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Biomedical subjects

J Chang

Publications and source records attributed to J Chang.

At least 235 records · Page 13Linked to original sources

The capacity of a combined liposomal hepatitis B and C vaccine to stimulate humoral and cellular responses in mice.

Combined hepatitis B surface antigen and hepatitis C antigen were encapsulated into 1, 2, and 5 microm discrete liposomes and then lyophilized. Groups of adolescent CD-1 mice were given a single 0.3 mL oral dose of these liposomes containing 50 microg/mL hepatitis B surface antigen and hepatitis C antigen, 50 microg/mL of the same antigens or liposomes alone. Animals in each group were sacrificed every 2 weeks for 10 weeks and the humoral response investigated by enzyme-linked immunosorbent assay (ELISA) and the cellular response by splenic lymphocyte proliferation to 10 microg of either antigen. Seroconversion to both antigens in the mice receiving liposomal antigens occurred in 87.5% of animals sacrificed at 4 weeks and later. One animal (12.5%) receiving antigen alone seroconverted to hepatitis B virus at 6 weeks, but all animals receiving liposomes alone remained negative. Proliferation indexes (PI) greater than 3 were observed in all animals receiving liposomal antigens, with the greatest response seen at 10 weeks. PI was less than 2 for all animals in the other two groups. Thus, a single oral dose of liposomes of three sizes containing both hepatitis B and C antigens given to mice resulted in rapid seroconversion and a progressive robust cellular immune response, whereas the antigens alone or liposomes without antigen did not.

Animals↗

Evaluation and interference study of hemoglobin A1c measured by turbidimetric inhibition immunoassay.

The technical performance of the turbidimetric immunoinhibition (TI) assay for hemoglobin (Hb) A1c (Tina-quant Hb A1c, Boehringer Mannheim, Indianapolis, Ind) was evaluated by using the BM/Hitachi 911 analyzer. Intra-assay imprecision was less than 2.7%, and interassay imprecision was less than 2.8% as measured by coefficient of variation. In 93 subjects with diabetes who did not have hemoglobin variants, results of the TI assay for Hb A1c correlated strongly with those obtained by using a high-performance liquid chromatography analyzer (Diamat, BioRad Laboratories, Hercules, Calif). Among 241 subjects who had or did not have hemoglobin variants, the TI assay for Hb A1c correlated strongly with results of affinity chromatography for total glycated hemoglobin (Glyc-Affin GHb, IsoLab, Akron, Ohio). We also studied the effect of various percentages of hemoglobin S, C, E, and F on the accuracy of the TI Hb A1c assay. Only high hemoglobin F percentages caused interference. More than 14 times as many samples can be analyzed per hour by using the TI Hb A1c assay than can be analyzed by using the HPLC assay. For high-volume reference laboratories, using the fully automated TI Hb A1c assay to monitor glycemic control in patients with diabetes may be preferable to using the conventional ion-exchange high-performance liquid chromatography Hb A1c assay because the TI assay measures Hb A1c more accurately in patients with diabetes who have hemoglobin variants, and it requires less time.

Autoanalysis↗

Studies in cranial suture biology: up-regulation of transforming growth factor-beta1 and basic fibroblast growth factor mRNA correlates with posterior frontal cranial suture fusion in the rat.

