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Xin-Yuan Guan

Publications and source records attributed to Xin-Yuan Guan.

At least 19 recordsLinked to original sources

SDC1+ CAFs secreting CTGF drive tumour metastasis via FGFR3 signalling in cancers.

BACKGROUND: Cancer-associated fibroblasts (CAFs) are key stromal components of the tumour microenvironment (TME) that profoundly influence tumour progression. However, CAFs exhibit pronounced phenotypic and functional heterogeneity, and whether conserved CAF subtypes with shared functional hallmarks exist across different cancer types remains unclear. OBJECTIVE: We sought to uncover universal CAF subtypes that transcend tumour origins, defining their core molecular signatures and pro-tumorigenic functions within the TME. DESIGN: We constructed a pan-cancer CAF atlas through single-cell transcriptomic analysis of 554 specimens across 14 cancer types. To validate the findings, we performed further functional analyses, including in vitro migration and invasion assays, in vivo lymphatic metastasis models and mechanistic studies focusing on candidate signalling pathways. RESULTS: We identified a conserved syndecan 1 (SDC1) + CAF subset associated with advanced tumour stage and poor outcomes. These CAFs enhanced tumour cell migration and invasion in vitro and promoted lymphatic metastasis in vivo. This effect is mediated through connective tissue growth factor (CTGF) secretion, which activates fibroblast growth factor receptor 3 (FGFR3) signalling in tumour cells to induce epithelial-mesenchymal transition (EMT). Blocking CTGF or FGFR3 signalling abrogated these effects. We also found that kruppel like factor 6 (KLF6) directly regulates CTGF in SDC1+ CAFs, establishing a complete KLF6-CTGF-FGFR3 metastatic axis. CONCLUSIONS: Our study establishes SDC1+ CAFs as a universal, metastasis-promoting CAF subset across multiple cancer types and uncovers a novel KLF6-CTGF-FGFR3 axis that drives EMT and tumour dissemination. These findings provide mechanistic insight into CAF-tumour cell crosstalk and highlight actionable stromal targets for anti-metastatic therapies across diverse malignancies.

Humans↗

Up-regulation of fibroblast growth factor 3 is associated with tumor metastasis and recurrence in human hepatocellular carcinoma.

Recently, we established a hepatocellular carcinoma (HCC) cell line (named H4-M) from a metastatic HCC tumor. In H4-M, a marker chromosome containing a homogeneously staining region (hsr) was identified by cytogenetic analysis. The hsr was characterized by chromosome microdissection and the result showed that the hsr was composed of DNA sequence from 11q13. Oncogenes CCND1 and FGF3 were localized within the complicon and overexpressions of CCND1 and FGF3 were confirmed by Northern blot analysis. Clinical significance of FGF3 overexpression was studied by immunohistochemistry (IHC) using an HCC tissue microarray (TMA) containing 60 pairs of primary/metastatic HCCs and 30 pairs of primary/recurrent HCCs. TMA study showed that overexpression of FGF3 was significantly associated with HCC metastasis and recurrence (p<0.01), suggesting that up-regulation of FGF3 may play an important role in HCC metastasis and recurrence.

Blotting, Northern↗

Characterization of rearrangements involving 4q, 13q and 16q in hepatocellular carcinoma cell lines using region-specific multiplex-FISH probes.

Deletions in 4q, 13q and 16q were frequently detected in hepatocellular carcinoma (HCC) by comparative genomic hybridization (CGH) studies. However, detailed chromosome structural aberrations are not fully explored. Using CGH combined with multiplex-color FISH (M-FISH) with chromosome region-specific probes (CRPs), chromosome structural aberrations in 4q, 13q and 16q in six HCC cell lines were studied. All CRPs, which were generated from microdissected DNA, were specific, strong in intensity and sensitive enough to detect chromosome structural aberrations including translocation and deletion. FISH with BAC probes was used to further characterize translocation breakpoints and deletions. A breakpoint at 16q22 was localized at a BAC clone (RP11-341K23) and another breakpoint at 4q28 was localized within a 620 kb-region. A minimal deleted region at 13q21 was found between BAC clones RP11-240M20 and RP11-435P18. This study demonstrated that the combination of CGH, M-FISH and BAC-FISH is a very useful tool to detect and characterize translocation breakpoint.

Carcinoma, Hepatocellular↗

TSLC1 is a tumor suppressor gene associated with metastasis in nasopharyngeal carcinoma.

