PubMed Health⌕ Search

Biomedical subjects

A G Papavassiliou

Publications and source records attributed to A G Papavassiliou.

At least 19 recordsLinked to original sources

The MAPK-AP-1/-Runx2 signalling axes are implicated in chondrosarcoma pathobiology either independently or via up-regulation of VEGF.

AIMS: To investigate whether and how the JNK/ERK-AP-1/-Runx2 signalling pathways and vascular endothelial growth factor (VEGF) are engaged in the pathogenesis of cartilaginous tumours. Chondrosarcoma is the third most common primary skeletal malignancy. Nevertheless, the molecular events underlying its pathogenesis remain elusive. JNK/ERK MAPKs and their downstream effectors, c-Jun and c-Fos (AP-1), are involved in chondroblastic differention/proliferation. These proteins interact with the Runx2 transcription factor, which is also implicated in chondroblast biology. VEGF, a key angiogenic factor, is up-regulated in human chondrosarcomas. METHODS AND RESULTS: Normal cartilage and neoplastic cells from 45 chondrosarcomas and 21 enchondromas were investigated immunohistochemically. We evaluated the cellular levels of JNK2, p-JNK2 (phosphorylated/activated JNK2), its main substrate, c-Jun, pc-Jun (phosphorylated/activated c-Jun) and c-Fos. Moreover, the levels of p-ERK (phosphorylated/activated ERK), Runx2 and VEGF were assessed. Positive immunostaining for all proteins was observed in the majority of the examined chondrosarcomas and in a small fraction of enchondromas. The expression levels of all proteins were positively and significantly correlated with each other. These levels were substantially augmented in high-grade compared with low-grade chondrosarcomas and in low-grade tumours compared with benign enchondromas, implying a potential use as molecular markers for prediction of high-grade neoplasms. CONCLUSIONS: The JNK/ERK-AP-1/-Runx2 signal transduction 'network' is associated with chondroblastic malignant transformation and chondrosarcoma development, either separately or through coordinated induction of VEGF.

Adult↗

Novel biological agents for the treatment of hormone-refractory prostate cancer (HRPC).

Hormone-refractory prostate cancer (HRPC) is an inevitable evolution of prostate carcinogenesis, through which the normal dependence on hormones for growth and survival is bypassed. Although advances in terms of symptoms palliation and quality of life improvement have been addressed with current treatment options, innovative approaches are needed to improve survival rates. A thorough understanding of HRPC-associated molecular pathways and mechanisms of resistance are a prerequisite for novel potential therapeutic interventions. Preclinical and early clinical studies are ongoing to evaluate new therapies that target specific molecular entities. Agents under development include growth factor receptor inhibitors, small molecules targeting signal transduction pathways, apoptosis and cell-cycle regulators, angiogenesis and metastasis inhibitors, differentiation agents, telomerase inactivators, and epigenetic therapeutics. Incorporation of these agents into existing treatment regimens will guide us in the development of a multidisciplinary treatment strategy of HRPC. This article critically reviews published data on new biological agents that are being tested in HRPC clinical trials, highlights ongoing research and considers the future perspectives of this new class of agents.

Angiogenesis Inhibitors↗

Absence of association with cancer risk and low frequency of alterations at a p53 responsive PIG3 gene polymorphism in breast and lung carcinomas.

The mechanisms of p53-dependent apoptosis involve a set of genes that possess the ability to modulate oxidative stress. One of them PIG3, is induced by p53 through a microsatellite in its promoter region. This microsatellite was found to acquire its full structure and p53-functional dependence only in Hominoidea (apes and humans) and has been proposed to represent an evolutionary adaptation of tumor suppressor mechanisms. Microsatellite instability and genetic constitution, comprising the presence of the low repetition allele (10 TGYCC repeats), at this locus have been hypothesized to provide an increased risk for cancer development. Therefore, in the present analysis we examined this polymorphism in two common human cancers, lung and breast and compared it with corresponding control cases. Furthermore, for lung cancer we employed two different ethnic groups, Greek and British. Analysis of this locus in this types of tumors showed: (1) a very low frequency of microsatellite instability and loss of heterozygosity (1.4% and 4%, respectively) in the examined carcinomas, (2) the homozygous presence of the 10 repeats allele only in the control cases, and (3) a non-significant increase of the most frequent allele (15 repeats) in the cancer groups as compared to control ones. The last two observations were found in both Greek and British populations. Taken together, these data do not support the notion that this PIG3 polymorphism is associated with an increased risk for cancer susceptibility. Larger studies including other types of cancer should also be performed.