The mechanisms involved in normal cranial suture development and fusion as well as in the pathophysiology of craniosyostosis are not well understood. The purpose of this study was to investigate the expression of several cytokines--transforming growth factor-beta-1 (TGF-beta1), basic fibroblast growth factor (bFGF), and interleukin-6 (IL-6)--during cranial suture fusion. TGF-beta exists in three mammalian isoforms that are abundant in bone and stimulate calvarial bone formation when delivered locally. Other bone growth factors including basic fibroblast growth factor and the interleukins regulate bone growth and are mitogenic for bone marrow cells and osteoblasts. The involvement of growth factors in the pathophysiology of craniosynostosis is supported by recent genetics data linking fibroblast growth factor receptor mutations to syndromal craniosynostoses. In this experimental study, in situ hybridization was used to localize and quantify the gene expression of TGF-beta1, bFGF, and IL-6 during cranial suture fusion. In the Sprague-Dawley rat, the posterior frontal cranial suture normally undergoes fusion between 12 and 22 days of age, whereas all other cranial sutures remain patent. All in situ analyses of fusing posterior frontal sutures were compared with the patent, control, sagittal sutures. Posterior frontal and sagittal sutures, together with underlying dura, were harvested from rats at 8, 12, 16, and 35 days of postnatal life to analyze posterior frontal suture activity before, during, and after fusion. In situ hybridization was performed on frozen sections of these specimens using DNA probes specific for TGF-beta1, bFGF, and IL-6 mRNA. A negative control probe to IL-6 in the sense orientation was also used to validate the procedure. Cells expressing cytokine-specific mRNA were quantified (in cells positive per 10(-1) mm2) and analyzed using the unpaired Student's t test. Areas encompassing the fibrous suture and the surrounding bone plates were analyzed for cellular mRNA activity. IL-6 mRNA expression showed a minimal rise in the posterior frontal suture at days 12 and 16, with an average count of 10 and 6 cells per 10(-1) mm2, respectively. The sagittal suture remained negative for IL-6 mRNA at all time points. TGF-beta1 and bFGF analyses were most interesting, showing marked increases specifically in the posterior frontal suture during the time of active suture fusion. On postnatal day 8, a 1.5-fold increase in posterior frontal suture TGF-beta1 mRNA was found compared with sagittal sutures (p = 0.1890, unpaired Student's t test). This difference was increased 26-fold on day 12 in posterior frontal suture TGF-beta1 expression (p = 0.0005). By day 35, posterior frontal suture TGF-beta1 mRNA had nearly returned to prefusion levels, whereas TGF-beta1 mRNA levels in the sagittal suture remained low. A similar upregulation of bFGF mRNA, peaking at day 12, was observed in posterior frontal but not sagittal sutures (p = 0.0003). Furthermore, both TGF-beta1 and bFGF mRNA samples with intact dura showed an intense dural mRNA expression in the time preceding and during active posterior frontal suture fusion but not in sagittal tissues. Our data demonstrate that TGF-beta1 and bFGF mRNA are up-regulated in cranial suture fusion, possibly signaling in a paracrine fashion from dura to suture. TGF-beta1 and bFGF gene expression were dramatically increased both in and surrounding the actively fusing suture and followed the direction of fusion from endocranial to epicranial. These experimental data on bone growth factors support the recent human genetics data linking growth factor/fibroblast growth factor receptor deletions to syndromal craniosynostoses. The ultimate aim of these studies is to understand the underlying mechanisms regulating suture growth, development, and fusion so surgeons may one day manipulate the biology of premature cranial suture fusion.

Animals↗

Effect of ventricular shock strength on cardiac hemodynamics.

INTRODUCTION: The effect of implantable defibrillator shocks on cardiac hemodynamics is poorly understood. The purpose of this study was to test the hypothesis that ventricular defibrillator shocks adversely effect cardiac hemodynamics. METHODS AND RESULTS: The cardiac index was determined by calculating the mitral valve inflow with transesophogeal Doppler during nonthoracotomy defibrillator implantation in 17 patients. The cardiac index was determined before, and immediately, 1 minute, 2 minutes, and 4 minutes after shocks were delivered during defibrillation energy requirement testing with 27- to 34-, 15-, 10-, 5-, 3-, or 1-J shocks. The cardiac index was also measured at the same time points after 27- to 34-, and 1-J shocks delivered during the baseline rhythm. The cardiac index decreased from 2.30 +/- 0.40 L/min per m2 before a 27- to 34-J shock during defibrillation energy requirement testing to 2.14 +/- 0.45 L/min per m2 immediately afterwards (P = 0.001). This effect persisted for > 4 minutes. An adverse hemodynamic effect of similar magnitude occurred after 15 J (P = 0.003) and 10-J shocks (P = 0.01), but dissipated after 4 minutes and within 2 minutes, respectively. There was a significant correlation between shock strength and the percent change in cardiac index (r = 0.3, P = 0.03). The cardiac index decreased 14% after a 27- to 34-J shock during the baseline rhythm (P < 0.0001). This effect persisted for < 4 minutes. A 1-J shock during the baseline rhythm did not effect the cardiac index. CONCLUSION: Defibrillator shocks > 9 J delivered during the baseline rhythm or during defibrillation energy requirement testing result in a 10% to 15% reduction in cardiac index, whereas smaller energy shocks do not affect cardiac hemodynamics. The duration and extent of the adverse effect are proportional to the shock strength. Shock strength, and not ventricular fibrillation, appears to be most responsible for this effect. Therefore, the detrimental hemodynamic effects of high-energy shocks may be avoided when low-energy defibrillation is used.