In up to 87% of nasopharyngeal carcinoma (NPC) clinical tumor specimens, there was either down-regulation or loss of TSLC1 gene expression. Using a tissue microarray and immunohistochemical staining, the frequency of down-regulated or loss of expression of TSLC1 in metastatic lymph node NPC was 83% and the frequency of loss of expression of TSLC1 was 35%, which was significantly higher than that in primary NPC (12%). To examine the possible growth-suppressive activity of TSLC1 in NPC, three NPC cell lines, HONE1, HNE1, and CNE2, were transfected with the wild-type TSLC1 gene cloned into the pCR3.1 expression vector; a reduction of colony formation ability was observed for all three cell lines. A tetracycline-inducible expression vector, pETE-Bsd, was also used to obtain stable transfectants of TSLC1. There was a dramatic difference between colony formation ability in the presence or absence of doxycycline when the gene is shut off or expressed, respectively, with the tetracycline-inducible system. Tumorigenicity assay results show that the activation of TSLC1 suppresses tumor formation in nude mice and functional inactivation of this gene is observed in all the tumors derived from tumorigenic transfectants. Further studies indicate that expression of TSLC1 inhibits HONE1 cell growth in vitro by arresting cells in G(0)-G(1) phase in normal culture conditions, whereas in the absence of serum, TSLC1 induced apoptosis. These findings suggest that TSLC1 is a tumor suppressor gene in NPC, which is significantly associated with lymph node metastases.

Adult↗

High-throughput loss-of-heterozygosity study of chromosome 3p in lung cancer using single-nucleotide polymorphism markers.

Loss of DNA copy number at the short arm of chromosome 3 is one of the most common genetic changes in human lung cancer, suggesting the existence of one or more tumor suppressor genes (TSG) at 3p. To identify most frequently deleted regions and candidate TSGs within these regions, a recently developed single-nucleotide polymorphism (SNP)-mass spectrometry-genotyping (SMSG) technology was applied to investigate the loss of heterozygosity (LOH) in 30 primary non-small-cell lung cancers. A total of 386 SNP markers that spanned a region of 70 Mb at 3p, from 3pter to 3p14.1, were selected for LOH analysis. The average intermarker distance in the present study is approximately 180 kb. Several frequently deleted regions, including 3p26.3, 3p25.3, 3p24.1, 3p23, and 3p21.1, were found. Several candidate TSGs within these frequently detected LOH regions have been found, including APG7L at 3p25.3, CLASP2 at 3p23, and CACNA2D3 at 3p21.1. This study also showed that SMSG technology is a very useful approach to rapidly define the minimal deleted region and to identify target TSGs in a given cancer.

Carcinoma, Non-Small-Cell Lung↗

Inactivation of human MAD2B in nasopharyngeal carcinoma cells leads to chemosensitization to DNA-damaging agents.

Rev7p has been suggested to play an important role in regulating DNA damage response in yeast, and recently, the human homologue (i.e., MAD2B) has been identified, which shares significant homology to the mitotic checkpoint protein MAD2. In this study, we investigated whether MAD2B played a key role in cellular sensitivity to DNA-damaging anticancer drugs by suppressing its expression using RNA interference in nasopharyngeal carcinoma cells. Using colony formation assay, we found that suppression of MAD2B conferred hypersensitivity to a range of DNA-damaging agents, especially DNA cross-linkers, such as cisplatin, and gamma-irradiation. This effect was associated with reduced frequencies of spontaneous and drug-induced mutations, elevated phosphorylation of histone H2AX, and markedly increased chromosomal aberrations in response to DNA damage. In addition, there was also a significant decrease in cisplatin-induced sister chromatid exchange rate, a marker for homologous recombination-mediated post-replication repair in MAD2B-depleted cells. These results indicate that MAD2B may be a key factor in regulating cellular response to DNA damage in cancer cells. Our findings reveal a novel strategy for cancer therapy, in which cancer cells are sensitized to DNA-damaging anticancer drugs through inactivation of the MAD2B gene.

Cell Line, Tumor↗

SRC-3/AIB1 protein and gene amplification levels in human esophageal squamous cell carcinomas.

It has been suggested that the steroid receptor coactivatior-3 (SRC-3) gene, also known as AIB1, ACTR, RAC3, p/CIP and TRAM-1, located at 20q12, plays an oncogenic role in several types of human cancers. In this study, we examined the encoded protein expression of SRC-3 and its copy number in 221 human esophageal squamous cell carcinomas (ESCCs). In this ESCC series, the overexpression and increased copy number of SRC-3 gene was detected in 46 and 13% of ESCCs, respectively. In addition, overexpression of SRC-3 was observed more frequently in primary ESCCs in late T stages (T3/T4) than that in earlier T1/T2 stages (P<0.05), but no significant association of expression of SRC-3 and status of lymph node metastases was observed (P>0.05). These results suggest that overexpression of SRC-3, caused by gene amplification/gain or other molecular mechanisms, might provide a selective advantage for the development and local invasion of certain subsets of ESCC. In addition, a significant correlation (P<0.05) of overexpression of SRC-3 with increased cell proliferation (through detection of Ki-67 expression) was observed in these ESCCs. These findings suggest a potential role of SRC-3 in the control of ESCC cell proliferation; such may be responsible, at least in part, for tumorigenesis and/or progression of ESCC.

