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Biomedical subjects

Seyedhossein Aharinejad

Publications and source records attributed to Seyedhossein Aharinejad.

At least 19 recordsLinked to original sources

Target validation using RNA interference in solid tumors.

Reverse genetics is one strategy that is currently used to establish a link between a target gene and a disease phenotype. In this process, the function of a gene is inhibited and the consequence of its loss on a desired biological function, such as tumor growth and metastasis, is monitored. RNA interference (RNAi) has been found to be the most effective method to specifically inhibit gene expression. Notably, interactions between cancer cells, stromal cells, and the extracellular matrix (ECM) are crucial to angiogenesis and tumorigenesis. Tumor cells and the surrounding stroma are the principle source of growth factors and cytokines, which induce remodeling of the ECM mediated by metalloproteases (MMPs) secreted by macrophages. The production of macrophages is regulated by colony-stimulating factor (CSF)-1, which is overexpressed in several tumors. When short-interfering RNAs (siRNAs) targeting either the CSF-1 or its receptors were delivered into colon and breast cancer xenografts in mice, tumor growth was inhibited. Associated with this suppression, we observed decreased tumor vascularity, reduced expression of angiogenic factors and MMPs, and decreased macrophage recruitment to the tumors. The suppression of CSF-1 by RNA interference is therefore a powerful tool to block gene function and influence tumor-stroma interactions in solid tumor development.

Animals↗

Arteriogenesis depends on circulating monocytes and macrophage accumulation and is severely depressed in op/op mice.

It has been suggested that monocytes/macrophages represent the pivotal cell type during early adaptive growth of pre-existent arterial anastomoses toward functional collateral arteries (arteriogenesis) upon arterial occlusion. This hypothesis was supported by previous studies providing evidence that elevation of the peripheral monocyte count, increased monocyte survival (e.g., granulocyte macrophage-colony stimulating factor), as well as enhanced attraction or adhesion (e.g., monocyte chemoattractant protein 1; intercellular adhesion molecule 1) of the latter cells correlates directly with the arteriogenic response to restore tissue perfusion. However, the experimental proof of the essential role of monocytes/macrophages remains to be given. We therefore hypothesized that arteriogenesis is reduced in a genuine, nonpharmocologically induced monocyte/macrophage-deficient model of femoral artery occlusion in osteopetrotic (op/op) mice. Total leukocyte count did not differ between op/op mice and control (B6C3Fe a/a-Csf1(+/+)) mice. op/op mice show a significant monocytopenia (0.67%+/-0.38% vs. 1.53%+/-0.32%), granulocytosis (33.66%+/-6.67% vs. 22.83+/-7.47%), and a concomitant, relative lymphopenia (65.67%+/-6.58% vs. 75.65%+/-7.31%). Microsphere-based perfusion measurement 7 days after femoral artery occlusion demonstrated a significantly reduced perfusion restoration upon femoral artery occlusion in op/op mice as compared with controls (28.19%+/-0.91% vs. 47.88%+/-2.49%). The application of a novel method of high resolution (microfocus X-ray system) angiography revealed a reduction of proliferation and diameter of collateral arteries. Quantitative immunohistology showed significantly lower numbers of macrophages in the surrounding tissue of proliferating arteries. This study provides additional evidence for the preeminent role of monocytes/macrophages during arteriogenesis in a genuine model of monocyte deficiency, i.e., without pharmacological intervention.

Animals↗

Colony-stimulating factor-1 antibody reverses chemoresistance in human MCF-7 breast cancer xenografts.