Adult↗

Hepatitis C virus core from two different genotypes has an oncogenic potential but is not sufficient for transforming primary rat embryo fibroblasts in cooperation with the H-ras oncogene.

Persistent infection with hepatitis C virus (HCV) is associated with the development of liver cirrhosis and hepatocellular carcinoma. To examine the oncogenic potential of the HCV core gene product, primary rat embryo fibroblasts (REFs) were transfected with the core gene in the presence or absence of the H-ras oncogene. In contrast to a previous report (R. B. Ray, L. M. Lagging, K. Meyer, and R. Ray, J. Virol. 70:4438-4443, 1996), HCV core proteins from two different genotypes (type 1a and type 1b) were not found to transform REFs to tumorigenic phenotype in cooperation with the H-ras oncogene, although the core protein was successfully expressed 20 days after transfection. In addition, REFs transfected with E1A- but not core-expressing plasmid showed the phenotype of immortalized cells when selected with G418. The biological activity was confirmed by observing the transcription activation from two viral promoters, Rous sarcoma virus long terminal repeat and simian virus 40 promoter, which are known to be activated by the core protein from HCV-1 isolate. In contrast to the result with primary cells, the Rat-1 cell line, stably expressing HCV core protein, exhibited focus formation, anchorage-independent growth, and tumor formation in nude mice. HCV core protein was able to induce the transformation of Rat-1 cells with various efficiencies depending on the expression level of the core protein. These results indicate that HCV core protein has an oncogenic potential to transform the Rat-1 cell line but is not sufficient to either immortalize primary REFs by itself or transform primary cells in conjunction with the H-ras oncogene.

Animals↗

Increased expression of glomerular AT1 receptors in rats with myocardial infarction.

Rats with congestive heart failure demonstrate striking intrarenal vasoconstriction that contributes to reduced renal excretory function. We previously demonstrated that inhibition of angiotensin action reverses intrarenal vasoconstriction in rats 4-6 wk after coronary artery ligation. In the present study we tested the hypothesis that abnormalities in the expression and regulation of glomerular angiotensin receptors contribute to the intrarenal vasoconstriction. Because glomerular angiotensin type 1 (AT1) receptors normally downregulate in response to high local ANG II concentrations, we anticipated that glomerular AT1-receptor expression would be reduced in rats after myocardial infarction (MI). To our surprise, the density of glomerular AT1 receptors was nearly double (97% increase, P < 0.002) that of controls, indicating an acquired abnormality in angiotensin receptor regulation. This was specific for renal glomeruli, because the density of angiotensin receptors on renal vasculature was decreased in rats after MI compared with normal controls. Glomerular AT1-receptor expression was downregulated by an acute pharmacological infusion of ANG II and upregulated by acute angiotensin-converting enzyme inhibition to a similar extent in MI and control rats. Renal cortical mRNA expression showed an increase in the renin mRNA-to-actin ratio and angiotensinogen-to-actin ratio, indicating stimulation of the intrarenal angiotensin system in rats after MI. The data indicate a specific dysregulation of AT1 receptors in glomeruli but not blood vessels after MI.

Actins↗

Randomized comparison of progenitor-cell mobilization using chemotherapy, stem-cell factor, and filgrastim or chemotherapy plus filgrastim alone in patients with ovarian cancer.