Base Sequence↗

Androgen receptor (AR) expression is an independent unfavorable prognostic factor in gastric cancer.

PURPOSE: To investigate the expression of sex steroid receptors in gastric cancer and to correlate their tumor expression profile with the clinicopathological parameters and overall survival of the patients. METHODS: Immunohistochemical methodology was employed in formalin-fixed paraffin-embedded sections from 86 patients with gastric carcinoma. Monoclonal antibodies against androgen (AR), estrogen (ER), and progesterone (PR) receptors were used. Survival rates were estimated by the Kaplan-Meier method and compared using the log-rank test. Multivariate analysis was performed by the Cox proportional hazards model. RESULTS: Fifteen (17.4%) cases of gastric adenocarcinomas were positive for AR, two (2.3%) were positive for PR and three (3.5%) were positive for ER. Significantly higher AR expression was found in tumors with metastases to lymph nodes (P = 0.03). Patients with AR-positive tumors (AR+) had worse prognosis than (AR-) patients (median survival 9 months vs 24 months, P = 0.03). Patients with AR- and heat shock protein 27 (HSP27)-positive tumors (AR+/HSP27+) had a median survival of 6 months, whereas (AR-/HSP27-) patients had a median survival of 42 months (P = 0.017). Multivariate analysis revealed that AR expression and UICC stage were independent factors of unfavorable prognosis (P = 0.037 and P = 0.0055, respectively). CONCLUSIONS: Identification of AR-positive gastric carcinomas in gastric biopsies may warrant a more aggressive therapeutic approach and anti-androgen or AR-targeted agents may represent a novel strategy in tackling this devastating malignancy.

Adult↗

Differential expression of retinoic acid receptor beta (RARbeta) and the AP-1 transcription factor in normal, premalignant and malignant human laryngeal tissues.

The anticancer effects of retinoids are mainly mediated by their nuclear receptors. Recent studies have demonstrated that retinoic acid receptor beta (RARbeta) plays a pivotal role from the early stages of laryngeal carcinogenesis; however, the exact mechanism of this detrimental effect has not yet been elucidated. One of the best-documented actions of retinoid receptors is the transrepression of activator protein-1 (AP-1) transcription factor activity, although this complex interplay has not been clarified. The present report is the first systematic morphological evaluation of the cross-talk of RARbeta and AP-1 transcription factor in a large series of human laryngeal tissues containing normal epithelium, premalignant lesions (hyperplasia and/or dysplasia) and squamous cell carcinoma. Immunohistochemical methodology was performed on formalin-fixed, paraffin-embedded sections by using a panel of monoclonal and polyclonal antibodies against RARbeta and the AP-1 components c-Jun, p-c-Jun (phosphorylated, active c-Jun) and c-Fos proteins. Their expression was screened and compared in 154 patients with various laryngeal histological entities. Nuclear expression of RARbeta, c-Jun, p-c-Jun and c-Fos was detected in 81 (89.2%), 48 (52.8%), 66 (72.6%) and 73 (80.3%), respectively, out of 91 specimens with normal-appearing laryngeal epithelium; in 86 (87.8%), 94 (95.9%), 94 (95.9%) and 94 (95.9%), respectively, out of 98 specimens with hyperplastic laryngeal epithelium; in 58 (56.8%), 92 (90.2%), 96 (94.1%) and 96 (94.1%), respectively, out of 102 specimens with dysplastic laryngeal epithelium; in 10 (22.3%), 41 (91.2%), 44 (97.8%) and 41 (91.2%), respectively, out of 45 specimens with well-differentiated squamous cell carcinoma; in 13 (30.3%), 37 (86%), 39 (90.7%) and 41 (95.3%), respectively, out of 43 specimens with moderately-differentiated squamous cell carcinoma; and in 8 (66.7%), 10 (83.3%), 12 (100%) and 12 (100%), respectively, out of 12 specimens with poorly-differentiated squamous cell laryngeal carcinoma. Statistical analysis and correlation of the intensity of nuclear immunostaining of the studied proteins among the various histological entities revealed statistically significant results. The progressive upregulation of the AP-1 transcription factor constituents and downregulation of the RARbeta protein detected from the onset of laryngeal tumorigenesis suggests an important role for the immediate-early AP-1/RARbeta on/off "switch" in the process of laryngeal carcinogenesis.