Overexpression of colony-stimulating factor-1 (CSF-1) and its receptor in breast cancer is correlated with poor prognosis. Based on the hypothesis that blockade of CSF-1 would be beneficial in breast cancer treatment, we developed a murinized, polyethylene glycol-linked antigen-binding fragment (Fab) against mouse (host) CSF-1 (anti-CSF-1 Fab). Mice bearing human, chemoresistant MCF-7 breast cancer xenografts were treated with combination chemotherapy (CMF: cyclophosphamide, methotrexate, 5-fluorouracil; cycled twice i.p.), anti-CSF-1 Fab (i.p., cycled every 3 days for 14 days), combined CMF and anti-CSF-1 Fab, or with Ringer's solution as a control. Anti-CSF-1 Fab alone suppressed tissue CSF-1 and retarded tumor growth by 40%. Importantly, in combination with CMF, anti-CSF-1 Fab reversed chemoresistance of MCF-7 xenografts, suppressing tumor development by 56%, down-regulating expression of the chemoresistance genes breast cancer-related protein, multidrug resistance gene 1, and glucosylceramide synthase, and prolonging survival significantly. Combined treatment also reduced angiogenesis and macrophage recruitment and down-regulated tumor matrix metalloproteinase-2 (MMP-2) and MMP-12 expression. These studies support the paradigm of CSF-1 blockade in the treatment of solid tumors and show that anti-CSF-1 antibodies are potential therapeutic agents for the treatment of mammary cancer.

Animals↗

Inflammation and postinfarct remodeling: overexpression of IkappaB prevents ventricular dilation via increasing TIMP levels.

OBJECTIVE: Nuclear factor-kappa B (NF-kappaB) orchestrates genes involved in inflammation and extracellular matrix (ECM) remodeling following myocardial infarction (MI). The objective of the present study was to investigate the effect of overexpression and mode of function of IkappaB, the natural inhibitor of NF-kappaB, on ECM remodeling in a rat model of MI. METHODS: MI was induced in male Sprague-Dawley rats by ligation of the left anterior descending coronary artery (LAD) and was followed by adenovirus-mediated intramyocardial transfection of IkappaB (n = 26) or LacZ reporter genes (n = 26). Sham-operated animals (n = 14) served as controls. RESULTS: In transthoracic echocardiography 49 days after MI, systolic and diastolic left ventricular dimensions were reduced while fractional shortening was preserved in the treatment group. Additionally, evaluation on the isolated heart showed an attenuated downward shift of pressure-volume relationships in the IkappaB group compared to LacZ. NF-kappaB p65 DNA binding activity was diminished both at 5 and 49 days post-MI in the treatment group. Five days post-MI in the treatment group, protein levels of tumor necrosis factor (TNF)-alpha and interleukin (IL)-1beta were significantly reduced by 72.6% and 73.2%, respectively, compared to LacZ (p<0.05). In parallel, matrix metalloproteinase (MMP)-2 and MMP-9 levels were reduced 5 days post-MI, with MMP-9 still being decreased 49 days post-MI (p<0.01). In contrast, tissue inhibitors of metalloproteinases (TIMP)-1, -2, and -3 were increased compared to LacZ (p<0.01 and p<0.05, respectively) 5 days post-MI. After 49 days, TIMP-2, -3, and -4 expressions were significantly elevated (p<0.05). CONCLUSION: Reducing NF-kappaB activity via IkappaB overexpression after MI positively influences ECM remodeling by reducing MMP-2 and -9 levels while increasing TIMP-1, -2, -3, and -4 levels. Therefore, IkappaB overexpression prevents ventricular dilation and consequently preserves cardiac function.

Animals↗

Venous sphincters in the choroidea of spontaneously hypertensive rats.

Ocular vasculopathy resulting from severe systemic hypertension affects retina, choroidea, and the optic nerve. While the pathologic changes of the arterial system, including luminal narrowing, are well documented, little is known about the ocular venous vessels in hypertension. Adult 18-week-old spontaneously hypertensive rats (SHRs) were untreated (control) or treated with lisinopril for 4 weeks; normotensive Wistar-Kyoto (WKY) rats were additional controls. The mean systemic blood pressure (MSP) was monitored chronically using telemetry. The ocular microvasculature was examined using scanning electron microscopy (SEM) of corrosion casts, histology of serial sections, and computer-based 3D reconstruction. The MSP in control SHRs (145 +/- 11.9 mmHg) was decreased to 68.1 +/- 4.9 mmHg (P < 0.001) following treatment, which was even below the baseline level of WKY (96.7 +/- 5.8) rats (P < 0.05). In addition to media thickening in arteries, the venous plexus of the choroidea in control SHRs revealed multiple tufts of smooth muscle cells (sphincters) that narrowed the lumen. Correlating to histology, SEM of casts and 3D reconstruction showed numerous constrictions and muscular tufts in veins of the choroidea, narrowing the vascular lumen up to 47%. Following antihypertensive treatment, the percentage of sphincter constriction was decreased to 6% (P < 0.001). The depth of venous sphincter contraction correlated significantly with MSP (r = 0.87). To our knowledge, these results indicate for the first time that venous sphincters occur in the choroidea of the SHRs, and that their muscularity correlates with MSP. Venous sphincters might be involved in the pathophysiology of hypertension-related ocular changes.

