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Biomedical subjects

Kuo-Wei Chang

Publications and source records attributed to Kuo-Wei Chang.

At least 19 recordsLinked to original sources

MICA and MICB overexpression in oral squamous cell carcinoma.

BACKGROUND: The concentration of MICA in serum seems be a good candidate marker in cancer. Previous studies from our laboratory have shown that the polymorphic MIC gene may confer a risk for oral squamous cell carcinoma (OSCC). The study investigated the expression levels of MICA and MICB of OSCC patients and cancer cell lines. MATERIAL AND METHODS: We used RT-PCR to analyze the mRNA expression of MICA and MICB in four oral cancer cell lines compared with three normal human oral keratinocyte (NHOK) cell lines and in tissues from 36 patients with OSCC comparing tumor tissue with non-cancerous matched tissue (NCMT). RESULTS: Endogenous MICB mRNA expression in OSCC cell lines was significantly higher than that in NHOK (1.40 +/- 0.27 vs. 0.40 +/- 0.16; P = 0.04). In 20 of 36 sets of tissue from patients with OSCC, MICB mRNA expression was higher in the cancerous tissue than in the NCMT. The mean MICB mRNA expression in OSCC tissues was significantly higher than in NCMT (0.39 +/- 0.08 vs. 0.14 +/- 0.03, P = 0.009, paired t-test). A significantly lower MICA mRNA was found in patients who chewed areca nut compared with those who did not use areca (P = 0.001) and in patients with well-differentiated tumors compared with those with less well-differentiated tumors (P = 0.02). CONCLUSION: MICA and MICB mRNA expression may be increased in OSCC but there appears to be individual variation.

Adult↗

Areca nut extract treatment down-regulates involucrin in normal human oral keratinocyte through P13K/AKT activation.

Areca (betel) is an important etiological factor linked to the high prevalence of oral carcinoma and other oral diseases in South Asians. Involucrin is a key component of the cornified envelop and a differentiation marker of keratinocyte. In this study, we found that 5 microg/ml non-toxic areca nut extract (ANE) treatment resulted in the 0.5-fold down-regulation of involucrin and disruption in involucrin distribution in normal human oral keratinocyte (NHOK). Progressive down-regulation of involucrin during oral carcinogenesis was noted. Activation of AKT by 1.7-fold and up-regulation of COX-2 by 2-fold were elicited following ANE treatment in NHOK. Treatment with PI3K/AKT blockers reverted the down-regulation of involucrin. ANE also down-regulated involucrin by 0.6-fold and disturbed both cornified envelope and cell aggregation in calcium-induced differentiated NHOK. However, such phenomena seemed to be independent from the ANE-associated COX-2 activation. The ANE-associated down-regulation of involucrin through AKT pathway could underlie the areca-associated epithelial pathogenesis.

Adult↗

Ripe areca nut extract induces G1 phase arrests and senescence-associated phenotypes in normal human oral keratinocyte.

Around 200-600 million Asians chew areca (also called betel), which contains a mixture of areca nut and other ingredients. Epidemiological evidences indicated that areca use is tightly linked to oral carcinogenesis. This study investigated the effects of ripe areca nut extract (ANE) on cultured normal human oral keratinocyte (NHOK). Acute subtoxic ANE treatment inhibited DNA synthesis and induced cell cycle arrest at G1 phase in early passage (< 4th passage) cells. This was accompanied by a slight increase in the sub-G1 cellular fraction. O6-Methylguanine-DNA methyltransferase (MGMT), Hsp27 and p38MAPK was upregulated. p16 and p21 were remarkably upregulated early and declined afterwards. In contrast, the increase of dephosphorylated Rb seemed to be secondary to the episodes of p16 and p21 upregulation. To simulate the chronic areca exposure in vivo, constant ANE treatment in serial NHOK culture was performed. It resulted in a significant decrease in the population doubling, increase in senescence-associated beta-galactosidase (SA-beta-Gal) and decrease in cell proliferation in NHOK of late passages (> or = 4th passage). Induction of senescence-associated phenotypes, G2/M accumulation and genomic instability following long-term ANE treatment were also observed in a low-grade oral carcinoma cell. ANE-treated NHOK also had a higher nuclear factor-kappaB (NF-kappaB) fraction and a lower cytosolic IkappaBalpha level relative to the control in late passages. Moreover, electrophoretic mobility shift assay (EMSA) indicated that ANE treatment shifted the NF-kappaB complex from high mobility position to lower mobility position in late-passaged NHOK. ANE treatment also upregulated IL-6 and cyclooxygenase-2 (COX-2) mRNA expressions in late-passaged NHOK. In summary, our findings suggest that ANE induces the cell cycle arrest at G1/S phase and the occurrence of senescence-associated phenotypes of NHOK. The upregulation of p38MAPK, p16, p21, NF-kappaB, IL-6 and COX-2 are likely to participate in the control of these impacts.