Adult↗

Mining microarray data to identify transcription factors expressed in naïve resting but not activated T lymphocytes.

Transcriptional repressors controlling the expression of cytokine genes have been implicated in a variety of physiological and pathological phenomena. An unknown repressor that binds to the distal NFAT element of the interleukin-2 (IL-2) gene promoter in naive T-helper lymphocytes has been implicated in autoimmune phenomena and has emerged as a potentially important factor controlling the latency of HIV-1. The aim of this paper was the identification of this repressor. We resorted to public microarray databases looking for DNA-binding proteins that are present in naïve resting T cells but are downregulated when the cells are activated. A Bayesian data mining statistical analysis uncovered 25 candidate factors. Of the 25, NFAT4 and the oncogene ets-2 bind to the common motif AAGGAG found in the HIV-1 LTR and IL-2 probes. Ets-2 binding site contains the three G's that have been shown to be important for binding of the unknown factor; hence, we considered it the likeliest candidate. Electrophoretic mobility shift assays confirmed cross-reactivity between the unknown repressor and anti-ets-2 antibodies, and cotransfection experiments demonstrated the direct involvement of Ets-2 in silencing the IL-2 promoter. Designing experiments for transcription factor analysis using microarrays and Bayesian statistical methodologies provides a novel way toward elucidation of gene control networks.

CD4-Positive T-Lymphocytes↗

Oestrogen receptor beta (ERbeta) is abundantly expressed in normal colonic mucosa, but declines in colon adenocarcinoma paralleling the tumour's dedifferentiation.

Oestrogen Receptor beta (ERbeta) may protect against prostate and mammary cell proliferation and malignant transformation. Epidemiological studies indicate that oestrogens may reduce colon cancer risk. Since ERalpha is minimally expressed in normal and malignant colon, the aim of this study was to investigate the expression of ERbeta in both normal colonic wall and colon cancer. ERbeta expression was evaluated by immunohistochemistry in 90 cases of colon adenocarcinoma and nearby (>30-cm away) normal colonic wall, using a monoclonal antibody. Moderate or strong nuclear immunostaining was detected in superficial and crypt epithelium, endothelial cells, vascular smooth muscle cells, lymphocytes, enteric neurons and smooth muscular cells of the normal colonic wall. Superficial epithelial cells in normal colon demonstrated a significantly higher ERbeta expression than colon adenocarcinoma cells in both genders. The decline in ERbeta expression paralleled the loss of differentiation of malignant colon cells, regardless of the tumour's localisation. These findings suggest a protective role for ERbeta against colon carcinogenesis.

Adenocarcinoma↗

Activation of the JNK-AP-1 signal transduction pathway is associated with pathogenesis and progression of human osteosarcomas.

Osteosarcomas represent the most common primary malignant bone tumors; however, comprehension of the molecular mechanisms underlying their pathogenesis is far from thorough. Studies in cultured cells have demonstrated that the c-Jun N-terminal kinase (JNK) signal transduction pathway participates in the proliferation, differentiation, and apoptosis of osteoblasts. Phosphorylated JNKs activate the oncoprotein c-Jun, which is known to form the activator protein-1 (AP-1) transcription factor as a homo- or heterodimer. c-Jun's principal dimerization partner is c-Fos, which participates in the differentiation and function of osteoblasts and in the pathogenesis of osteosarcomas. A similar role for the JNK cascade in the malignant transformation of human osteoblasts and in the generation of osteosarcomas has not been documented. Our study addressed the possibility that a functional upregulation of the JNK pathway is implicated in the pathogenesis of osteosarcomas. To this end, we employed immunohistochemistry to examine normal bone and osteosarcoma cells in paraffin-embedded sections from 56 patients with high-grade tumors and 15 patients with low-grade tumors. We assessed the protein levels of the two major JNK isoforms (JNK1 and JNK2); their phosphorylated-hence activated-species, p-JNK; their substrate, c- Jun; its phosphorylated (activated) form, pc-Jun; and c-Jun's heterodimeric partner, c-Fos. We also examined the immunohistochemical profile of the alpha chain of the nascent polypeptide-associated complex (alpha-NAC), an osteoblast-specific AP-1 coactivator that potentiates the transcriptional activity of the c-Jun/c-Jun homodimer. Positive immunostaining for JNK1, JNK2, p-JNK, c-Jun, pc-Jun, c-Fos, and alpha-NAC was observed in 86, 93, 94, 99, 97, 99, and 97.5% of the samples, respectively, whereas normal bone was devoid of these immunoreactivities. The cellular levels of all proteins were significantly correlated to each other (P < 0.001 for each correlation). Moreover, significantly higher expression levels of all proteins were detected in high-grade tumors compared to levels in low-grade ones. The observed expression profile of alpha-NAC implies that the active AP-1 in human osteosarcomas most likely comprises c-Jun/c-Jun homodimers. When cellular levels of the JNK pathway components and c-Fos were evaluated as possible biological markers of tumor grade, high expression of c-Jun and abundant pc-Jun predicted a high-grade tumor. Our findings provide novel evidence that the JNK signaling pathway is functionally operative in the malignant transformation of osteoblasts and the subsequent development and progression of human osteosarcomas. Evaluation of c-Jun expression and JNK-dependent activation may facilitate an improved prediction of the tumor's clinical behavior and potentially be exploited in designing patient-tailored treatment regimens.

