects of parasites on allergy are not uniform and depend on parasite type, infection site, exposure intensity and chronicity, host immune status, and the degree of host-parasite adaptation. Protozoa such as Giardia intestinalis may contribute to food allergy-related manifestations by disrupting the intestinal barrier, altering gut microbiota composition, and modifying mucosal immune responses, particularly in atopic individuals. In contrast, selected helminths may attenuate allergic inflammation by inducing regulatory T and B cells, anti-inflammatory cytokines, antigen-presenting cell modulation, and IgG4-associated mechanisms that can limit IgE-mediated effector responses. Molecular similarities between parasite-derived antigens and environmental allergens, including conserved protein families and carbohydrate epitopes, may contribute to cross-reactive IgE responses and complicate allergy diagnostics. Therefore, current research is shifting from live helminth therapy toward defined parasite-derived molecules and immunomodulatory pathways that may inspire safer and more controlled therapeutic strategies. A clearer understanding of parasite-allergy interactions may improve diagnostic interpretation and support the development of new approaches to the management of allergic disease.

Humans

Analysis of T-cell subset proliferation at afebrile and febrile temperatures: differential response of Lyt-1+23- lymphocytes to hyperthermia following mitogen and antigen stimulation and its functional consequence on development of cytotoxic lymphocytes.

Poikilotherms are now known to increase their survival by behaviorally induced fevers in response to pathogenic infection. Increased host resistance to viral and bacterial infections has also been noted in homeotherms whose body temperature has been elevated by manipulation of ambient temperature. These observations suggest that fever may increase host resistance by augmenting acquired immunity; thus, this highly conserved response during evolution may provide a survival advantage against environmental pathogens. This possibility has prompted us to investigate the influence of a temperature characteristic of a modest fever in humans (39 degrees C) on T-cell proliferation and function. Our studies revealed that T-cell mitogenesis was enhanced when cultures were incubated at the febrile temperature (39 degrees C). Analysis of T-cell subsets demonstrated that temperature enhanced the mitogenic (Concanavalin A) response of Lyt-1+23- splenocytes; in contrast, hyperthermia was deleterious to lectin-driven proliferation of the Lyt-1-23+ population even in the presence of large quantities of recombinant interleukin-2 (rIL-2). B-cell mitogenesis was invariably inhibited by hyperthermia over a broad range of concentrations of lipopolysaccharide (LPS). Although T-cell mitogenesis was enhanced at the febrile temperature, T-cell proliferation induced by alloantigens or by a murine pathogen, Sendai virus (SV), was diminished at the febrile temperature. Hyperthermia inhibited SV-induced proliferation of Lyt-1+23- lymphocytes, indicating that a febrile temperature can either augment or inhibit T-cell proliferation of the same T-cell subset depending upon the activation signal (i.e., lectin or antigen). Because effector cell development depends upon antigen-induced clonal expansion (proliferation), we evaluated the influence of temperature on primary cytotoxic thymus (T)-derived lymphocyte (CTL) responses against alloantigens and secondary CTL responses against SV under afebrile and febrile conditions. We consistently observed that the induction of alloreactive and virus-specific CTL was diminished in cultures incubated at the elevated temperature, suggesting that a thermosensitive event(s) exists in the progression of CTL derived from either CTL precursors (CTLp) or memory CTL. Furthermore, hyperthermia reduced the number of SV-specific CTL detectable by limiting dilution analysis, suggesting that another event independent of clonal expansion was thermolabile during effector cell development. In view of these results, we suggest that it may be premature to conclude that the observed increase in host resistance induced by a febrile state is mediated by enhanced cell-me

Antigens, Ly

Interleukin-1-beta activation of cultured glomerular epithelial cells.