Animals↗

Reconstitution of blood supply of the denuded bronchial stump.

BACKGROUND: Our aim was to study the process of microcirculatory reconstitution in the bronchial stump after pneumonectomy. METHODS: Eighteen juvenile pigs (median weight 40.6 kg) were randomly assigned to three groups. In all animals left pneumonectomy was performed and the stapled bronchial stump (median length 3.8 cm) carefully denuded. Group I animals received coverage of the stump by intercostal flap. In group II, the stump was covered with TachoComb, an impermeable hemostatic fleece; and group III served as a control without any coverage of the stump. Animals were sacrificed at day 14 after surgery. Vascular density was evaluated in serial histologic sections at multiple levels stained with CD-31 antibody. One-way analysis of variance and the Wilcoxon test were used for data analysis. RESULTS: At autopsy, stumps of group III animals were totally covered by adjacent mediastinal structures. In group I, intercostal flaps were viable and completely healed to the bronchial stumps. There were no signs of infection or stump insufficiency in these groups. In all group II animals, empyema developed, and stumps were found necrotic at macroscopic and histologic evaluation. Statistical analysis revealed significantly lower vascular density of mature vessels in the area of the bronchial stump in group II compared with both other groups. CONCLUSIONS: Reconstitution of microcirculation of the denuded bronchial stump after pneumonectomy takes place in a centripetal way from adjacent viable tissue. Hence, the purpose of covering the bronchial stump is the improvement of blood supply rather than mechanical reinforcement.

Animals↗

Error estimation of geometrical data obtained by histomorphometry of oblique vessel sections: a computer model study.

The errors of radius and wall thickness of a single vessel due to oblique sectioning in histomorphometry are expressed as a function of the circular shape factor (CSF) of the section's lumen, assuming cylindrical geometry and the absence of tissue deformation. Using computer model trees generated by constrained constructive optimization, mean errors are estimated for an ensemble of vessel segments. A geometrical exclusion criterion for segments cut too obliquely is defined on the basis of a CSF-cutoff value. It is shown that CSF-values ranging from 0.95 to 0.9 are reasonable choices for a cutoff and lead to mean errors of the same order of magnitude (9.6% [9.3%] to 15.4% [14.8%] for the radius [wall thickness]) as errors due to histological tissue processing.

Animals↗

Broncho-alveolar lavage matrix metalloproteases as a sensitive measure of bronchiolitis obliterans.

Bronchiolitis obliterans (BO) is a survival-limiting factor in lung transplantation. There are no common BO markers in use. Since BO is associated with extracellular matrix remodeling, we asked whether matrix metalloproteases (MMPs) and their tissue inhibitors (TIMPs) could serve as BO markers. In 72 lung transplant patients (34 BO syndrome (BOS) 0, 15 BOS 0-p, and 23 BOS 1) serum and broncho-alveolar lavage (BAL) MMP and TIMP levels were examined by ELISA. The BAL cell counts were additionally analyzed. The serum MMP-2, MMP-8, MMP-9 and TIMP-2 levels were not different in all groups. In contrast, the BAL MMP-8, -9 and TIMP-1 levels were significantly elevated in BOS 0-p (p = 0.003; p = 0.007; p = 0.0003, respectively) and BOS 1 (p = 0.003; p = 0.001; p = 0.0004, respectively) as compared to BOS 0 patients. The BAL MMP-8, -9 and TIMP-1 levels were significant predictors of BOS 0-p (p = 0.01; p = 0.01; p = 0.01, respectively) and BOS-1 (p = 0.007; p = 0.01; p = 0.006, respectively) in receiver operating characteristic analysis. Except for BAL macrophages that were significantly decreased in BOS 0-p versus BOS 0 patients; other cell counts were not different between the groups. BAL MMP-8, -9 and TIMP-1 might be useful markers to detect BO in lung transplant patients.

