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Biomedical subjects

R Andreesen

Publications and source records attributed to R Andreesen.

At least 73 records · Page 4Linked to original sources

Effect of granulocyte-macrophage colony-stimulating factor treatment on phenotype, cytokine release and cytotoxicity of circulating blood monocytes and monocyte-derived macrophages.

We studied phenotype, function and differentiation of mononuclear phagocytes in 11 cancer patients treated subcutaneously with 10O microg/kg recombinant human (rhu) GM-CSF for 7 d. The rhuGM-CSF treatment induced (1) a 5.9-fold increase in the number of blood monocytes (MO), (2) a decrease of CD14bright/CD16bright cells with a diminution of the mean fluorescence intensity (MFI) of CD14, and (3) a decrease of MO cellular cytotoxicity. In patients' sera, tumour necrosis factor (TNF)-alpha, interleukin (IL)-10, IL-12, neopterin, macrophage-colony-stimulating factor (M-CSF), and IL-1 receptor antagonist (IL-1RA) increased, whereas GM-CSF and granulocyte-colony-stimulating factor (G-CSF) decreased after an initial peak. In whole blood samples the lipopolysaccharide (LPS)-stimulated release of TNF-alpha, IL-6 and IL-1RA increased initially, whereas IL-1beta, IL-10 and IL-12 decreased. During differentiation from MO to macrophages (MAC), interferon (IFN)-gamma-stimulated tumour cytotoxicity increased, but both MO and MAC were less cytotoxic upon rhuGM-CSF treatment. The differentiation-associated increase of LPS-induced TNF-alpha, IL-1RA and IL-10 secretion was reduced by the rhuGM-CSF treatment, and the expression of CD14 on MAC as well as the proportion of CD14+/CD16+, CD14+/MAX.1+ and CD14+/CD71+ cells in 7-d cultured MAC declined. We interpret these findings as (1) an increase of immature MO upon rhuGM-CSF therapy, (2) a priming effect on the LPS-induced proinflammatory cytokine repertoire of MO, and (3) an impact of rhuGM-CSF on the capacity of MO to differentiate to MAC in vitro.

Adult↗

Isolation and phenotypic characterization of colonic macrophages.

Macrophages play an important role in the intestinal mucosal immune system. However, they are a poorly defined cell population. We therefore determined their phenotype in normal colonic mucosa. Macrophages were isolated from colonic biopsies and surgical specimens by collagenase digestion. Colonic macrophages were positively sorted by anti-CD33 magnetic beads. Flow cytometric triple fluorescence analysis was applied to study CD14, CD16, CD33, CD44, CD11b, CD11c, CD64, HLA-DR, CD80, CD86 and CD3/CD19 expression. CD33 was evaluated as a positive marker for intestinal macrophages. CD33+ cells isolated from normal colonic mucosa showed co-expression of the established intracellular macrophage marker CD68 in FACS analysis. CD33+ cells were capable of phagocytosis. Isolation of this cell population by magnetic anti-CD33 beads and culture resulted in a 4.2-40-fold increase in IL-1beta and 4.5-44-fold increase in tumour necrosis factor-alpha (TNF-alpha) secretion compared with unsorted lamina propria mononuclear cells (LPMC). Of the CD33+ cells, 90.9 +/- 6.9% (mean +/- s.d.) were CD44+. However, macrophages from colonic mucosa showed only a low expression of CD14 (10.5 +/- 3.8%), CD16 (10.1 +/- 3.9%), HLA-DR (27.3 +/- 9.2%), CD11b (17.4 +/- 6.8%), CD11c (17.8 +/- 10.4%). Furthermore, expression of CD80 (9.2 +/- 4.2%) and CD86 (15.1 +/- 7.3%) was low, suggesting a low ability of normal intestinal macrophages to activate T cells and T cell-mediated immune responses. We conclude that CD33 is useful for the isolation and flow cytometric characterization of colonic macrophages. These cells exhibit a single phenotype in normal mucosa (CD33++, CD44++, CD14-, CD16-, CD11b-, CD11c-, HLA-DRlow, CD80-, CD86-) lacking lipopolysaccharide (LPS) receptor and costimulatory molecules.

Antigen-Presenting Cells↗

Selective depletion of CD14+ CD16+ monocytes by glucocorticoid therapy.