Areca↗

The repressive effect of green tea ingredients on amyloid precursor protein (APP) expression in oral carcinoma cells in vitro and in vivo.

In a hamster model of N-methyl-N-benzylnitrosamine (MBN)-induced oral carcinogenesis, the incidence of buccal pouch (HBP) carcinomas in MBN-treated hamsters (17.8+/-7.5) was significantly higher than MBN-treated hamsters given tea (10.8+/-3.9) (P<0.05). Amyloid precursor protein (APP) expression was also significantly increased in MBN-induced HBP carcinomas but was significantly reduced by tea intake (P<0.0001). Furthermore, APP expression and secretion by OECM-1 oral squamous cell carcinoma cells was inhibited by a major polyphenolic ingredient of green tea, (-)-epigallocatechin gallate, in a dose-dependent manner. Thus, APP might promote oral carcinogenesis, whereas green tea ingredients might diminish it by down-regulating APP.

Amyloid beta-Protein Precursor↗

Functional polymorphism in NFKB1 promoter is related to the risks of oral squamous cell carcinoma occurring on older male areca (betel) chewers.

Areca (betel)-chewing is tightly associated with the high prevalence of oral squamous cell carcinoma (OSCC) in Asians. NFKB1 encodes a 105kDa protein that can be processed to produce p50 subunit of nuclear factor-kappaB protein complex. A insertion (ins)/deletion (del) polymorphism (-94ins/delATTG) in NFKB1 promoter, which may drive the ins allele two-fold increase in NFKB1 transcription relative to del allele, was recently found. This study identified that the odds ratio in OSCC carrying ins allelotype were 1.78 relative to controls (56.7 vs 41.8%) in subjects more than 50 years old. L allelotype of Heme oxygenase-1 (HO-1), accounting for a long (GT)(n) repeat in HO-1 promoter, is associated with the risks of areca-related OSCC. Subjects carried both NFKB1 ins and HO-1 L allelotypes had significant risks for various subsets of OSCC. OSCC with lymph node metastasis or advanced stage had significantly higher frequency of NFKB1 ins and HO-1 L allelotypes. This study suggested that the functional NFKB1promoter polymorphism could be valuable for assessment of cancer risk.

Adult↗

Array-comparative genomic hybridization to detect genomewide changes in microdissected primary and metastatic oral squamous cell carcinomas.

Oral squamous cell carcinoma (OSCC) is a common worldwide malignancy. However, it is unclear what, if any, genomic alterations occur as the disease progresses to invasive and metastatic OSCC. This study used genomewide array-CGH in microdissected specimens to map genetic alterations found in primary OSCC and neck lymph node metastases. We used array-based comparative genomic hybridization (array-CGH) to screen genomewide alterations in eight pairs of microdissected tissue samples from primary and metastatic OSCC. In addition, 25 primary and metastatic OSCC tissue pairs were examined with immunohistochemistry for protein expression of the most frequently altered genes. The highest frequencies of gains were detected in LMYC, REL, TERC, PIK3CA, MYB, MDR1, HRAS, GARP, CCND2, FES, HER2, SIS, and SRY. The highest frequencies of losses were detected in p44S10, TIF1, LPL, MTAP, BMI1, EGR2, and MAP2K5. Genomic alterations in TGFbeta2, cellular retinoid-binding protein 1 gene (CRBP1), PIK3CA, HTR1B, HRAS, ERBB3, and STK6 differed significantly between primary OSCC and their metastatic counterparts. Genomic alterations in PRKCZ, ABL1, and FGF4 were significantly different in patients who died compared with those who survived. Immunohistochemistry confirmed high PIK3CA immunoreactivity in primary and metastatic OSCC. Higher FGF4 immunoreactivity in primary OSCC is associated with a worse prognosis. Loss of CRBP1 immunoreactivity is evident in primary and metastatic OSCC. Our study suggests that precise genomic profiling can be useful in determining gene number changes in OSCC. As our understanding of these changes grow, this profiling may become a practical tool for clinical evaluation.