Adult↗

Differential role of TGF-beta1/bFGF and ET-1 in graft fibrosis in heart failure patients.

Collagen overproduction characteristic for dilated cardiomyopathy (DCM) is coregulated by endothelin (ET)-1, transforming growth factor (TGF)-beta1, basic fibroblast growth factor (bFGF) and matrix metalloproteases (MMPs). Whether these molecules affect grafts transplanted to heart failure patients is unknown. In 67 idiopathic DCM patients, 31 patients with ischemic cardiomyopathy (ICM) and 16 controls, the myocardial bFGF, TGF-beta1, pro-collagen (PrCol) type 1 (PrCol1-alpha1, -alpha2) and MMP expressions were examined using real-time RT-PCR or Western blotting. mRNA expression was measured in grafts for 1 year. TGF-beta1/bFGF stimulation or gene silencing was used to examine their effect on collagen synthesis in cardiac tissue cultures. TGF-beta1 and PrCol1 were upregulated in DCM only, while bFGF was upregulated in both groups versus controls. TGF-beta1 downregulated MMP-1 and upregulated collagen 1, whereas bFGF upregulated MMP-13 in DCM tissue. Post-transplant PrCol1-alpha1, -alpha2 and ET-1 mRNA increased over time in grafts of DCM patients only, while other factors returned to control baseline levels in DCM and ICM. These data indicate that cardiac transplantation corrects the dysregulated TGF/bFGF/MMP-1/MMP-13, but not the excess collagen and ET-1 synthesis in cardiac grafts transplanted to DCM patients. ET-1 might be a major pathologic trigger for graft fibrosis in DCM.

Adult↗

Visualization of intraarticular structures of the acromioclavicular joint in an ex vivo model using a dedicated MRI protocol.

OBJECTIVE: The purpose of this study was to develop an MRI protocol that could visualize the intraarticular structures of the acromioclavicular (AC) joint. MATERIALS AND METHODS: Using six fresh specimens from cadaveric shoulders, several MRI sequences were performed on 1.0-T scanners with a superficial coil (the temporomandibular joint coil). After the radiologic examination, the specimens were prepared for histology and 300-microm-thick, toluidine blue-stained sections were prepared that corresponded to the MR images. In each series of sections, immunohistochemistry using a type II collagen antibody was performed to further characterize the intraarticular structures. RESULTS: The coronal 3D T1-weighted fast-field echo water-selective sequence allowed the identification of the intraarticular disk in all cases. Determination on MRI of other intraarticular structures--adipose tissue, synovial fluid, and the borders between neighboring tissues of different types--that corresponded to the histologic sections was possible. The use of a second plane in the 1.0-T sequences did not reveal additional information. CONCLUSION: The described MRI protocol allows the visualization of the intraarticular fibrocartilaginous disk and the border between articular cartilage and the disk. Future clinical studies will indicate the diagnostic value of this protocol. We assume that this MRI protocol could help us to better understand AC joint disorders, in particular those located intraarticularly, and dislocations.

Acromioclavicular Joint↗

Colony-stimulating factor-1 blockade by antisense oligonucleotides and small interfering RNAs suppresses growth of human mammary tumor xenografts in mice.

Colony-stimulating factor (CSF)-1 is the primary regulator of tissue macrophage production. CSF-1 expression is correlated with poor prognosis in breast cancer and is believed to enhance mammary tumor progression and metastasis through the recruitment and regulation of tumor-associated macrophages. Macrophages produce matrix metalloproteases (MMPs) and vascular endothelial growth factor, which are crucial for tumor invasion and angiogenesis. Given the important role of CSF-1, we hypothesized that blockade of CSF-1 or the CSF-1 receptor (the product of the c-fms proto-oncogene) would suppress macrophage infiltration and mammary tumor growth. Human MCF-7 mammary carcinoma cell xenografts in mice were treated with either mouse CSF-1 antisense oligonucleotide for 2 weeks or five intratumoral injections of either CSF-1 small interfering RNAs or c-fms small interfering RNAs. These treatments suppressed mammary tumor growth by 50%, 45%, and 40%, respectively, and selectively down-regulated target protein expression in tumor lysates. Host macrophage infiltration; host MMP-12, MMP-2, and vascular endothelial growth factor A expression; and endothelial cell proliferation within tumors of treated mice were decreased compared with tumors in control mice. In addition, mouse survival significantly increased after CSF-1 blockade. These studies demonstrate that CSF-1 and CSF-1 receptor are potential therapeutic targets for the treatment of mammary cancer.