Adolescent↗

Expression of the 27-kDa heat shock protein (HSP27) in gastric carcinomas and adjacent normal, metaplastic, and dysplastic gastric mucosa, and its prognostic significance.

PURPOSE: The investigation of heat shock protein 27 (HSP27) expression in gastric cancer and adjacent normal, metaplastic, and dysplastic gastric mucosa and its correlation with clinicopathological parameters and survival of patients. METHODS: Immunohistochemical methodology was performed on formalin-fixed paraffin-embedded sections by using a monoclonal anti-HSP27 antibody. HSP27 expression was screened and compared in 86 cases of gastric carcinoma and adjacent normal, metaplastic, and dysplastic gastric mucosa. RESULTS: In the normal mucosa, HSP27 was detected in 68 out of 86 cases (79%) and was more intense in the surface and upper two-thirds of gastric foveolae. In dysplastic gastric mucosa, HSP27 immunoreactivity was usually higher than that of the adjacent normal epithelium and was parallel to the severity of dysplasia. HSP27 expression was found in 54 out of 86 (62.7%) gastric carcinomas and was significantly related to more than six metastatic lymph nodes ( P =0.03). HSP27 expression was also higher in tumors of advanced stage and in those of female patients. HSP27 expression was associated with shorter overall survival in univariate analysis ( P =0.04), but this relationship was not retained in multivariate analysis. CONCLUSIONS: Our findings indicate that: i) HSP27 is commonly expressed in normal gastric epithelium where it seems to exert a protective role; and ii) HSP27 is involved in gastric carcinogenesis and its expression appears to be associated with parameters of unfavorable prognosis and shorter overall survival.

Adult↗

Induction of the CBP transcriptional co-activator early during laryngeal carcinogenesis.

PURPOSE: CREB-binding protein (CBP) is a transcriptional "integrator" that is suspected of contributing to tumorigenesis. This is the first systematic morphologic study evaluating CBP expression in a large series of human laryngeal tissues containing normal epithelium, premalignant lesions (hyperplasia and/or dysplasia), and squamous cell carcinoma. METHODS: Immunohistochemical methodology was performed on formalin-fixed paraffin-embedded sections by using a monoclonal anti-CBP antibody. CBP expression was screened and compared in 156 patients with various laryngeal histologic entities. RESULTS: Nuclear expression of CBP was found in 44 out of 91 (48.4%) specimens with normal-appearing epithelium (46.2% weak and only 2.2% moderate positivity), 92 out of 100 (92%) with hyperplastic lesions (56% weak, 36% moderate/strong, and only 8% no positivity), 80 out of 103 (77.7%) with dysplastic lesions (45.6% weak, 32.1% moderate/strong, and 22.3% no positivity), 37 out of 45 (82.2%) with well-differentiated carcinoma (42.2% weak, 40% moderate/strong, and 17.8% no positivity), 31 out of 43 (72.1%) with moderately differentiated carcinoma (32.6% weak, 39.5% moderate/strong, and 27.9% no positivity) and eight out of 12 (66.7%) with poorly differentiated carcinoma (41.7% weak, 25% moderate/strong, and 33.3% no positivity). Statistical analysis and correlation of the intensity of nuclear immunostaining among the various histologic entities revealed statistically significant results. CONCLUSIONS: Overexpression of CBP is detected from the very early stages of laryngeal carcinogenesis, suggesting that CBP may play a role in malignant transformation of precancerous laryngeal lesions. It is possible that overexpression of this protein is a prerequisite for the observed p53 upregulation in premalignant lesions, implying an indirect role of CBP in p53-mediated tumorigenic potential.