Adult↗

Increase of disintergin metalloprotease 10 (ADAM10) expression in oral squamous cell carcinoma.

The A disintergin and metalloprotease (ADAM) superfamilies play important roles in angiogenesis, development, and tumorigenesis. Amyloid precursor protein (APP) is an important protein related to Alzheimer's disease. Recent research shows that ADAM10 alpha-secretase activity can release the secreted form of APP. We have previously demonstrated an increase of APP expression in oral squamous cell carcinoma (OSCC) and related OSCC cell lines. The present study characterizes ADAM10 expression in the neoplastic process of OSCC. RT-PCR analysis revealed a two-fold increase in APP mRNA expression in 50% of OSCC (n=50) relative to corresponding non-malignant matched tissues (NMMT). This increase in mRNA expression occurred at the preneoplastic stage. A significant correlation between mRNA expression of ADAM10 and APP in OSCC was noted. A non-buccal subset of OSCC correlated with an increase of mRNA expression of both ADAM10 and APP. The increase of ADAM10 protein expression in the majority of OSCC tissues and cell lines studies was confirmed by Western blot analysis. Additionally, an increase of ADAM10 immunoreactivity in OSCC relative to NMMT was noted. An antisense oligonucleotide against ADAM10 reduced ADAM10 expression as well as growth in an OSCC cell line. However, this treatment did not reduce the secreted form APP. This study suggests that ADAM10 expression plays a role in the carcinogenesis of OSCC and proliferation of OSCC cells, independent of APP processing.

ADAM Proteins↗

Areca (betel) nut extract activates mitogen-activated protein kinases and NF-kappaB in oral keratinocytes.

Areca (betel) was recently proved a carcinogenic substance by the International Agency for Research on Cancer. However, the signaling impact of areca in oral keratinocyte is still obscure. Mitogen-activated protein kinase superfamilies, including extracellular signal-regulated kinase (ERK), c-Jun N-terminal kinases (JNK) and p38, together with transcription factor NF-kappaB, are important signaling elements. We examined the activation of these signaling pathways in OECM-1 and SAS oral keratinocytes, treated with ripe areca nut extract (ANE). In both cells, a rapid increase in JNK1 activity at 0.5 hr was noted following treatment of ANE. ERK was profoundly activated during 0.5-2 hr in OECM-1 cells. Contrasting p38 activity was noted in these 2 cells. In both cells, ANE also activated NF-kappaB pathway in a biphasic manner, particularly for SAS cells. NF-kappaB was activated by approximately 2- to 4-fold at 0.5-1 hr and a plateau or slight decrease of activity existed between 1 and 6 hr. Later, another higher episode of NF-kappaB activity was raised. This was accompanied with the rapid degradation in cytosolic IkappaBalpha as well as an increase of nuclear NF-kappaB in both cells. ANE treatment did not activate epidermal growth factor receptor signaling system, but blockage of NF-kappaB activation rendered the suppression of ANE-modulated COX-2 upregulation in OECM-1. This study identified that ANE affected interactive signaling systems in oral keratonocytes that could be the pathogenetic basis for areca.

Areca↗

Copy number amplification of 3q26-27 oncogenes in microdissected oral squamous cell carcinoma and oral brushed samples from areca chewers.