Animals↗

Prediction of lung-transplant rejection by hepatocyte growth factor.

BACKGROUND: Graft rejection is a major complication of lung transplantation. No serological marker of rejection is in common use. Hepatocyte growth factor (HGF) is highly expressed in the lung and produced after acute lung injury; serum concentrations increase in inflammatory lung diseases. We investigated whether HGF could be an accurate marker for prediction of lung-graft rejection. METHODS: Serum concentrations of HGF were measured by ELISA in 109 patients who had undergone lung transplantation (65 for chronic obstructive pulmonary disease; 23 for cystic fibrosis; 21 for idiopathic lung fibrosis), comparing those who had no subsequent events and those with episodes of infection or rejection, as well as in 12 healthy controls. FINDINGS: The mean baseline serum HGF concentration was 645 ng/L (SD 259) in controls and 1358 ng/L (603) in the patients before transplantation. After transplantation the mean concentration in patients with no events was 1147 ng/L (510) compared with 1559 ng/L (323) in patients with infection (p=0.001 vs controls; change from pretransplant value not significant). Patients with rejection had significantly higher concentrations than all other groups (3972 ng/L [1463], p<0.0001). Logistic regression identified HGF as a predictor for lung graft rejection (p=0.012). After steroid treatment, HGF concentrations returned almost to the preoperative values within 3 days. INTERPRETATION: HGF might be a marker for graft rejection in lung transplantation. A potential link between viral infection, mainly cytomegalovirus, and HGF, however, remains to be investigated.

Acute Disease↗

Upregulated hypoxia-inducible factor-1 DNA binding activity to the vascular endothelial growth factor-A promoter mediates increased vascular permeability in donor lung grafts.

BACKGROUND: Transplantation-induced hypoxia results in enhanced vascular permeability and tissue vascular endothelial growth factor (VEGF) and endothelin-1 (ET-1) overexpression in donor lung grafts. Promoter studies have uncovered a hypoxia-inducible factor (HIF)-1 binding site (HBS) in 5'-flanking region of VEGF gene that regulates the hypoxia-induced expression of VEGF; and ET-1 potently stimulates VEGF-A production. We hypothesized that HIF-1 regulates VEGF-mediated vascular permeability in lung grafts. METHODS: We studied the mRNA and protein expression of HIF-1 and its protein-binding capacity to the HBS of the VEGF gene in biopsies of preserved donor and control lungs, using real-time reverse transcription-polymerase chain reaction, Western blotting, and electrophoretic mobility shift assay. Wet-to-dry lung weight ratio was measured in donor and control lungs. RESULTS: While HIF-1 alpha mRNA expression was unchanged, HIF-1 beta was downregulated (p < 0.05) in donor versus control lungs. Protein expression of both, HIF-1 alpha and -beta was significantly upregulated in donor lung grafts. HIF-1 binding to the HBS of the VEGF promoter as well as tissue fluid content were increased in donor lung biopsies versus controls (p < 0.05). CONCLUSIONS: These data indicate that upregulated HIF-1 DNA binding activity to the HBS of VEGF-A most likely contributes to elevated VEGF levels in preserved lung grafts. Unchanged HIF-1 alpha mRNA expression did not affect HIF-1 alpha protein levels. Endothelin-1 increases HIF-1 alpha accumulation and activates HIF-1 transcription complex in vitro. Therefore, ET-1-mediated increased HIF-1 alpha protein stability most likely leads to transcriptional activation of VEGF during lung graft preservation. Targeting HIF might be of benefit to counteract edema formation in preserved lung grafts.

Aryl Hydrocarbon Receptor Nuclear Translocator↗

Nose reconstruction by chondrocutaneous preauricular free flaps: anatomical basis and clinical results.