In crescentic glomerulonephritis, crescent formation involves the active participation of glomerular epithelial cells (GEC) and macrophages recruited to the glomerulus during the evolution of the disease. Cytokines derived from macrophages may affect many functions of GEC. In this study, we found that interleukin-1 beta (IL-1 beta) inhibited GEC growth (DNA synthesis and cell number) in vitro in a dose- and time-dependent manner. This effect was not mediated by tumor growth factor beta (TGF beta) which is a potent inhibitor of GEC growth in vitro. Treatment of GEC with various concentrations of IL-1 beta induced morphologic changes consisting in the loss of their cobblestone shape and acquisition of a fibroblast-like appearance. Moreover, IL-1 beta was shown to stimulate the expression of interleukin-6 (IL-6) by GEC. The increase in IL-6 secretion by GEC treated with IL-1 beta was observed at both the protein and mRNA levels. IL-1 beta also affected the metabolism of laminin in cultured GEC, inducing a dose-dependent increase in laminin production in culture supernatants harvested from GEC. Finally, we investigated the expression of MHC class II antigens and intercellular adhesion molecule-1 (ICAM-1) in GEC, and found that unstimulated GEC are negative for MHC class II antigens, as detected by flow cytometry. In contrast to the induction of effector functions, expression of MHC class II antigens stringently required interferon-gamma. IL-1 beta did not induce MHC class I antigen expression. The regulation of ICAM-1 expression in that unstimulated GEC expressed ICAM-1, and this expression was upregulated by IL-1 beta. We conclude that IL-1 beta alters many functions of GEC, and these changes may be involved in the initiation and amplification of glomerular injury.

Cell Count

Insect immune systems: same same but different but still same.

Insects are the most diverse group of animals in nature, occupying nearly every ecological niche and playing central roles as pollinators, pests, and disease vectors. Despite this vast diversity, insects rely on a set of conserved yet evolutionarily adaptable immune pathways to defend against pathogens. Early studies in insect immunity have laid the foundation for human immunology, and recent advances in genomic and transgenic technologies have renewed interest in understanding how immune responses vary across insect orders. Insects are highly diverse in their immune systems; each species has unique immune responses that help fight infections from specific pathogens. Nevertheless, they share multiple aspects of recognition, regulation, and effector mechanisms. This review focuses on current knowledge of the immune systems of major insect lineages to highlight both shared signaling pathways, immune cells, and humoral factors, as well as lineage-specific responses that reflect distinct ecological pressures that have shaped the host-microbe interactions. Comparing different insect species and orders not only provides insights into the evolutionary divergences and convergences of immune system features but also offers complementary knowledge among species within the same order, helping fill existing gaps. Understanding these evolutionary patterns not only deepens our understanding of insect immunity but also informs the development of transgenic strategies to disrupt pathogen transmission in key vector species.

Animals

Sea urchin genes expressed in activated coelomocytes are identified by expressed sequence tags. Complement homologues and other putative immune response genes suggest immune system homology within the deuterostomes.

To identify some of the genes expressed in LPS-activated coelomocytes, we sequenced randomly chosen clones from a directionally constructed cDNA library to produce a set of expressed sequence tags (ESTs). Deduced amino acid sequences from 307 ESTs were compared with known protein sequences in GenBank, and significant matches to approximately 30% of the clones were identified. Eighty-nine clones matched to 55 different proteins, including several putative immune effector proteins. In this work, we show the first identification of an invertebrate homologue of a vertebrate C component. Another EST matches to several short consensus repeats that are characteristic of a variety of proteins, including CR/regulatory proteins and clotting factors. Additional putative immune effector genes include 1) a Kazal-type protease inhibitor that may function to inactivate bacterial proteases, 2) a C-type lectin similar to echinoidin, and 3) a serine protease with similarities to thrombin, elastase, haptoglobin, and plasmin. Other EST categories include 1) cell surface proteins and receptors, 2) proteins involved in signaling systems, 3) lysosomal and secreted proteins, 4) cytoskeletal and cytoskeletal modifying proteins, 5) general cell function proteins, 6) proteins with unknown function, and 7) ESTs without significant matches, 25 with open reading frames. Many of the ESTs identified in this study represent the types of genes expected to be used in lower deuterostome immune functions.

Amino Acid Sequence

Interferon gamma, interleukin 4 and transforming growth factor beta in experimental autoimmune encephalomyelitis in Lewis rats: dynamics of cellular mRNA expression in the central nervous system and lymphoid cells.

