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K W Sell

Publications and source records attributed to K W Sell.

At least 19 recordsLinked to original sources

Protein transfer of glycosyl-phosphatidylinositol-B7-1 into tumor cell membranes: a novel approach to tumor immunotherapy.

Modification of tumor cells with one or more costimulatory adhesion molecules has been proposed as a means to develop therapeutic cancer vaccines for use in human immunotherapy. Expression of B7-1 (CD80) in tumors by gene transfer creates an immunogenic tumor cell that induces antitumor immunity and protects mice from further challenge with wild-type tumor cells. In this report, we demonstrate that protein transfer of glycosyl-phosphatidylinositol (GPI)-anchored costimulatory molecules into tumor cell membranes could be used as an alternative to gene transfer for tumor immunotherapy. Incubation of isolated tumor membranes with purified GPI-anchored B7-1 results in stable incorporation of B7-1 on tumor cell membranes within a few hours. Immunization of C57BL/6 mice with EG7 tumor membranes modified to express GPI-B7-1 by protein transfer induces tumor-specific T-cell proliferation and CTLs. In addition, immunization with these EG7 membranes protects mice from parental tumor challenge. The protein transfer approach used here does not require foreign vectors or live tumor cells and is completed within a matter of hours. Irradiated cells or membrane preparations from fresh or frozen tumor tissue can be used. Therefore, protein transfer of glycolipid-anchored molecules provides an efficient and novel approach to modify tumor membranes for human immunotherapy. This approach is not limited to costimulatory molecules because any cell surface protein can be converted to a GPI-anchored form by recombinant techniques.

Animals↗

Detection of a soluble form of B7-1 (CD80) in synovial fluid from patients with arthritis using monoclonal antibodies against distinct epitopes of human B7-1.

The costimulatory molecule B7-1 (CD80) has been shown to be an important component for T cell immune responses. We have generated several monoclonal antibodies (PSRM-1, -2, -3, -6, and -7) against B7-1 using a human glycosylphosphatidylinositol-anchored B7-1 (GPI-B7-1) as an antigen. These monoclonal antibodies are able to detect B7-1 by flow cytometry, ELISA, and Western blotting. One antibody in particular, PSRM-3, blocks the CD28/CTLA-4 interaction with B7-1 and consequently blocks costimulation of T cells. The other PSRM monoclonal antibodies did not compete with PSRM-3 for recognition of B7-1 and also failed to block B7-1 interaction with CTLA-4 and CD28, indicating that these antibodies bind to different epitopes. PSRM-3 and -7 detect phosphatidylinositol-specific phospholipase C-released soluble GPI-B7-1 in a sandwich ELISA. We used this sandwich ELISA to assay for the presence of a soluble form of B7-1 in synovial fluids of arthritis patients. By sandwich ELISA, B7-1 was detected in the synovial fluid of 5/11 patients with rheumatoid arthritis, 5/5 patients with osteoarthritis, and 2/6 patients with other forms, including crystalline-induced arthritis. The presence of soluble B7-1 was confirmed by immunoprecipitation using PSRM-3-coupled Sepharose beads. The source and function of soluble B7-1 are unknown at present; it is possible, however, that the soluble form of B7-1 molecule may play a local immunoregulatory role which may suppress or induce inflammation depending upon whether it interacts with the T cell costimulatory CD28 molecule or the negative signaling CTLA-4 molecule.

Abatacept↗

A novel Tth111I restriction fragment length polymorphism (RFLP) allows tracing of X-chromosome inactivation in the (Xid) heterozygote.

The X-linked immunodeficiency (Xid) in CBA/N mice serves as a model for the X-linked agammaglobulinemia (XLA) syndrome in man. X-chromosome inactivation in F1 heterozygotes derived from CBA/N (Xxid/Xxid) and B6.Pgk-1a (X+/Y) was investigated by monitoring the methylation status of the individual Pgk-1 alleles, Pgk-1b and Pgk-1a, respectively, using a novel Tth111I RFLP. Results indicate that in circulating B lymphocytes of female heterozygotes, only the X chromosomes carrying the normal alleles (X+) are active (nonrandom inactivation of the X chromosome), whereas in non-B cells both the X chromosomes (X+ and Xxid) are active (random inactivation of the X chromosome). These results were further confirmed by direct evaluation of transcription of the Btk gene, the gene mutated both in Xid and in XLA.