Oral squamous cell carcinoma (OSCC) is a worldwide disease. In South Asians, the high prevalence of OSCC is tightly linked to areca chewing. The prognosis for OSCC remains dismal and improvement in early diagnosis may benefit the survival of patients with this disease. Chromosome region 3q26-27 has been shown to carry several oncogenes. By quantitative PCR (Q-PCR), the gene copy numbers of TERC, PI3KCA, ZASC1, and TP63 from microdissected OSCCs have been determined. Copy number amplifications of PI3KCA and ZASC1, a newly identified zinc finger transcription factor, were identified in 30 (65%) and 32 (70%) of 46 primary OSCCs, respectively. Co-amplification of PI3KCA and ZASC1 in 50% of primary OSCCs suggests that they are critical targets of the 3q26.3 amplicon. OSCCs carrying higher levels of PI3KCA and/or ZASC1 copy number amplification were associated with a significantly higher propensity for lymph node metastasis. ZASC1 mRNA expression in OSCC was also associated with lymph node metastasis. In addition, copy number amplification of at least one 3q26-27 oncogene was detected in brush samples from 10 of 22 (45%) patients with oral leukoplakia and 5 of 20 (25%) oral mucosa samples from areca chewers without a visible lesion. These data indicate frequent copy number amplification and overexpression of ZASC1 in OSCC. The findings also suggest the potential use of Q-PCR analysis and brush collection of samples to dissect OSCC risk.

Adult↗

Frequent microsatellite alterations of chromosome locus 4q13.1 in oral squamous cell carcinomas.

BACKGROUND: Studies have revealed that losses of chromosome 4q24-25 regions are frequent in cancers including head and neck squamous cell carcinoma. Our previous comparative genomic hybridization analysis showed extensive losses of chromosome arm 4q in oral squamous cell carcinoma (OSCC). METHODS: To be more precise in mapping the potential regions of allelic losses and to understand the microsatellite instability (MSI) on 4q involving in oral pathogenesis, we performed allelotypings using eight polymorphic markers. Microsatellite analyses were first performed on 100 randomly selected controls to confirm the high informative rates of markers. Twenty OSCC tissues were microdissected from surgical specimens for microsatellite alterations (MA) analysis. RESULTS: MA was observed in 95% OSCC cases. The most eminently altered locus was 4q13.1 (75%), followed by 4q22.2 and 4q32.1 (55%). Allelic losses also occurred most frequently on these loci. Thirty-five percent cases had MA spanning 4q13.1 to 4q21.1. MSI occurred in 35% OSCC, at a lesser extent compared with allelic losses. The most common locus for MSI was 4q21.2 (20%). In addition, 4q MSI was significantly associated with the lymph node metastasis of OSCC (P = 0.01). So far, most tumor suppressor genes on 4q have not been specified. CONCLUSION: Our results were additive to previous findings and proposed novel scenario of suppressor loci located at 4q13.1-21.1 whose inactivation could be important for progression of OSCC.

Adult↗

Association of GST genotypes with age of onset and lymph node metastasis in oral squamous cell carcinoma.

BACKGROUND: Environment-gene interaction in oral carcinogenesis is well demonstrated by phase I and II enzymes that are involved in the metabolism of carcinogens. This study investigated the association of glutathione S-transferase (GST)T1 and GSTM1 genotypes of phase II enzyme genes with risk for, age of onset, and neck lymph node metastasis (LNM) in areca-associated oral squamous cell carcinoma (OSCC). METHODS: A total of 114 OSCC male patients and 100 male controls were recruited. All subjects were areca users and tobacco smokers. DNA was obtained from peripheral blood samples. Genotyping of GSTT1 (non-null/null) and GSTM1 (non-null/null) was determined by polymerase chain reaction (PCR) analysis using specific primers that only amplify non-null alleles. RESULTS: No association was found between GST genotype and the risk of OSCC based on case-controls. Patients with the GSTT1 null genotype were older at onset (P = 0.03). Those with the GSTM1 null genotype had a higher incidence of neck LNM than those with the GSTM1 non-null genotype (P = 0.01). Patients with the GSTM1/GSTT1 null genotype appeared to have later onset and a higher incidence of neck LNM than those carrying the opposite genotype. CONCLUSION: The GST genotypes may be important markers for the age of onset and risk of metastasis in OSCC. The data also suggest that the various GST isoforms may be differentially involved in development or progression of OSCC.