Glucocorticoids (GC) are potent anti-inflammatory and immunosuppressive agents that act on many cells of the body, including monocytes. Here we show that a 5-day course of high dose GC therapy differentially affected the CD14++ and the CD14+ CD16+ monocyte subpopulations in 10 patients treated for multiple sclerosis. While the classical (CD14++) monocytes exhibited a substantial increase from 495 +/- 132 to 755 +/- 337 cells/microl, the CD14+ CD16+ monocytes responded with a pronounced decrease from 36 +/- 15 to 2 +/- 3 cells/microl (P < 0.001). In 4/10 patients the CD14+ CD16+ monocytes fell below detection limits (<0.2 cells/microl). This observation was confirmed when the CD14+ CD16+ monocytes were identified by virtue of their low CD33 expression as these cells decreased as well. After discontinuation of GC therapy the CD14+ CD16+ monocytes reappeared and reached normal levels after 1 week. The profound depletion of CD14+ CD16+ monocytes by GC as described here is a novel effect of GC action in vivo and may contribute to GC-mediated immunosuppression. Determination of the number of this monocyte subset may also serve to monitor the effectiveness of GC therapy in patients requiring immunosuppressive treatment.

Adult↗

Carboxypeptidase M as a marker of macrophage maturation.

During terminal maturation of blood monocytes (MO) into macrophages (MAC), a multitude of phenotypic and functional changes occur: cells increase in size and enhance their capacity for phagocytosis and tumor cytotoxicity, but decrease their ability for T-lymphocyte stimulation. The pattern of secreted cytokines is shifted as is the profile of surface antigens. The identity of the MAC maturation-associated antigen MAX.I/MAX.II with carboxypeptidase M (CPM), a phosphoinositol-linked endopeptidase, was recently described. CPM is able to process a multitude of different substrates, among them immunologically important peptides such as bradykinin, anaphylatoxins and enkephalins. It was previously shown to be expressed in placenta, lung and kidney. CPM as detected by MAX.I/II shows a strong expression on MO-derived MAC in vitro and on MAC in vivo accompanying T-lymphocyte activation such as during allogeneic transplant rejection or allergic alveolitis. In contrast, its expression is suppressed on MAC by some types of tumor cells. A synchronous expression of CPM together with MAC cytotoxic function makes a functional relationship very well possible. However, the biological importance of CPM expression on MAC in vivo is difficult to predict, since a wide range of biologically active peptides are substrates for CPM, and the relevance for most of those peptides to be processed by CPM during an immune reaction is only poorly understood at present.

Animals↗

Effective biomodulation by leucovorin of high-dose infusion fluorouracil given as a weekly 24-hour infusion: results of a randomized trial in patients with advanced colorectal cancer.

PURPOSE: To determine whether high-dose infusional fluorouracil (FU) is effectively modulated by leucovorin (LV), interferon (IFN) alpha-2b, or both when given to patients with metastatic colorectal cancer. PATIENTS AND METHODS: Patients (n = 236) with progressive, measurable disease were randomized to three groups and received FU 2,600 mg/m2 as a 24-hour continuous infusion (CI) weekly for 6 weeks with 2 weeks rest (FU24h) and LV 500 mg/m2 as a 2-hour infusion before FU or IFN 3 x 10(6) U subcutaneously 3 times weekly or both. Treatment continued until progressive disease or unacceptable toxicity was observed. Pairs of treatment arms were analyzed sequentially to detect equivalence or a 25% difference in response rates. RESULTS: The rate of objective remission in patients who received FU24h/LV (44%; 40 of 91) was significantly higher than in patients who received FU24h/IFN (18%; 16 of 90; P < .05). The response rates of patients who received FU24h/LV versus FU24h/LV/IFN (27%; 13 of 49) were statistically equivalent. Significant differences were observed for time to tumor progression (TTP) (FU24h/LV, 7.1 months; FU24h/IFN, 3.9 months; FU24h/LV/IFN, 6.3 months; global P value < .009) and survival (16.6 months, 12.7 months, 19.6 months, respectively; global P value < .04). Unpredictable and life-threatening toxicity in the FU24h/LV/IFN arm required dose reduction of FU to 2,000 mg/m2/day and early stoppage of this arm. Toxicity was manageable in patients who received both FU24h/LV (grade 3 to 4 diarrhea, 21%) and FU24h/IFN (grade 3 to 4 diarrhea, 15%). CONCLUSION: Response rate, TTP, and overall survival were superior for LV-containing regimens compared with IFN modulation alone. The addition of IFN to high-dose infusional FU plus LV offers no advantage and may increase toxicity. The regimen of high-dose infusional FU24h/LV warrants further evaluation in patients with metastatic colorectal cancer.