The potential role of certain important immunoregulatory and effector cytokines in autoimmune neuroinflammation have been studied. We have examined the expression of mRNA, with in situ hybridization, of interferon gamma (IFN-gamma), interleukin 4 (IL-4) and transforming growth factor beta (TGF-beta) both in sections of spinal cords and the antigen-induced expression of these cytokines by lymphoid cells after stimulation with a dominant encephalitogenic peptide of MBP (MBP 63-88) during the course of actively induced experimental autoimmune encephalomyelitis (EAE) in Lewis rats. In spinal cords, the target organ in EAE, cells expressing mRNA for IFN-gamma, first appeared at the onset of clinical signs, i.e., day 10 postimmunization (p.i.), peaked at the height of disease (day 13 p.i.) and then gradually decreased concomitant with recovery. Very few IL-4 mRNA-expressing cells appeared in the spinal cord with no clear relation to clinical signs or histopathology. In contrast, expression of mRNA for TGF-beta did not increase until day 13 p.i., at height of the disease, shortly preceding recovery. These data are consistent with a disease upregulating role of IFN-gamma, while TGF-beta may act to limit central nervous system (CNS) inflammation. In lymphoid organs, primed MBP 63-88 reactive T cells showed an interesting time-dependent evolution of their cytokine production in vitro. Thus, early after immunization there was a conspicuous MBP 63-88-induced production of both IFN-gamma and IL-4. Such cells may act in the initiation and promotion of the disease. Later, in the recovery phase, MBP 63-88 induced lymphoid cells to TGF-beta production. Thus, an autoantigen-specific production of TGF-beta occurred during EAE and hypothetically such a mechanism may serve to downregulate aggressive autoimmunity systemically.

Amino Acid Sequence

Presensitization accelerates allograft arteriosclerosis.

Transplant arteriosclerosis is the major factor influencing allograft survival after the first year posttransplantation. The host's immunologic response is one of the principal effectors responsible for the constitution of this vascular wall lesion, but the effector pathway and the factors influencing the immune injury are not clear. In a rat abdominal aortic allograft model, we used a skin priming method to study the influence of sensitization on the occurrence of vascular wall lesions. Primed rats developed transplant arteriosclerosis lesions involving medial decellularization and intimal proliferation before the 21st day, whereas naive animals had the same lesions at 2 months posttransplantation. A significant difference between primed and naive rats was found for medial thickness (48.00 +/- 2.85 microm versus 79.34 +/- 2.55 microm, P<0.001) and smooth muscle cell content (160 +/- 28 cell/mm versus 466 +/- 19 cell/mm, P<0.001) at 21 days posttransplantation, and intimal hyperplasia was seen in primed animals at that time, whereas it was not observed in naive rats until the 60th day. The immune profile in naive and primed animals was different. The immune cells infiltrating the arterial wall in naive rats, were principally macrophages and CD8+ T-lymphocytes. No Ig or complement deposition was detected. IgG and complement activated fraction were present in the media of primed animals as early as the fifth day posttransplantation and CD4+ T lymphocytes were the dominant immune cell population. In conclusion, sensitization influences the immune mechanisms responsible for the development of transplant arteriosclerosis and alters the rate of its evolution.

Animals

[Clonal B-cell reaction in Sjögren disease and Hashimoto autoimmune thyroiditis].