PURPOSE: This was the first randomized study to investigate the efficacy of peripheral-blood progenitor cell (PBPC) mobilization using stem-cell factor (SCF) in combination with filgrastim (G-CSF) following chemotherapy compared with filgrastim alone following chemotherapy. PATIENTS AND METHODS: Forty-eight patients with ovarian cancer were treated with cyclophosphamide and randomized to receive filgrastim 5 microg/kg alone or filgrastim 5 microg/kg plus SCF. The dose of SCF was cohort-dependent (5, 10, 15, and 20 microg/kg), with 12 patients in each cohort, nine of whom received SCF plus filgrastim and the remaining three patients who received filgrastim alone. On recovery from the WBC nadir, patients underwent a single apheresis. RESULTS: SCF in combination with filgrastim following chemotherapy enhanced the mobilization of progenitor cells compared with that produced by filgrastim alone following chemotherapy. This enhancement was dose-dependent for colony-forming unit-granulocyte-macrophage (CFU-GM), burst-forming unit-erythrocyte (BFU-E), and CD34+ cells in both the peripheral blood and apheresis product. In the apheresis product, threefold to fivefold increases in median CD34+ and progenitor cell yields were obtained in patients treated with SCF 20 microg/kg plus filgrastim compared with yields obtained in patients treated with filgrastim alone. Peripheral blood values of CFU-GM, BFU-E, and CD34+ cells per milliliter remained above defined threshold levels longer with higher doses of SCF. The higher doses of SCF offer a greater window of opportunity in which to perform the apheresis to achieve high yields. CONCLUSION: SCF (15 or 20 microg/kg) in combination with filgrastim following chemotherapy is an effective way of increasing progenitor cell yields compared with filgrastim alone following chemotherapy.

Adult↗

[Studies on multiple infection with hepatitis B, C and G viruses].

OBJECTIVE: To study if there exists superinfection and multiple infection in the patients with hepatitis G virus (HCV) infection. METHODS: Reverse transcription polymerase chain reaction (RT-PCR) technique in non-structural gene 3 (NS3) region of HGV was used to detect HGV RNA in serially diluted quality control sera and HGV-C reference panel of samples provided by Abbott Co. Ltd, in 90 cases with positive hepatitis C virus (HCV) RNA, and 12 blood donors with super-infection of hepatitis B virus (HBV) and hepatitis C virus (HCV). RESULTS: Serially diluted quality control sera showed positive for HGV RNA at dilutions of 10(-1) to 10(-5), but negative at dilutions of 10(-6) to 10(-8). HGV RNA was positive in two samples of HGV-C serum provided by Abbott Co. HGV RNA was positive in eight of the 90 cases with positive HCV RNA and in four of the 12 cases with super-infection with HCV and HBV. CONCLUSION: There are not only super-infection of HBV and HCV, but also multiple infection.

Flaviviridae↗

Experimental model of renovascular hypertension.

OBJECTIVE: To establish a model of renovascular hypertension. METHODS: A 4/0 resorbable chromic catgut ligature was used to ligate subtotally the renal arteries of 18 dogs, forming experimental renovascular hypertension steadily. Blood pressure, plasma renin activity, the ultrastructural changes of juxtaglomerular apparatus and renal artery wall were studied after the constriction. RESULTS: It was reasonable that renal blood flow measured with an electromagnetic flowmeter was reduced by 30% after the constriction. The pathological changes of the induced renal artery stenosis were similar to those of fibromuscular dysphasia. CONCLUSION: The findings provide valuable evidence for the treatment of renovascular hypertension.

Animals↗

Immunohistochemistry and reverse transcription-polymerase chain reaction for detecting adrenomedullin in the central nervous system.

OBJECTIVE: To demonstrate the presence of adrenomedullin in the central nervous system. METHODS: Using immunohistochemical method (ABC) and reverse transcription-polymerase chain reaction (RT-PCR) analysis, the distribution of immunoreactive (IR-) AdM and AdM mRNA was observed in the rat and the human brain. RESULTS: Immunoreactive (IR-) AdM and AdM mRNA were detectable in almost every region of the rat brain examined, including cerebral cortex, paraventricular tissues, hypothalamus, mesencephalon, medulla oblongata and cerebellum. The levels of AdM mRNA in paraventricular tissues and medulla oblongata were higher than those in the other brain regions. AdM mRNA was also detectable in the human brain. CONCLUSION: The present study shows that AdM is present in the central nervous system, suggesting that AdM might act as a neurotransmitter, neuromodulator or neurohormone in rats or humans.

Adrenomedullin↗

[A study of cytokines in pathogenesis of thyroid-related immune orbitopathy].

OBJECTIVE: To explore the pathogenesis of thyroid-related immune orbitopathy (TRIO). METHODS: Human orbital fibroblasts were cultured in vitro and immunohistochemical techniques were used to study cytokines that induce effect on HLA-II antigen expression of orbital fibroblasts. RESULTS: It is shown that interferon-gamma (IFN-gamma), interleukin-1 (IL-1) and tumor necrosis factor (TNF) could induce the expression of orbital fibroblast HLA-II antigens. The induced effect of IFN-gamma is of good linear correlations with time and concentration. CONCLUSION: HLA-II antigen expression can be induced by IFN-gamma, IL-1 and TNF. In the course of immune reaction and pathogenesis of TRIO, cytokines play important roles.