Adult↗

Antibodies TC-12 ("unique") and TH-111 (CD96) characterize T-cell acute lymphoblastic leukemia and a subgroup of acute myeloid leukemia.

To extend the panel of monoclonal antibodies useful for immunophenotyping of acute leukemias, two new reagents, TC-12 and TH-111, were developed. TC-12 was found "unique," and TH-111 was assigned to the recently defined CD96 cluster. Both reagents show little reactivity with blood and bone marrow nucleated cells but define a major (TH-111: 78.3%) or an important (TC-12: 45.6%) subset of T-cell acute lymphoblastic leukemia (ALL). In addition, in acute myeloid leukemia (AML), the expression of TC-12 was found in 64 (20.2%) of 317 and TH-111 in 97 (29.1%) of 333 of these patients. TC-12 positivity in AML was virtually restricted to the Fab subtypes M0, M1, M2, and M6. In the group of immature AML characterized by the coexpression of CD7 as well as CD117 and CD34 positivity, leukemic blasts frequently disclosed the TC-12 and TH-111 antigen. Although the TC-12 antigen could not be determined, TH-111 immunoprecipitated the TACTILE (CD96) antigen and, when expressed, was found to be associated with the transferrin receptor. These reagents may help not only to define and dissect T-cell ALL, but also to characterize a subgroup of immature AML at the divergence of T-cell and myeloid lineage.

Animals↗

[Space occupying lesion in the anterior mediastinum in a patient with Basedow disease and previously diagnosed osteosarcoma].

HISTORY AND CLINICAL FINDINGS: A 24-year-old woman with osteosarcoma of the right thigh, diagnosed 12 years ago, complained at a follow-up examination of decreased exercise tolerance, increased nervous tension, heat intolerance, weight loss, hair loss and irregular stools. Examination revealed tachycardia (100/min), mild exophthalmus and a small goitre. INVESTIGATIONS: A decreased basal TSH level (0.002 mU/ml), raised peripheral thyroid hormone (fT4 6.7 ng/dl, total T3 7.8 micrograms/l) and a TSH receptor antibody titre of 33.4 U/l) were compatible with immune type Graves' disease. Radiology revealed an upper mediastinal space-occupying lesion which scintigraphically was separate from thyroid tissue. A metastasis of the osteosarcoma or thymus hyperplasia were considered the most likely cause. TREATMENT AND COURSE: The mediastinal lesion regressed under thyrostatic treatment with carbimazole (20 mg daily by mouth). But the clinical picture, localization and negative scintigraphy provided the diagnosis of transitory thymus hyperplasia in the course of Graves' disease. CONCLUSION: In immune type Graves' disease with a mediastinal space-occupying lesion, not only intrathoracic goitre but also thymus hyperplasia should be considered in the differential diagnosis.

Adult↗

Molecular characterization of the gene for human cartilage gp-39 (CHI3L1), a member of the chitinase protein family and marker for late stages of macrophage differentiation.

We have previously reported that the expression of HC gp-39, a 39-kDa secretory glycoprotein and member of the chitinase protein family, is associated with late stages of monocyte to macrophage maturation. To allow further investigations of its unique expression pattern and to facilitate studies on the regulation of this "marker gene," we characterized the genomic organization of the HC gp-39 gene (HGMW-approved symbol CHI3L1) and cloned its 5'-proximal promotor region. The gene is composed of 10 exons distributed over an 8-kb region. Two transcriptional initiation sites located 82 and 126 nucleotides upstream of the ATG start codon were identified using primer extension and S1 nuclease protection assays. We sequenced 1.3 kb of the 5'-flanking region and identified a variety of putative regulatory elements.

Adipokines↗

Molecular cloning of a 1alpha,25-dihydroxyvitamin D3-inducible transcript (DDVit 1) in human blood monocytes.