Autoimmune diseases are defined as specific, adapted immune reactions against self-antigens. These antigens were attacked by activated, autoaggressive T-Cells in most cases. However, since introduction of the MALT concept it became clear, that particularly in the autoimmune diseases of the MALT specific subpopulations of B-cells play an important role. In this study, the B-cells in the thyroid gland of 40 patients suffering from Hashimoto's disease and 25 patients with Sjögrens syndrome and enlargement of the salivary glands were immunophenotyped and molecular-genetically investigated. The molecular-genetical investigation included PCR based amplification of immunoglobulin heavy chain CDR III region and the T-cell receptor gamma chain (TCR-gamma). By immunophenotyping, in the salivary glands monocytoid B-cells could be identified as intraepithelial effector cells in nearly all cases, whereas in the thyroid gland mostly marginal zone cells in the follicle epithelium were observed. In 13 biopsy specimen from salivary gland, clonal rearrangements of TCR-gamma, and in 9 cases of patients with Sjögren's syndrome JH rearrangements could be detected. Monoclonal TCR-gamma rearrangements were identified in 9/40 patients suffering from autoimmunethyroiditis Hashimoto. In 8/40 thyroid gland biopsies a monoclonal JH-rearrangement could be found. Within 11/25 patients with Sjögren's syndrome and in 23/40 patients with M. Hashimoto polyclonal rearrangements were observed. Within all biopsy specimen of patients with monoclonal rearrangements, lymphoepithelial lesions or lymphoepithelial destructions could be identified immunohistochemically. Additionally, in 2 biopsies from salivary gland and in one specimen from thyroid gland the transition from autoimmune disease into a secondary high grade lymphoma was observed. In 26/40 patients with M. Hashimoto and in 11/25 patients with Sjögren's syndrome the transition in a subsequent low grade B cell lymphoma of MALT-type was found. These results lead to the following conclusions: 1. clonal rearrangements of tumor forming B-cells in both autoimmune diseases investigated can be interpreted as facultative malignant. 2. Intraepithelial B-cells probably are the promotors of the autoimmune process and--in case of clonal evolution and immortalisation--can be regard as causative agent in the development of primary extranodal B-cell lymphoma.

B-Lymphocytes

Requirement for vasoactive amines for production of delayed-type hypersensitvity skin reactions.

The skin sites of the mouse where delayed-type hypersensitivity (DTH) reactions are most easily elicited (foot pads and ears) are particularly rich in 5-hydroxytryptamine (5-HT)-containing mast cells. Since mice are deficient in circulating basophils, which play a role in at least some DTH reactions, we investigated the possibility that the mast cells were playing an important role in the evolution of the skin reactions of DTH in mice. We found that reserpine, a drug which depletes mast cells of 5-HT, abolished the ability of the mouse to make DTH reactions in the skin. The suppressive effect of reserpine could be partially blocked by monoamine oxidase inhibitors which prevent the degradation of 5-HT in the cytosol of the mast cell. Spleen cells of immune, reserpine-treated mice transferred DTH reactions to nonimmune mice normally, indicating that the reserpine treatment did not affect immune T cells. DTH reactions could not be transferred into reserpine-treated mice. We suggest that T cells are continually emigrating from the blood, through postcapillary venule endothelium, by a mechanism which does not depend on vasoactive amines. If they are appropriately immune and meet the homologous antigen in the tissue, they induce mast cells to release vasoactive amines which cause postcapillary venule endothelial cells to separate, allowing the egress from the blood of cells which ordinarily do not recirculate. The secondarily arriving vasoactive amine-dependent cells are responsible for the micro- and macroscopic lesions of DTH reactions. Chemotactic factors may also be involved in bringing cells to the DTH reaction sites but we propose that T-cell regulation of vasoactive amine-containing cells allows the effector cells to pass through the endothelial gates after they are called.

Animals

Interferon-alpha-2b enhances the natural killer activity of patients with transitional cell carcinoma of the bladder.

BACKGROUND: Transitional cell carcinoma (TCC) of the bladder is associated with alterations in the immune system of the host. The authors demonstrated that in patients with bladder carcinoma there is a negative correlation between the levels of natural killer (NK) activity and the clinical evolution and pathologic stages of disease. METHODS: The authors investigated the effect of various doses of recombinant interferon-alpha-2b (IFN-alpha-2b) for variable periods of culture on the nonmajor histocompatibility-restricted cytotoxic activity of peripheral blood mononuclear cells (PBMNC) with or without CD16 and CD3-depleted populations from patients with superficial (confined to the mucosa or lamina propria) and infiltrative (those infiltrating beyond the lamina propria) TCC of the bladder using 4-hour 51-sodium chromate (51Cr)-release cytotoxicity assays against both NK-sensitive (K562) and NK-resistant (JY) tumor target cells. RESULTS: The normal NK activity detected in PBMNC from patients with superficial TCC of the bladder can be significantly enhanced by short-term (18-hour) incubation with recombinant IFN-alpha (P < 0.05). The depressed NK cytotoxic activity found in PBMNC from patients with infiltrative TCC can also be significantly enhanced, but not normalized, by short-term (18-hour) incubation with recombinant IFN-alpha (P < 0.05). Short-term recombinant IFN-alpha-incubated PBMNC from patients with superficial, but not infiltrative, TCC of the bladder also showed marked cytotoxic activity against NK-resistant target cells. By selection with CD16 or CD3 monoclonal antibodies and complement, it was also found that the precursor and effector lymphocytes of this recombinant IFN-alpha-promoted cytotoxicity belong to NK lineage. In kinetic studies, it was found that the maximal levels of the recombinant IFN-alpha-promoted cytotoxic activity against NK-sensitive and NK-resistant target cells in PBMNC from patients with TCC were reached after 18 hours of culture. CONCLUSION: Recombinant IFN-alpha can enhance the nonmajor histocompatibility-restricted cytotoxic activity of PBMNC from patients with TCC of the bladder.