Agammaglobulinaemia Tyrosine Kinase↗

Induction of autologous tumor-specific cytotoxic T-lymphocyte activity against a human renal carcinoma cell line by B7-1 (CD8O) costimulation.

Recently mouse models have shown that expression of costimulatory molecules such as B7-1 on tumor cells can induce tumor-specific immunity, suggesting that tumor cells modified to express costimulatory molecules can be a potential tumor vaccine. To investigate the importance of B7-1 co-stimulation in induction of autologous tumor immunity in humans, we established a renal carcinoma cell line, RCC-1, from a tumor resection and studied the patient's antitumor immune responses in vitro. The RCC-1 cell line constitutively expressed major histocompatibility complex (MHC) class I, intercellular adhesion molecule (ICAM)-1, and leukocyte function-associated antigen (LFA)-3 molecules, and MHC class II molecules were induced by interferon-gamma (IFN-gamma) treatment in vitro. However, neither RCC-1- nor IFN-gamma-treated RCC-1 cells expressed B7-1, and both failed to induce T-cell proliferative responses in mixed lymphocyte and tumor cell reaction (MLTR) assays, suggesting that the costimulatory signals provided by cell adhesion molecules such as ICAM-1 and LFA-3 were not sufficient to elicit an antitumor immune response. However, on transfection of the human B7-1 into RCC-1, these cells were able to induce a significant T-cell proliferation in MLTR assays. This T-cell response could be blocked by anti-B7 mAb treatment of the tumor cells. RCC-1B7 cells also induced the generation of tumor-specific cytolytic T lymphocytes to the parent RCC-1 cells in vitro, with little nonspecific cytolysis of an unrelated RCC line, A498, or autologous phytohemagglutinin (PHA) blasts. This specific cytotoxicity could be abrogated by anti-CD8 mAb and complement treatment. In summary, our study indicates that B7-1-CD28 interaction plays a critical role in induction of autologous tumor-specific cytotoxic T lymphocytes (CTLs) in humans, suggesting that the costimulatory molecule transfected tumor cells could be useful in expanding tumor-specific autologous CTL in vitro for adoptive tumor immunotherapy.

Antigens, Neoplasm↗

Phase III randomized trial of interleukin-2 with or without lymphokine-activated killer cells in the treatment of patients with advanced renal cell carcinoma.

BACKGROUND: Treatment with interleukin-2 (IL-2) and lymphokine-activated killer cells (LAK) resulted in responses in some patients with advanced renal cell carcinoma (RCC). However, the relative therapeutic benefit of the addition of LAK to IL-2 was unknown. METHODS: A randomized Phase III trial was conducted in patients with RCC comparing continuous intravenous infusion (CI) IL-2 alone with CI IL-2 plus LAK. Interleukin-2 was administered at 3 x 10(6) U/m2/day on days 1-5, 13-17, 21-24, and 28-31. Patients on the LAK treatment arm underwent leukapheresis on days 8-10 and LAK cell reinfusion on days 13-15. The results are reported with long-term follow-up. The published experience with IL-2 alone or with the addition of LAK was investigated in a quantitative literature survey. The response proportions were studied by schedule (high dose bolus, moderate dose, low dose) and by concomitant administration of LAK. RESULTS: Seventy-one patients were treated, 36 on the IL-2 arm and 35 on the IL-2 plus LAK arm. Four patients (6%) had major responses (two complete, two partial). The median survival of all patients was 13 months (95% confidence interval [CI], 9-18 months). There were no differences between treatment arms with regard to response (P = 0.61) and survival (P = 0.67). More patients on the LAK arm experienced pulmonary toxicity (P = 0.008). The overall weighted response proportion was 16% (95% CI, 8%-24%) for the 39 published series of 1291 patients treated with IL-2. The 95% confidence intervals for response proportion overlapped when compared by schedule and by administration of LAK. CONCLUSIONS: The dose and schedule of IL-2 used in this study resulted in a low level of antitumor activity and the addition of LAK did not improve the response rate against RCC. Given the infrequent, but reproducible, responses with IL-2 and interferon-based regimens, continued investigation of these agents is warranted as is the study of new cytokines. Alternative treatment strategies should be studied in RCC and new agents and treatment regimens that appear promising in Phase II studies must be studied in randomized trials.