The differentiation and activation of monocytes (MO) and monocytic cells is modulated by 1alpha,25-dihydroxyvitamin D3 (Vitamin D3). In order to investigate early effects on the differentiation process of MO, we used the mRNA Differential Display technology to identify genes that are induced in freshly isolated human blood MO cultured for 4 hours with Vitamin D3. A cDNA fragment was isolated and Northern analysis confirmed a low expression of this cDNA at about 1,4 kb in MO which was increased by the addition of Vitamin D3. Using the rapid amplification of cDNA Ends (RACE)-PCR we got a transcript (DDVit 1) of a length of 1251 bp containing an open reading frame that encodes a putative 16,5 kD protein. Database search revealed an identity with a possible enterocyte differentiation promoting factor with a length of 1177 bp that has not been further characterized. Therefore DDVit 1 may be a differentiation promoting factor for the monocytic lineage. Further investigations will clarify the role of this protein in the differentiation process of MO.

Amino Acid Sequence↗

The human lysozyme gene undergoes stepwise demethylation during phagocyte maturation.

The lysozyme (LZM) gene provides a very useful model for studies of phagocyte maturation, because its protein synthesis is increased during myelopoiesis and thus most abundant in terminally differentiated and activated phagoyctes. LZM gene expression and DNA methylation were examined in various normal and transformed hematopoietic cells. Two shifts toward LZM gene demethylation coincided with upregulation of expression: activation of expression in myeloid precursor cells was associated with significant demethylation at a CpG dinucleotide within an Alu repeat in the 5' flanking region; high-level expression in different types of mature phagocytic cells was associated with complete demethylation at two additional, intragenic CpG sites contained in Alu sequences. The possibility that methylation changes occurring within the 5' region of the human lysozyme gene could be involved in the transcription of this gene is discussed, as well as a possible role for demethylation in the maintenance of distinct maturation stages during phagocyte development.

Cell Differentiation↗

A comparative analysis of cytokine production and tolerance induction by bacterial lipopeptides, lipopolysaccharides and Staphyloccous aureus in human monocytes.

Monocytes (MO) and macrophages (MAC) are important producers of cytokines involved in the pathophysiology of bacterial sepsis. Most studies concentrate on the effects of bacterial lipopolysaccharides (LPS) regarding the induction of cytokine gene expression and secretion in MO/MAC. Here we report that besides LPS, the synthetic lipoprotein analogue lipopeptide N-palmitoyl-S-(2,3-bis(palmitoyl)-(2RS)-propyl)-(R)-cysteinyl-alanyl- glycine (Pam3-Cys-Ala-Gly), another component of the outer membrane of Gram-negative bacteria, as well as heat-killed Staphyloccocus aureus (S. aureus/SAC) are potent stimuli for cytokines in human MO. For all three investigated stimuli we found an individual pattern of cytokine induction: LPS was most potent in inducing interleukin-6 (IL-6) synthesis, whereas for tumour necrosis factor-alpha (TNF-alpha) secretion SAC was the best stimulus. Comparable amounts of IL-8 were induced by either LPS or Pam3-Cys-Ala-Gly, with SAC being less effective even at higher concentrations. The addition of serum led to an increase in LPS-, SAC- and Pam3-Cys-Ala-Gly-stimulated TNF-alpha secretion, indicating that the presence of serum is critical not just for LPS stimulation. Furthermore, as is known for LPS, Pam3-Cys-Ala-Gly and SAC rendered MO refractory to a second bacterial stimulus. Pam3-Cys-Ala-Gly and SAC induced tolerance for itself, but LPS could partially overcome this effect. As the CD14 molecule is discussed as a common receptor for different bacterial components, we investigated whether the TNF-alpha response of MO could be blocked by anti-CD14 antibodies. MY4, a CD14 antibody, selectively blocked the TNF-alpha secretion induced by LPS but not by Pam3-Cys-Ala-Gly or SAC. In summary, we conclude that besides LPS, lipopeptide Pam3-Cys-Ala-Gly and SAC are potent stimuli for human MO, while the mechanisms of activation seem to be partially different from LPS.

Antibodies, Monoclonal↗

Adoptive immunotherapy with tumor-cytotoxic macrophages derived from recombinant human granulocyte-macrophage colony-stimulating factor (rhuGM-CSF) mobilized peripheral blood monocytes.