Aged

Sensory receptors as a special class of hormonal cells.

Classically, sensory receptors are specialized cells which detect specific environmental disturbances and send out neural signals for the integration, control and/or regulation of effector organs. Recently, a special class of sensory receptors called sensori-hormonal cells which employ hormones as their means of flux of biological information has been proposed. These sensori-hormonal cells are capable of detecting and transducing environmental signals directly into the secretion of hormones within the same cells. Theoretically, all sensory receptors may have examples capable of direct sensori-hormonal transduction. However, only one group of sensori-hormonal cells, the photoendocrine cells, have so far been studied. The photoendocrine cells including the photoreceptors of fish retinas and pinealocytes of bird pineals are capable of detecting light and/or darkness and transducing the electromagnetic radiation energy into a hormonal output. Generally, light suppresses and darkness stimulates the biosynthesis and secretion of melatonin by these photoendocrine cells. Contrary to many hormonal systems which employ principally the feedback mechanism for regulation, the sensori-hormonal cells are predominantly controlled by the feedforward mechanism. However, other factors may serve as additional means of regulation by influencing the system and affecting the transduction processes and/or the synthesis and secretion of the hormone. The ability of sensori-hormonal transduction is suggested to be important for the survival of the organism itself and/or its species and sensori-hormonal cells or their equivalent should appear early in the course of animal evolution. It is further suggested that the sequence of appearance of melatonin functions in the course of evolution would be: hormone--humoral factor--neuromodulator--neurotransmitter.

Animals

A noncontiguous code for RNA-guided DNA recognition at the origin of CRISPR-Cas.

CRISPR-Cas provides RNA-mediated adaptive immunity, but how its first RNA-guided effector arose is unclear. In this study, we report the discovery of Viral Interference Programmable Repeat (VIPR) systems consisting of a Vipr protein ancestral to the earliest CRISPR-Cas effectors and VIPR RNAs (vrRNAs) comprising alternating GGY/NN motifs. Unlike canonical guide RNAs that pair with target nucleic acids through contiguous complementarity, vrRNAs recognize double-stranded DNA through a noncontiguous code in which the variable NN dinucleotides collectively specify a gapped target sequence. Natural vrRNA targets suggest that VIPR systems act against competing phages, and we demonstrate programmable phage defense by redirecting the complex for transcriptional repression. These results suggest that adaptive immunity originated from ancient warfare between viruses, revealing a previously unidentified logic for encoding information in sequence.

CRISPR-Cas Systems

Were lectins primitive Fc receptors?

Co-operation between humoral and cellular pathways occurs by the interaction of antibody antigen complexes with effector cells. This interaction is mediated by receptors for the Fc region of antibody, Fc receptors (FcR). Molecular characterisation of low-affinity receptors for IgE revealed an 123-amino-acid domain homologous with the carbohydrate-binding domain of the C-type animal lectins. Although IgE is heavily glycosylated, the binding of Fc epsilon RII to IgE was found to be independent of any "lectin-like" activity. The presence on lymphoid cells of a family of adhesion molecules containing a lectin-like domain, the ability of these lectin-like molecules and surface lectins to bind immunoglobulins, and subsequently the role of carbohydrates in the binding of immunoglobulins to such surface molecules imply that the ancestral carbohydrate. recognition domain of lectins held together by conserved cystein residues has evolved as FcR to recognise the constant region of immunoglobulins.

Animals