Adult↗

Purification and optimization of functional reconstitution on the surface of leukemic cell lines of GPI-anchored Fc gamma receptor III.

Purified glycosyl phosphatidyl inositol (GPI)-anchored cell surface proteins can be reincorporated spontaneously into the cell membrane by incubating the cells with these proteins. This unique property provides a novel way of introducing cell surface receptors on live cell membranes without the use of gene transfection. Since any classical transmembrane cell surface protein can be converted to a GPI anchored protein by recombinant techniques, this method provides a means of studying ectodomain associated receptor functions on various cell types. Moreover, in some circumstances, it can be used to correct deficient cellular functions resulting from lack of cell surface protein expression. Using GPI-anchored Fc gamma receptor III (CD16B), a low affinity Fc gamma receptor, we have systematically studied the optimal conditions for reconstitution of a functional receptor on nucleated cells. CD16B is purified to homogeneity from neutrophil lysates by single step immunoaffinity chromatography. The purified CD16B is functionally active as evidenced by its ability to bind IgG opsonized erythrocytes. CD16B incorporation on nucleated cells is temperature dependent with an optimum of 37 degrees C. The level of expression of incorporated CD16B is also depend on the concentration of CD16B available and the duration of incubation. The incorporated CD16B retains its ability to bind ligand and also mediates endocytosis of the bound ligand. In summary, our results demonstrate that purified, functionally active GPI-anchored receptors can be expressed on desired cells in a controlled manner and retain some functional properties.

Animals↗

Construction, purification, and functional incorporation on tumor cells of glycolipid-anchored human B7-1 (CD80).

To generate a potent cell-mediated immune response, at least two signals are required by T cells. One is engagement of the T-cell receptor with peptide-bearing major histocompatibility complex molecules. The other signal can be delivered by various molecules on the antigen-presenting cell, such as B7-1 (CD80). Many tumor cells escape immune recognition by failing to express these costimulatory molecules. Transfection of the B7 gene into some murine tumor cells allows for immune recognition and subsequent rejection of the parental tumor. We have studied an alternative approach for the introduction of B7-1 onto the surface of tumor cells. This method involves purified glycosyl-phosphatidylinositol (GPI)-anchored proteins which can spontaneously incorporate their lipid tail into cell membranes. We have created and purified a GPI-anchored B7-1 molecule (called GPI-B7) which is able to bind its cognate ligand, CD28, and incorporate itself into tumor cell membranes after a short incubation. Tumor cells that have been reconstituted with GPI-B7 can provide the costimulatory signal needed to stimulate T cells. These findings suggest an approach for the introduction of new proteins onto cell membranes to create an effective tumor vaccine for potential use in human immunotherapy.

Animals↗

Frequency of hypoxanthine guanine phosphoribosyltransferase (HPRT-) T cells in the peripheral blood of cardiac transplant recipients. A noninvasive technique for the diagnosis of allograft rejection.