Adult↗

Molecular 'palpation' of BPH: a tale of MAPK signalling?

Benign prostatic hyperplasia (BPH) is a very common cause of hospitalization and surgery is currently the most effective therapy. MAP kinases (MAPKs) are a group of protein kinases with an important function in integrating physiological and pathological stimuli that might impact on cellular growth, differentiation and programmed cell death (apoptosis). Certain components of the MAPK signal-transduction pathways are involved in stimulus-specific fine-tuning of the activities mediated by the various MAPK families. As homeostasis is impaired in the hyperplastic prostate, aberrant coordination of the MAPK cascades might be implicated in a proliferative-apoptotic imbalance. Here, we hypothesize that the pathogenesis of BPH might be facilitated by functional anomalies in the MAPK circuitry and postulate that pharmacological 'rewiring' of MAPK pathways offers a potentially exciting new avenue for improved therapeutic control of clinical BPH.

Animals↗

Serine phosphorylation of insulin receptor substrate-1: a novel target for the reversal of insulin resistance.

Insulin resistance, the failure to respond to normal circulating concentrations of insulin, is a common state associated with obesity, aging, and a sedentary lifestyle. Compelling evidence implicates TNFalpha as the cause and link between obesity and insulin resistance. Serine phosphorylation of insulin receptor substrate-1 seems prominent among the mechanisms of TNFalpha-induced insulin resistance. Recent advances indicate that serine kinases may phosphorylate and thus inhibit the tyrosine phosphorylation of insulin receptor substrate-1, revealing an integration point of TNFalpha and insulin signaling pathways. Selective targeting of the molecular scenery whereby this key phosphorylation occurs/operates represents a rich area for the development of rationally designed new antidiabetic drugs. In relation to efficacy and side effects, this prospect should permit a more precise and perhaps individualized approach to therapeutic intervention, allowing clinicians to focus the attack where the problem lies.

Animals↗

Prostate cancer: horizons in the development of novel anti-cancer strategies.

Prostate cancer is the most common cause of non-cutaneous cancer in men and a leading lethal malignancy with increasing incidence worldwide. Inevitably, all patients will develop androgen-independent disease, which remains the main obstacle to improving survival. Unfortunately, existing first and second line hormonal treatment are condemned to extent survival for only a few years. These sobering data have forced researchers to start exploring in depth the molecular mechanisms implicated in the emergence of androgen independence and of prostate cancer invasion. In this vein, epoch-making discoveries in molecular oncology along with rapid expansion of our knowledge concerning the processes that govern differentiation, apoptosis, immune surveillance, angiogenesis, metastasis, cell cycle and signal transduction control, have unveiled a plethora of specific targets for prostate cancer gene therapy, immunotherapy and anti-invasion therapy, along with a variety of small-molecule compounds which inhibit or stimulate these pathways. These new anti-cancer approaches are in various stages of clinical development, providing exciting perspectives for the future of prostate cancer cure and enriching the current anti-cancer drug quiver with a new spectrum of therapeutic agents. The present review, through extensive literature cross-examination, discusses several novel anti-prostate cancer strategies, emphasizing on approaches that potentially may extend end-stage patient's survival.

Angiogenesis Inhibitors↗

Stretch-mediated activation of selective MAPK subtypes and potentiation of AP-1 binding in human osteoblastic cells.