We examined the mobilization of blood monocytes (MO) with recombinant human granulocyte-macrophage colony-stimulating factor (rhuGM-CSF) with regard to the in vitro generation of MO-derived tumor-cytotoxic macrophages (MAC) for use in adoptive immunotherapy of cancer patients. Eleven patients with progressing metastatic cancer received interferon (IFN)-gamma activated tumor-cytotoxic MAC generated in vitro from autologous MO with and without pretreatment with rhuGM-CSF. RhuGM-CSF was administered subcutaneously at 10 micrograms/kg for 7 days. RhuGM-CSF treatment and adoptive cell transfer were well tolerated, and no toxicity greater than WHO II degrees occurred. Fever was the most common side effect and was seen in all patients during rhuGM-CSF treatment and during 9 of 22 MAC therapies. Bone pain was noted in 5 of 11 patients during rhuGM-CSF therapy. RhuGM-CSF treatment led to a continuous increase in the white blood cell counts and the number of MO within the leukapheresis products. The mean number of transfused MAC was 0.9 x 10(9) without rhuGM-CSF pretreatment and 1.9 x 10(9) after rhuGM-CSF administration. The maximum number of MAC that could be generated was 7.3 x 10(9), but after a dose escalation protocol only up to 2.7 x 10(9) MAC were transfused. Cytotoxicity against U937 cells increased during MO to MAC differentiation, but was decreased in both MO and MAC on treatment with rhuGM-CSF. This study proves the feasibility of reinfusing MAC generated in vitro from rhuGM-CSF mobilized MO.

Adult↗

Cytokine production precedes the expansion of CD14+CD16+ monocytes in human sepsis: a case report of a patient with self-induced septicemia.

We describe a patient with self-induced disease who presented with repeated urinary tract infection and sepsis due to intravesical and intravenous injection of feces. Sepsis occurred repeatedly such that the patient exhibited 10 bouts of fever > 40 degrees C in a single month. This bacterial challenge led to massive activation of the monocyte system with high levels of TNF-alpha, IL-6, and monocyte colony-stimulating factor (M-CSF). This cytokine response was followed by strong expansion of the novel CD14+CD16+ monocyte subset. These results suggest that cytokines induce the development of CD14+CD16+ cells in human septicemia and that CD14+CD16+ cells may serve as indicator for previous bouts of excessive inflammation.

Adult↗

Differential regulation of proinflammatory and hematopoietic cytokines in human macrophages after infection with human immunodeficiency virus.

Cells of the macrophage lineage (MAC) play an important role in human immunodeficiency virus (HIV) infection. However, the knowledge on the extent of macrophage involvement in the pathogenesis of HIV infection is still incomplete. In this study we examined the secretory repertoire of HIV-infected MAC with respect to the proinflammatory cytokines tumor necrosis factor-alpha (TNF-alpha), interleukin-1 beta (IL-1 beta), IL-6, IL-8, and the hematopoietic growth factors M-, G- and granulocyte-macrophage colony stimulating factor (GM-CSF). Using a culture system on hydrophobic teflon membranes, blood-derived MO from healthy donors were infected with a monocytotropic HIV-1 isolate (HIV-1D117IIII). We analyzed the constitutive and lipopolysaccharides-stimulated secretion of MO/MAC early after infection as well as in long-term cultured, virus-replicating cells. The release of proinflammatory mediators and hematopoietic growth factors were differentially regulated after infection with HIV: the secretion of TNF-alpha, IL-1 beta, IL-6, IL-8 was upregulated, whereas a down-regulation of M-, G-, and GM-CSF could be observed. These results may provide some explanation for the immunological dysfunction, the hematopoietic failure and the chronic inflammatory disease occurring in HIV-infected patients.

Cells, Cultured↗

Human monocytes induce a carcinoma cell line to secrete high amounts of nitric oxide.

Nitric oxide (NO) is a short-lived pleiotropic mediator with a multitude of biologic functions. The inducible form of NO synthase (iNOS) is responsible for the discontinuous production of high amounts of NO and is important for the cytotoxic capacity of macrophages in rodents, whereas NO production by human macrophages or monocytes (MO) is under debate. Here we report that high amounts of NO are synthesized in cocultures of human MO with the human carcinoma cell line RT4 without further stimulation. Both cell types have to be viable and metabolically active for NO production. However, in contrast to reports by others, we could demonstrate that tumor cells and not MO are the producers of NO by the following findings: 1) NO release was induced in RT4 cells, but not in MO, by diluted supernatants (SN) of RT4/MO cocultures; 2) SN of MO stimulated with tumor cell membrane preparations were sufficient to induce NO release by tumor cells; and 3) NOS mRNA expression could be detected only in tumor cells, not in MO. Separating both cells by a cell-impermeable membrane resulted in NO amounts comparable to those in cocultures with direct cell contact, indicating one or more soluble NO-inducing factors. Considerable amounts of IL-1 beta and TNF-alpha were present in cocultures. IL-1 beta and TNF-alpha, mediators produced by activated MO, in combination induce NO release in RT4 cells. Blocking of TNF-alpha or IL-1 in SN inhibited NO release in RT4 cells. This indicates that IL-1 beta and TNF-alpha play prominent roles in iNOS induction by MO in RT4 tumor cells.