BACKGROUND: Histological evaluation of serial endomyocardial biopsies performed at fixed time intervals after cardiac transplantation is the universal method used for the detection of cardiac rejection and assessment of the adequacy of antirejection therapy. No noninvasive methodology thus far investigated has achieved a high enough sensitivity and predictive accuracy to be considered as a potential replacement for endomyocardial biopsy in the detection of rejection in adults. The present study exploited the finding that the rate of spontaneous mutation in the hypoxanthine guanine phosphoribosyltransferase (HPRT) gene is higher in proliferating human T cells than in resting cells. Thus, it was reasoned that in the posttransplantation setting, the frequency of HPRT- cells in peripheral blood may provide an indirect measure of alloactivated T lymphocytes. METHODS AND RESULTS: This study consisted of determining the clonal frequency of HPRT- mutant cells (FMC/10(6) peripheral blood mononuclear cells [PBMCs]) within a total of 293 peripheral blood samples representing various numbers of sequential samples from each of 27 transplant recipients. These sequential samples represented time periods when endomyocardial biopsy specimens showed either (1) no evidence of rejection (n = 5 patients), (2) a single initial episode after transplantation of early (< 1 year) or late (> 1 year) rejection (n = 12 patients), or (3) multiple rejection episodes (n = 10 patients). Statistical analyses were used to quantify the time profiles of FMC/10(6) PBMCs in serial samples among transplant recipients and to determine the association of these profiles with both the onset of first rejection episodes and, in appropriate patients, the recurrence of rejection episodes. Data showed that PBMCs from patients with no evidence of rejection uniformly gave low values of < 6 FMC/10(6) cells, a frequency similar to that seen in healthy nontransplanted volunteers. In contrast, 19 of the 22 PBMC samples that were obtained from patients whose corresponding biopsy sample was diagnosed with a histological rejection grade of > or = 3 gave values of > 6 FMC/10(6) cells, 11 of which gave values > 50/10(6) cells (range, 146 to 46,982 FMC/10(6) cells). A significant association between the onset of first rejection and an increased rate of FMC/10(6) values was noted (P = .0001). The ability of a rising trend in FMC/10(6) values to correctly identify the onset of rejection was 81.8% and to correctly identify no rejection, 100%. In addition, a significant association between recurrent rejection episodes and persistence of high FMC/10(6) values in the weeks after treated rejection episodes was noted (P = .0003). The ability of a persistently elevated trend in values of FMC/10(6) cells to correctly identify recurrent rejection was 90% and to correctly identify no rejection, 100%. CONCLUSIONS: Increasing frequencies of HPRT- mutant cells in peripheral blood correlated with the onset of first rejection, and persistently elevated HPRT- mutant cells in the weeks after a treated rejection episode correlated with recurrent rejection. This quantitative noninvasive assay may thus serve as a useful adjunct to endomyocardial biopsy for monitoring post-cardiac transplantation patients, and its use as a prospective diagnostic tool merits further study.

Adolescent↗

Expression of heat-stable antigen on tumor cells provides co-stimulation for tumor-specific T cell proliferation and cytotoxicity in mice.

Heat-stable antigen (HSA/J11d/possibly homologous to CD24), a cell adhesion molecule capable of providing a co-stimulatory signal for T cell proliferation, is expressed on B cells, activated T cells, monocytes, granulocytes, Langerhans cells and thymocytes. Recent studies have demonstrated that co-stimulatory signals provided by cell adhesion molecules such as B7-1 play an essential role in generation of an anti-tumor immune response. To examine whether the co-stimulatory signal provided by HSA can induce an anti-tumor immune response, we have transfected HSA cDNA into the murine melanoma cell line K1735M2, and examined the ability of this transfected cell line to induce tumor-specific T cell responses. The results demonstrate that spleen cells from mice immunized with HSA-transfected K1735M2 cells showed enhanced T cell proliferation in a mixed lymphocyte tumor reaction (MLTR) assay and also demonstrated a significant anti-tumor cytotoxicity to the parent tumor cell (K1735M2). This anti-tumor cytolytic activity could be abrogated by pretreatment of effector cells with anti-mouse CD8 monoclonal antibody and complement. Under similar conditions, spleen cells from C3H mice immunized with vector-transfected K1735M2 cells neither actively proliferate in an MLTR assay, nor did they exert significant cytolytic activity against the respective tumor cells. In summary, our study demonstrated that HSA can provide a co-stimulatory signal for the T cell immune response against tumor cells in a murine model.

Animals↗

Absence of CSF-1 in macrophage-deficient op/op mice has differential effects on macrophage colony stimulating activity (M-CSA) released by various organs and cells.

The absence of detectable levels of CSF-1 in op/op mice results in a marked deficiency of macrophage colony-stimulating activity (M-CSA) in both the unstimulated and postendotoxin sera of these animals. These deficiences are not secondary to the presence of an inhibitor of macrophage formation. In contrast, various organs, particularly the organs of endotoxin-treated op/op mice, released amounts of M-CSA comparable to those of normal mice. Similarly, mitogen-stimulated lymphoid cells from op/op mice released either similar or increased amounts of M-CSA compared to mitogen stimulated +/+ lymphoid cells. On the other hand, conditioned media from cultures of fibroblastoid cells obtained from primary and secondary cultures of op/op organs were nearly totally devoid of M-CSA. However, incubation of these op/op fibroblasts with endotoxin in vitro induced the easily and readily detectable levels of M-CSA. These data suggest that CSF-1 is most likely a major source of M-CSA in serum and postendotoxin serum, while its contribution to soluble M-CSA in other organs may be only partial. In addition, in specific circumstances, the induced release of other macrophage growth factors may partially compensate for CSF-1 deficiency. Furthermore, it appears that the generalized macrophage deficiency in op/op mice cannot be fully explained by the deficiency of soluble M-CSA (soluble CSF-1) and argues for an in vivo role of membrane-bound CSF-1. These data may be interpreted as supporting a model in which the regulation of CSF-1-dependent and CSF-1-independent macrophage production is carried out by partly unrelated mechanisms.