Full-thickness defects of the nose result in considerable and distressing disfigurements. Ideally, reconstruction of such defects must be achieved in as few stages as possible and secondary, disfigurement kept to a minimum. In this study, the authors aimed to learn whether nose reconstruction could benefit from chondrocutaneous free flaps taken from the auricular tragus. In 72 ears, the vascular blood supply of the tragus was studied following injection of colored latex. Color-coded Duplex sonography served as a noninvasive method for demonstrating the blood supply of the target area. The procedure of nose reconstruction using the free chondrocutaneous tragus flap and the cosmetic results of this procedure in six patients are presented. Except for 2.8 percent of the anatomical specimens, the superficial temporal artery gave rise to the tragus and its overlying skin. The diameter of these branches ranged from 0.65 to 0.82 mm. Using the tragus composite free flap, the anatomical shape of the nose could be reconstructed successfully, and 6 months after surgery, the color and texture of the flap were very similar to those of the remaining nose. Using deeper parts of the tragus cartilage resulted in minimal scars and maintenance of the tragus anatomical shape. Free tragus flaps could be an alternative approach for nose reconstruction.

Adult↗

Impaired VE-cadherin/beta-catenin expression mediates endothelial cell degeneration in dilated cardiomyopathy.

BACKGROUND: The cross-talk between vascular endothelial growth factor (VEGF)-A, angiopoietin (Ang), and VE-cadherin coregulates endothelial cell (EC) survival. Cardiac expression of VEGF-A but not its receptor KDR is blunted in dilated cardiomyopathy (DCM). Whether VE-cadherin/Ang function is affected in DCM is unknown. METHODS AND RESULTS: The myocardial expression of VE-cadherin/beta-catenin, Ang-1, Ang-2, and their receptor Tie-2 was examined in DCM, ischemic cardiomyopathy (ICM), and in control subjects through the use of real-time RT-PCR, Western blotting, and immunocytochemistry. EC degeneration was quantified by TEM. RNA interference against VE-cadherin and VEGF deprivation and stimulation were applied to cultured DCM myocardium and human microvascular ECs to examine the interplay between VEGF, VE-cadherin/beta-catenin, and Ang-2. Analysis of tissue sections with similar rates of EC degeneration in both patient groups showed that VE-cadherin/beta-catenin expression was downregulated in DCM only (P<0.05). Although Ang-1 was not changed, Ang-2 expression was downregulated and Tie-2 protein expression was upregulated both in DCM and ICM (P<0.05). The ratio of degenerated to normal ECs was significantly higher in DCM versus ICM (P<0.05). Targeted VE-cadherin gene silencing in cultured human ECs resulted in similar degenerative effects observed in myocardial ECs of DCM patients. In vitro experiments indicated that VE-cadherin/beta-catenin expression is independent of VEGF. CONCLUSIONS: These results indicate for the first time that the EC survival is impaired in myocardium of patients with DCM involving VE-cadherin/beta-catenin, probably independent of VEGF. Targeting VE-cadherin might be of benefit to counteract the selective EC pathology in DCM.

Adult↗

Low dose carboplatin combined with angiostatic agents prevents metastasis in human testicular germ cell tumor xenografts.

PURPOSE: Low dose chemotherapy combined with angiogenesis inhibitors has been shown to be more effective for experimental tumor treatment than chemotherapy alone. To our knowledge whether germ cell tumors could benefit from this treatment strategy remains to be evaluated. We examined the efficacy of angiostatic thrombospondin-1 (TSP-1), endostatin and combined angiostatic/low dose carboplatin in mice xenografted with human nonseminomatous germ cell tumor. MATERIALS AND METHODS: We monitored tumor progression and angiogenesis in the established model of human nonseminomatous germ cell tumor xenograft in 120 SCID mice using intravital video microscopy, immunocytochemistry and real-time polymerase chain reaction. Mice received TSP-1 (20 mg/kg daily) or endostatin (10 mg/kg daily) subcutaneously (via osmotic mini pumps) for 2 weeks starting 15 days after cancer cell grafting, carboplatin cycled twice (30 mg/kg intraperitoneally days 14 and 21 after cancer cell grafting), or a combination of carboplatin with TSP-1 or endostatin. Untreated, sham and tumor bearing mice treated with Ringer's solution served as controls. RESULTS: Primary tumor development was not affected in mice treated with TSP-1, endostatin or carboplatin alone. All animals had metastases at 6 months, while metastasis did not develop following the combination of carboplatin with TSP-1 or endostatin. This combined therapy suppressed tumor angiogenesis, enhanced apoptosis in tumor cells and decreased vascular endothelial growth factor-A tissue mRNA expression vs controls (p <0.05). CONCLUSIONS: These data indicate that angiostatic agents added to low dose carboplatin have the ability to suppress the progression of human germ cell tumor xenografts toward a metastatic phenotype. Therefore, this treatment strategy might be beneficial to prevent metastasis in germ cell tumors.