Arginine↗

Three-dimensional co-culture of human monocytes and macrophages with tumor cells: analysis of macrophage differentiation and activation.

Here we report on an experimental system for generating TAM in vitro by culturing human MO and MO-derived macrophages (MAC) within 3-dimensional multicellular tumor spheroids (MCS). MO as well as MO-derived MAC migrate into tumor spheroids and spread throughout the entire spheroid within 16 hr. In contrast, fibroblast-spheroids were not infiltrated. The regular expression of MAC maturation-associated antigens on infiltrating MO was suppressed within MCS of the undifferentiated bladder carcinoma line J82 with regard to carboxypeptidase M (CPM), MAX.3 antigen and CD105. However, MAC within spheroids of highly differentiated papillary RT4 cells failed only the single antigen CD51, whereas MAC expressed the complete maturation-associated phenotype within non-tumorigenic HCV29 spheroids. Interestingly, the suppressive effect of J82 carcinoma cells could only be observed in 3-dimensional but not in monolayer cultures. The J82-MCS induced suppression of CPM and MAX.3 expression was only seen to be operative on infiltrating blood MO: MO first differentiated for 2 days and subsequently co-cultured with J82-MCS showed normal expression of MAX.3 and CPM within the spheroid. Besides the modulation of MAC phenotype, the cytokine response of intraspheroidal MAC was analyzed: upon co-culture MO secreted high IL-1beta and IL-6 but low amounts of TNF-alpha as compared to MAC. This MO typical cytokine pattern remained constant for up to 8 days in culture, again indicating a disturbed MO to MAC maturation within tumor spheroids. In conclusion, a 3-dimensional interaction with tumor cells in vitro results in significant changes in the phenotype and function of the spheroid-associated MO and MAC.

Antigens, Neoplasm↗

Differential screening identifies genetic markers of monocyte to macrophage maturation.

Maturation of cells of the mononuclear phagocyte lineage from bone marrow precursors to tissue macrophages (MAC) via circulating blood monocytes (MO) is a multistep process only partially understood. Similarly, MAC differentiation can be observed if MO are cultured in vitro. In an attempt to further characterize molecular changes occurring during this process we carried out differential screening of a MO-derived MAC cDNA library using MO and MAC cDNA. After subcloning and confirmation by a second round of screening, partial sequencing of 41 cDNA clones was performed. In 33 clones the sequences of 7 different previously identified cDNAs were found. The mRNA expression of two of the corresponding genes (apolipoprotein E, ferritin light chain) is already known to be up-regulated during MAC maturation. For one gene (cathepsin B), a specific up-regulation of mRNA expression could be shown corresponding to previous protein data. For four genes [human cartilage glycoprotein (HC-gp39), osteopontin, type IV collagenase, and tryptophanyl-tRNA synthetase] the specific expression in MAC versus MO was previously unknown but could be confirmed by the use of Northern blot analysis. Of these genes, HC-gp39 is especially interesting because it is only expressed during the late stages of MAC differentiation.

Adipokines↗

Molecular cloning of a novel macrophage maturation-associated transcript encoding a protein with several potential transmembrane domains.

Differentiation of tissue macrophages from bone marrow progenitor cells via circulating blood monocytes is a complex and multistep process. In order to analyze macrophage maturation on the molecular level we used the method of mRNA differential display to identify novel genes that are preferentially expressed in mature, in vitro differentiated macrophages. A PCR-fragment could be isolated that was amplified from macrophages, but not from freshly isolated monocytes, and macrophage-specific expression was confirmed by Northern blot analysis. Several corresponding cDNA clones could be isolated from a macrophage cDNA library, covering a nucleotide sequence of 2.5 kb. Nucleotide sequence of this cDNA showed no homology to known genes. The sequence reveals an open reading frame that codes for a 238 amino acid hydrophobic protein with seven potential transmembrane domains, suggesting a possible role as a receptor or an ion channel.

Amino Acid Sequence↗