Animals↗

Evidence for simian immunodeficiency virus-specific IgM and IgG response in peripheral blood mononuclear cells of serum enzyme-linked immunosorbent assay-negative nonhuman primates.

In vitro polyclonal activation of peripheral blood mononuclear cells (PBMCs) from 70% of the simian immunodeficiency virus (SIV) serum enzyme-linked, immunosorbent assay (ELISA)-negative sooty mangabeys leads to synthesis and release of low but significant and reproducible levels of SIV-reactive antibodies, as determined by ELISA and Western blot analysis. The predominant isotype of SIV-reactive antibodies in the pokeweed mitogen (PWM) supernatant fluids from serum ELISA-negative mangabeys is IgM, whereas the predominant isotype of SIV-reactive antibodies in seropositive mangabeys is IgG. Depletion of CD8+ cells led to a marked increase in the levels of SIV-reactive antibodies detected in supernatant fluids from PWM-induced cultures from the serum ELISA-negative mangabeys. No evidence for such SIV-reactive antibodies has been found, to date, in similar unfractionated or CD8+ T-cell-depleted PWM-induced PBMC cultures from uninfected macaques. Supernatant fluids from PWM cultures of PBMCs from a select group of serum ELISA-negative mangabeys, when concentrated five times, were shown to give a Western blot profile against SIV, similar to the profile seen with plasma from seropositive infected macaques and mangabeys. Evidence is presented to show that these serum ELISA-negative mangabeys are most likely latently infected with SIV. This evidence, which was obtained in samples from such ELISA-negative mangabeys, includes the detection of reverse transcriptase activity and the presence of SIV p27 in supernatant fluids of phytohemagglutinin-stimulated PBMCs in vitro. In addition, the data show the presence of CD8+ T cells that regulate SIV-specific Ig synthesis and show the detection of gag sequences by the polymerase chain reaction. Thus, the PWM assay described herein may provide a valuable additional tool for detection of lentivirus infection before or in the absence of seroconversion.

Animals↗

Host T-cell primary allosensitization to MHC class-I- and class-II-expressing human cardiac myocytes requires the presence of a second signal.

Normal FHCMs, or transformed cell lines derived from FHCMs, such as W1, even after induction of MHC antigens by pretreatment with IFN-gamma, failed to induce proliferation of allogeneic human PBMCs in vitro. To test the hypothesis that antigen-specific T-cell activation and proliferation require not only the binding of the TCR with its ligand, the MHC molecule, but also a second signal that involves the interaction of T-cell surface molecules with their natural ligands on the stimulating cells, a mAb against CD28 was used. Cocultures of allogeneic PBMCs with IFN-gamma-pretreated irradiated FHCMs or the W1 cell line in microtiter plates containing immobilized anti-CD28 mAb induced marked stimulator cells MHC class-II-specific proliferative responses. The W1 cell line and FHCMs failed to express detectable levels of the BB1/B7 molecule (the natural ligand for CD28) as determined by flow microfluorometry or mRNA levels coding for BB1/B7 as determined by RT-PCR. These data suggest that one of the probably reasons for the failure of MHC-expressing cardiac myocytes to induce allogeneic activation is the absence of costimulatory signals.

Base Sequence↗

Inhibition of cellular activation of retroviral replication by CD8+ T cells derived from non-human primates.