Angiogenesis Inhibitors↗

Colony-stimulating factor-1 antisense treatment suppresses growth of human tumor xenografts in mice.

Matrix metalloproteinases (MMPs) foster cellular invasion by disrupting extracellular matrix barriers and thereby facilitate tumor development. MMPs are synthesized by both cancer cells and adjacent stromal cells, primarily macrophages. The production of macrophages is regulated by colony-stimulating factor-1 (CSF-1). Tissue CSF-1 expression increased significantly in embryonic and colon cancer xenografts. We, therefore, hypothesized that blocking CSF-1 may suppress tumor growth by decelerating macrophage-mediated extracellular matrix breakdown. Cells expressing CSF-1 and mice xenografted with CSF-1 receptor (c-fms)- and CSF-1-negative malignant human embryonic or colon cancer cells were treated with mouse CSF-1 antisense oligonucleotides. Two weeks of CSF-1 antisense treatment selectively down-regulated CSF-1 mRNA and protein tissue expression in tumor lysates. CSF-1 blockade suppressed the growth of embryonic tumors to dormant levels and the growth of the colon carcinoma by 50%. In addition, tumor vascularity and the expression of MMP-2 and angiogenic factors were reduced. Six-month survival was observed in colon carcinoma mice only after CSF-1 blockade, whereas controls were all dead at day 65. These results suggest that human embryonic and colon cancer cells up-regulate host CSF-1 and MMP-2 expression. Because the cancer cells used were CSF-1 negative, CSF-1 antisense targeted tumor stromal cell CSF-1 production. CSF-1 blockade could be a novel strategy in treatment of solid tumors.

Animals↗

VEGF-A and -C but not -B mediate increased vascular permeability in preserved lung grafts.

BACKGROUND: Vascular endothelial growth factor (VEGF) is a potent endothelial cell growth and permeability factor, expressed in the lung. Overexpression of VEGF is associated with increased vascular permeability in the early stage of acute lung injury in mice. The role of various forms of VEGF in transplantation-induced lung injury is not well understood. METHODS: VEGF mRNA and protein expression was measured in biopsies of preserved donor lung grafts as well as in control lung biopsies, using real-time reverse transcriptase-polymerase chain reaction and Western blot analysis. VEGF tissue expression was also evaluated by immunocytochemistry. Serum VEGF was measured in recipients after transplantation and in controls using ELISA. RESULTS: Although VEGF-A and VEGF-C protein expression was up-regulated, their mRNA levels were decreased in donor versus control lung biopsies (P<0.05). VEGF-B mRNA was decreased, but its protein level was unchanged in donors. Flt-1 was unchanged, KDR gene expression was down-regulated in donors (P<0.05), and both receptors' protein expression was under the detection level in donor and control lungs. VEGF-A was detected in pulmonary vessels and bronchi, whereas VEGF-C was only detectable in vessels of both donor and control lungs. After transplantation, serum VEGF increased (P<0.05) and returned to control baseline levels 12 weeks after surgery. Wet-to-dry lung weight was increased in donor versus control lungs. CONCLUSIONS: These results indicate that unventilated hypoxia increases vascular permeability in lung grafts and that this process is mainly regulated at VEGF-A and VEGF-C translational but not transcriptional level. Selective VEGF antagonism during graft preservation might be of benefit to counteract edema formation.

Capillary Permeability↗