Cytokines↗

[Total synthesis of schizandrin, the main active ingredient isolated from the Chinese herbal medicine fructus schizandrae].

In this paper, schizandrin(9), the main active ingredient isolated from Schisandra chinensis, was synthesized from gallic acid by a new route. This route consists of only nine steps, including reductive-coupling reaction of compound(5) and dehydryoxylatic reaction of compound(6) to give compounds(7Z, 7E). By hydroboration, compound (8) was obtained from compound(7Z). With the presence of thallium trifluoroacetate (TTFA) and 2, 3-dichloro-5, 6-dicyano-1, 4-benzoquinone (DDQ) compound (9) is obtained from compound (8) by intramolecular nonphenolic oxidative coupling. These compounds were identified by elemental analysis, MS, UV, IR and NMR spectra.

Cyclooctanes↗

[The coinfection of hepatitis C virus with hepatitis G virus and its reaction to interferon treatment].

HGV RNA was detected in 60 cases of hepatitis C patients and its positive rate was 23.3%, also the HGV infection was more frequent in chronic hepatitis C patients than in acute hepatitis C, and was only detected in hepatitis C patients who experienced transfusion of blood or blood products. These results indicated that transfusion was the main transmission route for HGV infection. HGV infection could shorten the incubation period of post-transfusion hepatitis C, but it would not worsen the status of the disease. The coinfection of HCV and HGV did not interfere the effect of interferon treatment on hepatitis C patients either in normalization of ALT or the elimination of HCV.

Adult↗

Breast cancer incidence and mortality trends in Missouri.

Among women in Missouri as in the United States (U.S.), breast cancer is the leading site of new cancer cases and the second leading cause of cancer deaths. This study examined patterns of breast cancer incidence and mortality among Missouri women. Age-adjusted Missouri incidence (1985-1992) and mortality (1985-1994) data were compared with Surveillance, Epidemiology, and End Results (SEER) data (1985-1992) by race and diagnosis year. Missouri Cancer Registry (MCR) data indicate that there have been no significant changes in breast cancer incidence and mortality rates through the time periods. Incidence rates for Missouri females (White, African-American and All) are significantly lower than SEER rates for all age groups, with greater differences in all races among women over 65. Incidence rates for African-Americans are significantly lower than for whites. However, Missouri mortality rates for African-Americans fluctuate over the period, but are consistently higher than for whites. In addition, African-Americans over age 65 have higher mortality rates in Missouri than in the U.S.

Adult↗

Dimerization properties of human BAD. Identification of a BH-3 domain and analysis of its binding to mutant BCL-2 and BCL-XL proteins.

Bad, an inducer of programmed cell death, was recently isolated from a mouse cDNA library by its ability to bind to the anti-apoptotic protein BCL-2. Sequence analysis suggested that Bad was a member of the BCL-2 gene family that encodes both inducers and inhibitors of programmed cell death. To further analyze the role of BAD in the network of homo- and heterodimers formed by the BCL-2 family, we have cloned the human homologue of BAD and assessed its biological activity and its interactions with wild type and mutant BCL-2 family proteins. Our results indicate that the human BAD protein, like its mouse homologue, is able to induce apoptosis when transfected into mammalian cells. Furthermore, in yeast two-hybrid assays as well as quantitative in vitro interaction assays, human Bad interacted with BCL-2 and BCL-XL. Sequence alignments of human BAD revealed the presence of a BH-3 homology domain as seen in other BCL-2 family proteins. Peptides derived from this domain were able to completely inhibit the dimerization of BAD with BCL-XL. Thus, as previously shown for BAX, BAK, BCL-2, and BCL-XL, the BH3 domain of BAD is required for its dimerization with other BCL-2 family proteins. BAD was further analyzed for its ability to bind to various mutants of BCL-2 and BCL-XL that have lost the ability to bind BAX and BAK, some of which retain biological activity and some of which do not. Surprisingly, all of the mutated BCL-2 and BCL-XL proteins analyzed strongly interacted with human BAD. Our data thus indicate that mutations in BCL-2 and BCL-XL can differentially affect the heterodimeric binding of different death-promoting proteins and have implications concerning the relationship between heterodimerization and biological activity.