Adult↗

Tumor necrosis factor-alpha promoter polymorphism is associated with susceptibility to oral squamous cell carcinoma.

BACKGROUND: Oral squamous cell carcinoma (OSCC) is one of the leading cancers in most Asian countries. Alterations of immune function have been detected in OSCC patients. The pro-inflammatory cytokine tumor necrosis factor-alpha (TNF-alpha) is a central mediator of the immune response involved in a wide range of immuno-inflammatory and infectious diseases. Polymorphism of the TNF-alpha gene has been intensively studied as a potential determinant of susceptibility to numerous cancers. METHODS: We genotyped 192 patients with OSCC and 146 healthy case controls by using polymerase chain reaction-double restriction fragment length polymorphism with amplification-created restriction sites to assess allelic determinants at the TNF-alpha polymorphic sites -308 and -238 in the promoter region. Genotype frequencies were evaluated with Fisher's test. RESULTS: The -308 TNFG (tumor necrosis factor G) allele genotype was higher in patients with OSCC (91.2% vs. 82.2%; P = 0.02) and TNFG/A was lower (8.3% vs. 11.8%; P = 0.02); the -238 TNFG/A allele genotype was lower in patient with OSCC (2.1% vs. 6.9%; P = 0.02). CONCLUSION: This is the first report that the TNF-alpha polymorphism is associated with the risk for OSCC in Taiwan.

Adenine↗

Cytotoxicity of phenolic acid phenethyl esters on oral cancer cells.

Many phenolic acid phenethyl esters possess diverse biological effects including anti-cancer activity. A series of 14 derivatives were synthesized for the evaluation of their cytotoxic effect on oral cancer cells. These derivatives were tested by the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) colorimetric and trypan blue dye exclusion assay on the growth of oral squamous cell carcinoma (SAS), oral epidermoid carcinoma-Meng 1 (OEC-M1), and normal human oral fibroblast (NHOF) cells, respectively. Caffeic acid phenethyl esters, 3a (CAPE), and 3b, 3c, and 3d showed cytotoxic effects on the SAS and OEC-M1 cell lines, but not the NHOF cell line at a 5-100 microM dose range. Flow cytometric analysis showed that 3c caused OEC-M1 cell arrest at G2/M phase. Such differential effects on representative cancer and normal cells suggested these compounds might be useful in oral cancer chemotherapy.

Caffeic Acids↗

Hydroxychavicol modulates benzo[a]pyrene-induced genotoxicity through induction of dihydrodiol dehydrogenase.

Areca quid (AQ) chewing and smoking have synergistic potential in the development of oral squamous cell carcinoma (OSCC). In Taiwan, fresh Piper betle inflorescence is uniquely added to AQ, and hydroxychavicol (HC) is the major phenolic component of P. betle inflorescence. This study investigated whether HC modulates cigarette carcinogen benzo[a]pyrene (B[a]P)-mediated toxic effects. Pretreatment of HC and followed by B[a]P challenge resulted in higher cytotoxicity and HPRT gene mutation frequency (P < 0.05). However, this treatment protocol resulted in decreased bulky B[a]P-DNA adduct levels as demonstrated by 32P-postlabeling technique (P < 0.05). Western blotting analysis indicated that HC pretreatment induced the expression of cyclooxygenase-2 (COX-2) and dihydrodiol dehydrogenase (DDH). COX-2 is know to participate in the B[a]P-DNA adduct formation, while DDH has been shown to divert B[a]P-diol to B[a]P-7,8-quinone and the generation of reactive oxygen species (ROS). Using flow cytometry, this study demonstrated the increased production of 8-oxoguanine (P < 0.001). Overall, the results suggest that HC-induced DDH is more important than site-by-site up-regulation of COX-2 in B[a]P-induced cytotoxicity and HPRT gene mutation. Furthermore, DDH-mediated oxidative DNA damage and not B[a]P-DNA adduct formation may be involved in the HC and B[a]P-induced toxic effects.

Areca↗

Increased expression of amyloid precursor protein in oral squamous cell carcinoma.