BACKGROUND: It is widely accepted that mechanical loading is necessary to construct the architecture of bone and to maintain bone mass. However, the molecular mechanisms whereby bone cells respond to mechanical stimuli remain elusive. The mitogen-activated protein kinase (MAPK) signaling cascades are known to play a crucial role in the immediate osteoblast response to a variety of bone-active agents. An important component of this response occurs at the transcriptional level and is executed by downstream phosphorylation substrates, most notably, a number of signal-responsive transcription factors. To identify whether the MAPKs are involved in the mechanotransduction process and to determine the effect on down-stream transcription factors, we stimulated human periodontal ligament (hPDL) osteoblast-like cells by mechanical stretching by employing an established in vitro model of continuous stretch application. MATERIALS AND METHODS: Whole-cell extracts were prepared from cultivated hPDL cells that were exposed to short-term, continuous mechanical stretch. In-gel kinase assays were used to assess their kinase activity towards the immediate-early gene products c-Jun and c-Fos [constituents of the activator protein-1 (AP-1) transcription factor]. Electrophoretic mobility-shift and southwestern experiments utilizing a DNA sequence that contained a previously undefined atypical AP-1-binding site in the promoter of the human liver/bone/kidney alkaline phosphatase (L/B/K ALP) gene (an early marker for osteoblastic differentiation) were employed to evaluate their specific binding capacity. RESULTS: Selective members of the MAPK family were rapidly induced by stretching, as manifested by their ability to enhance phosphorylation of their cognate substrates c-Jun and, to a lesser extent, c-Fos in the in-gel kinase assay. This induction was accompanied by markedly increased, phospho-c-Jun-containing AP-1-binding activity, as determined by the binding analyses performed with the relevant sequence from the L/B/K ALP promoter. CONCLUSIONS: In as much as AP-1 is instrumental in regulating genes activated at the onset of osteoblast differentiation, such as the ALP gene, we pose that an interplay of distinct MAPKs targeting AP-1 components may dictate the osteogenic response of hPDL cells to mechanical stimulation.

Alkaline Phosphatase↗

Low levels of p27 in association with deregulated p53-pRb protein status enhance tumor proliferation and chromosomal instability in non-small cell lung carcinomas.

BACKGROUND: Down-regulation or overexpression of the cyclin-dependent kinase inhibitor p27 have been observed in a range of malignancies, including lung cancer. To further elucidate the role of the molecule in tumor growth regulation, we evaluated p27 expression in a series of non-small cell lung carcinomas (NSCLCs), and examined its relation with histology, kinetic parameters, ploidy, and overall survival. We extended our investigation into the association of p27 levels with the presence of Ki-ras mutations, as well as with the expression status of p53 and pRb in tumor cells. MATERIAL AND METHODS: p27, p53, and pRb status were immunohistochemically evaluated in a total of 69 NSCLCs. In situ assays were employed to assess the kinetic parameters (Ki-67 immunohistochemistry for proliferation index, Tdt-mediated dUTP nick end labeling assay for apoptotic index). The ploidy status of the tumors was assessed after staining nuclei with the Feulgen procedure, and the presence of Ki-ras mutations was examined by restriction fragment length polymorphisms. All possible associations were assessed with a series of statistical methods. RESULTS: Immunoreactivity for p27 was observed in the entire series of specimens, with the mean percentage of positive cells being 33%. Adenocarcinomas (AdCs) exhibited higher p27 levels compared to squamous cell carcinomas (SqCCs) (p < 0.01). An inverse correlation was established between p27 expression and proliferation index (PI) (r = -0.834, p < 0.01) but not with apoptotic index (AI), whereas aneuploid tumors were characterized by lower p27 levels than diploid ones (p < 0.01). No difference in p27 immunostaining was observed with regard to the presence of Ki-ras mutations, whereas aberrant p53 and/or pRb expression patterns were associated with p27 underexpression (p < 0.01 for p53 status, p < 0.05 regarding pRb levels, and p < 0.01 for a combined deregulation of both proteins). Two or more alterations in the p27/p53/pRb protein network (i.e., p27 levels lower than the estimated mean value, overexpressed p53, and/or aberrant pRb) were associated with increased PI and aneuploidy (p < 0.001 and p < 0.01, respectively). A powerful trend was found between p27 expression and overall survival (p = 0.066). CONCLUSIONS: Our findings confirm the heterogeneity between AdCs and SqCCs, and are suggestive of an increased proliferative activity in NSCLCs underexpressing p27. Furthermore, our analysis supports the concept of p27 forming a functionally compact network with p53 and pRb, which is actively involved in the regulation of cellular proliferation and chromosomal stability.

Carcinoma, Non-Small-Cell Lung↗