Amino Acid Sequence↗

The human beta globin locus introduced by YAC transfer exhibits a specific and reproducible pattern of developmental regulation in transgenic mice.

The human beta globin locus spans an 80-kb chromosomal region encompassing both the five expressed globin genes and the cis-acting elements that direct their stage-specific expression during ontogeny. Sequences proximal to the genes and in the locus control region, 60 kb upstream of the adult beta globin gene, are required for developmental regulation. Transgenic studies have shown that altering the structural organization of the locus disrupts the normal pattern of globin gene regulation. Procedures for introducing yeast artificial chromosomes (YACs) containing large genetic loci now make it possible to define the sequences required for stage-restricted gene expression in constructs that preserve the integrity of the beta globin locus. We demonstrate that independent YAC transgenic lines exhibit remarkably similar patterns of globin gene expression during development. The switch from gamma to beta globin predominant expression occurs between day 11.5 and 12.5 of gestation, with no more than twofold differences in human beta globin mRNA levels between lines. Human beta globin mRNA levels were twofold to fourfold lower than that of mouse betamaj, revealing potentially significant differences in the regulatory sequences of the two loci. These findings provide an important basis for studying regulatory elements within the beta globin locus.

Adult↗

Genomic structure, sequence, and mapping of human FGF8 with no evidence for its role in craniosynostosis/limb defect syndromes.

Fibroblast growth factor-8 (Fgf8) is a recently identified growth factor that stimulates the androgen-dependent growth of mouse mammary carcinoma cells. Evidence from mouse development also shows that Fgf8 may play an important role in growth and patterning of limbs, face, and the central nervous system. We describe here the human FGF8 genomic sequence and demonstrate conservation between the human and mouse sequences, including alternatively spliced exons in the mouse. Mapping of FGF8 by FISH using an FGF8-containing bacterial artificial chromosome and by genetic linkage using a SSCP variant identified in this study is also reported and refines the FGF8 map location to 10q24. Since FGF8 maps to the same chromosomal region as FGFR2, has indeed been shown to be a ligand for FGFR2, and has an expression pattern consistent with limb and craniofacial anomalies, we have screened two kindreds with Pfeiffer syndrome that were previously linked to markers from 10q24-25 and a large number of individuals with craniosynostosis and limb anomalies for mutations in the coding sequence of FGF8. While no such mutations were identified, a rare polymorphic variant, consisting of an 18-base-pair (six-amino-acid) duplication in exon 1c, is reported that apparently has no clinical effect. Our exclusionary data suggest that mutations in FGF8 would be, at best, an infrequent cause of such disorders.

Amino Acid Sequence↗

Adenovirus-mediated gene transfer of fibroblast growth factor-1: angiogenesis and tumorigenicity in nude mice.

Gene transfer of angiogenic growth factors with replication-deficient recombinant adenovirus (Ad) vectors may provide a new approach to the treatment of ischemic diseases. To determine if Ad-infected cells could stimulate angiogenesis in vivo and to assess the tumorigenicity of cells infected with these vectors, NIH3T3 fibroblasts infected with Ad vectors coding for human acidic fibroblast growth factor (aFGF-1) were used in angiogenic and tumorigenic assays. Infected cells induced a strong angiogenic response in vivo, while cells infected with control virus did not. Stable 3T3 transfectants expressing the FGF-1 gene were also highly angiogenic and exhibited growth in soft agar, while Ad-infected cells did not. Ad-infected cells grew transiently in nude mice, whereas 3T3 transfectants formed large tumors which grew exponentially. Extrapolation of cell dose-response curves showed that a minimum of 1.5 x 10(4) infected cells were required for transient tumor cell growth in vivo. Ad-infected cells cultured in vitro for 30 days lost their invasive phenotype and the ability for transient cell growth in nude mice. Thus, phenotypic changes induced by Ad-mediated gene transfer of FGF-1 are transient both in vitro and in vivo, suggesting that these Ad vectors do not have tumorigenic potential. Stimulation of angiogenesis by Ad-infected cells may be useful for the evaluation of anti-angiogenic and anti-tumor agents.

3T3 Cells↗