In our previous study, we identified amyloid precursor protein (APP) in an oral squamous cell carcinoma (OSCC)-enriching subtractive hybridization library. Our present study attempts to define the significance of APP expression in the genesis of OSCC. RT-PCR analysis showed increase in APP mRNA expression for more than 2-fold in 76% of OSCC (n = 55) relative to corresponding non-cancerous matched tissues (NCMT). The majority of esophageal SCCs also had increase in APP mRNA expression. OSCC patients exhibiting increase in APP mRNA expression had significantly lower survival rate compared to patients exhibiting the opposite status. Western blotting analysis identified APP751 and APP770 as the major APP isoforms in oral keratinocytes. A high correlation between mRNA and protein expressions of APP was noted in OSCC/NCMT pairs. Immunohistochemistry further showed a remarkable increase of APP in OSCC tissue relative to NCMT. Treatment with an antisense oligonucleotide against APP reduced cellular and secreted APP as well as growth in an OSCC cell line. Our study provides novel clues that APP expression is involved in the proliferation and carcinogenesis of OSCC. Correlated with such pathogenesis was the survival of its victims. The degree of APP expression could serve as an invaluable marker for oral carcinogenesis.

Adult↗

Genome-wide profiling of oral squamous cell carcinoma.

Oral squamous cell carcinoma (OSCC) is a common malignancy, the incidence of which is particularly high in some Asian countries due to the geographically linked areca quid (AQ) chewing habit. In this study, array-based comparative genomic hybridization was used to screen microdissected OSCCs for genome-wide alterations. The highest frequencies of gene gain were detected for TP63, Serpine1, FGF4/FGF3, c-Myc and DMD. The highest frequencies of deletion were detected for Caspase8 and MTAP. Gained genes, classified by hierarchical clustering, were mainly on 17q21-tel; 20q; 11q13; 3q27-29 and the X chromosome. Among these, gains of EGFR at 7p, FGF4/FGF3, CCND1 and EMS1 at 11q13, and AIB1 at 20q were significantly associated with lymph node metastasis. The genomic profiles of FHIT and EXT1 in AQ-associated and non-AQ-associated OSCCs exhibited the most prominent differences. RT-PCR confirmed the significant increase of TP63 and Serpine1 mRNA expression in OSCC relative to non-malignant matched tissue. A significant increase in Serpine1 immunoreactivity was observed from non-malignant matched tissue to OSCC. However, there was no correlation between the frequent genomic loss of Caspase 8 and a significant decrease in Caspase8 expression. These data demonstrate that genomic profiling can be useful in analysing pathogenetic events involved in the genesis or progression of OSCC.

Carcinoma, Squamous Cell↗

Overexpression of Rac-1 small GTPase binding protein in oral squamous cell carcinoma.

PURPOSE: Oral squamous cell carcinoma (OSCC) is a fairly common malignancy in Taiwan and most countries of South Asia due to the popularity of areca quid use. In vitro studies have indicated that Rac proteins, a member of ras-related small GTPase protein family, can regulate cytoskeletal structures and activate signaling cascade and have the potential to transform cultured cells. However, Rac alteration during oral carcinogenesis in vivo has yet to be shown. The present study was conducted to investigate the importance of Rac-1 in oral tumorigenesis in vivo. PATIENTS AND METHODS: Expression level of Rac-1 protein and mRNA in OSCC together with noncancerous match tissue (NCMT) was explored using immunohistochemistry and reverse transcription-polymerase chain reaction analysis. RESULTS: The immunoreactivity of Rac-1 was shown in a significantly higher fraction of OSCC (74%) relative to the 48% in NCMT (P =.03). Eight of 14 (57%) available tissue pairs also showed overexpression of Rac-1 mRNA in OSCC than that in NCMT. The Rac-1 immunoreactivity did not differ significantly in accord with clinicopathologic parameters including areca quid use. However, 3 of 4 recurrent OSCC studied lacked the Rac-1 immunoreactivity. CONCLUSIONS: Our results presented novel findings: Rac-1 overexpression is a frequent occurrence in OSCC, highlighting the involvement of GTPase elements in the neoplastic growth of OSCC.

Carcinoma, Squamous Cell↗