To test the hypothesis that CD8+ T cells inhibit viral replication at the level of cellular activation, an Epstein-Barr virus (EBV)-transformed cell line (FEc1) from a simian immunodeficiency virus (SIV)-seropositive sooty mangabey monkey was transfected with a human CD4 gene and shown to be replication-competent for HIV-1, HIV-2 and SIV. Utilizing a dual-chamber culture system, it was found that inhibition of viral replication can be mediated by a soluble factor. The FEc1 cell line was transiently transfected with an LTR-driven CAT reporter gene. It was found that autologous CD8+ T cells markedly inhibited CAT activity. Furthermore, co-transfection of the FEc1 cell line with an LTR-driven tat plasmid and LTR-CAT was able to quantitatively mitigate the suppressive effect. Thus, this inhibition appears to be directed at cellular mechanisms of viral transcription. Control transfections with an LTR-driven CAT plasmid with a mutation at the NFkB binding site yielded no CAT activity, suggesting that most viral replication as measured by CAT activity is dependent, to a large extent, upon cellularly derived NFkB binding proteins.

Animals↗

CSF-1 deficiency in the op/op mouse has differential effects on macrophage populations and differentiation stages.

Osteopetrosis and the absence of colony-stimulating factor 1 (CSF-1) in op/op mice are associated with decreased cellularity of the bone marrow (to one tenth of the normal), a very significant reduction in the number of cells recovered from peritoneal, pleural, and alveolar lavages, moderate leukopenia, and a slight decrease in the number of cells per spleen and thymus. Furthermore, op/op mice possess deficiencies in the number of macrophages in various organs. These cells are apparently absent in the bone marrow, severely reduced (5%-15% of the normal number) in peritoneal and pleural cavities and in the lungs. In addition, a marked decrease in the frequency and total number of circulating monocytes is present (5% of the normal). The deficiency of macrophages is less severe in the liver, spleen, and thymus of op/op mice (approximately 30% of those seen in normal). There is a concomitant redistribution of macrophage progenitor cells (granulocyte-macrophage colony-forming units, CFU-GM) in op/op mice from the marrow to the spleen and liver, associated with an increased sensitivity to interleukin 3 (IL-3). Their total number is decreased at least threefold compared to control mice. Moreover, op/op mice have at least a fivefold reduction in the total number of day-11 spleen colony-forming units (CFU-S) associated with their redistribution to the spleen and liver. These data suggest that the macrophage system in op/op mice is reduced at all levels tested, that is, at the level of mature macrophages, the level of progenitors, and the level of stem cells, whereas the redistribution of progenitor and stem cells could be viewed as a secondary consequence of osteopetrosis. Furthermore, these data suggest that macrophage dependency in vivo on CSF-1 is limited and different in various organs. Particularly in the liver, spleen, and thymus, other growth factors may significantly compensate for CSF-1 deficiency. Based on the relative decrease in the number of CFU-GM in the op/op mice, it appears that the population size of these progenitors is less dependent on CSF-1 than the hematopoietic stem cell population size as evidenced by the day-11 CFU-S assay. The day-11 CFU-S population is severely reduced in op/op mice, suggesting a physiological involvement of CSF-1 in expanding its size. These data provide evidence that CSF-1, besides acting on the final and intermediate stages of macrophage maturation, may also play a role in early stages of hematopoiesis.

Animals↗

Establishment of a human fetal cardiac myocyte cell line.

Human cardiac myocytes undergo degeneration, cytolysis, and necrosis in a number of clinical disease conditions such as myocarditis, dilated cardiomyopathy, and during episodes of cardiac allograft rejection. The precise cellular, biochemical, and molecular mechanisms that lead to such abnormalities in myocytes have been difficult to investigate because at present it is not possible to obtain and maintain viable cell cultures of human adult cardiac myocytes in vitro. However, human fetal cardiac myocytes are relatively easy to maintain and culture in vitro, but their limited availability and growth, variability from one preparation to another, and varying degrees of contamination with endothelial and epithelial cell types have made it difficult to obtain reliable data on the effect of cardiotropic viruses and cardiotoxic drugs on such myocytes. These thoughts prompted us to attempt to derive a cell line of human cardiac origin. Highly enriched human fetal cardiac myocytes were transfected with the plasmids pSV2Neo and pRSVTAg and gave rise to a cell line (W1) which has been maintained in culture for 1 yr. Morphologic and phenotypic analyses of W1 cells by flow microfluorometry and immunoperoxidase techniques indicate that the W1 cell line shares many properties of human fetal cardiac myocytes, but appears not to react with specific antibodies known to react with markers unique to human endothelial, epithelial, skeletal muscle, and dendritic cells. These preliminary data suggest that the W1 cells may provide a unique source of an established cell line that shares many properties ascribed to human cardiac myocytes.

Blotting, Northern↗