Adult↗

Co-overexpression of fibroblast growth factor 3 and epidermal growth factor receptor is correlated with the development of nonsmall cell lung carcinoma.

BACKGROUND: Lung cancer is a prevalent cancer with a poor prognosis. To develop a useful in vitro cell model, a cell line of lung squamous cell carcinoma (SCC-35) was established. METHODS: The SCC-35 cell was characterized by comparative genomic hybridization (CGH) and spectral karyotyping (SKY). Chromosome microdissection, fluorescence in situ hybridization (FISH), and Southern and Northern blots analyses were used to study target genes. RESULTS: Two amplicons were found at chromosomes 7p12 and 11q13. Amplification and overexpression of epidermal growth factor receptor (EGFR) at 7p12 and fibroblast growth factor 3 (FGF3) at 11q13 were found. To understand the correlation between these two genes in nonsmall cell lung carcinoma (NSCLC) more comprehensively, overexpression of FGF3 and EGFR was investigated by immunohistochemistry with a tissue microarray containing 406 NSCLC samples. Cytoplasmic overexpression of FGF3 and EGFR was detected in 61% and 69% NSCLC cases, respectively. More interestingly, a significant correlation between overexpression of FGF3 and EGFR was found in NSCLC. CONCLUSION: These results suggest that co-overexpression of FGF3 and EGFR may play an important role in the pathogenesis of lung carcinoma.

Carcinoma, Non-Small-Cell Lung↗

THY1 is a candidate tumour suppressor gene with decreased expression in metastatic nasopharyngeal carcinoma.

Using oligonucleotide microarray analysis, THY1, mapping close to a previously defined 11q22-23 nasopharyngeal carcinoma (NPC) critical region was identified as showing consistent downregulated expression in the tumour segregants, as compared to their parental tumour-suppressing microcell hybrids (MCHs). Gene expression and protein analyses show that THY1 was not expressed in the NPC HONE1 recipient cells, tumour segregants, and other NPC cell lines; THY1 was exclusively expressed in the non-tumourigenic MCHs. The mechanism of THY1 gene inactivation in these cell lines was attributed to hypermethylation. Clinical study showed that in 65% of NPC specimens there was either downregulation or loss of THY1 gene expression. Using a tissue microarray and immunohistochemical staining, 44% of the NPC cases showed downregulated expression of THY1 and 9% lost THY1 expression. The frequency of THY1 downregulated expression in lymph node metastatic NPC was 63%, which was significantly higher than in the primary tumour (33%). After transfection of THY1 gene into HONE1 cells, a dramatic reduction of colony formation ability was observed. These findings suggest that THY1 is a good candidate tumour suppressor gene in NPC, which is significantly associated with lymph node metastases.

Carcinoma↗

Oncogenic transformation by SEI-1 is associated with chromosomal instability.

Amplification of SEI-1, a cell cycle regulatory gene at 19q13.1, is commonly detected in ovarian cancer, suggesting a role in the pathogenesis of ovarian cancer. In the present study, the oncogenic potential of SEI-1 was shown by anchorage-independent growth and tumor formation in nude mice with SEI-1-transfected NIH 3T3 mouse fibroblast cells. Silencing of SEI-1 gene expression by small interfering RNAs in ovarian cancer cell line SKOV3 could inhibit cell growth as well as colony formation on soft agar. Chromosomal alterations including the formation of double minutes were observed in tumor cells derived from SEI-1-transformed NIH 3T3 cells. Micronulei formation, which is an indicator of nuclear abnormality and genomic instability, was markedly increased in SEI-1-transfected cells. These data suggest that the oncogenic role of SEI-1 might be mediated at least in part via an effect on genomic instability. Furthermore, overexpression of SEI-1 was associated with higher tumor grades and late Fesddration Internationale des Gynaecologistes et Obstetristes (FIGO) stages in ovarian carcinomas. These data strongly suggest that SEI-1 plays an important role in the development and progression of ovarian cancer.

Animals↗

Oncogenic role of clusterin overexpression in multistage colorectal tumorigenesis and progression.

AIM: To investigate the expression pattern of clusterin in colorectal adenoma-carcinoma-metastasis series, and to explore the potential role of clusterin in multistage colorectal tumorigenesis and progression. METHODS: A colorectal carcinoma (CRC)-tissue microarray (TMA), which contained 85 advanced CRCs including 43 cases of Dukes B, 21 of Dukes C and 21 of Dukes D tumors, were used for assessing the expression of clusterin (clone 41D) and tumor cell apoptotic index (AI) by immunohistochemistry and TUNEL assay, respectively. Moreover the potential correlation of clusterin expression with the patient's clinical-pathological features were also examined. RESULTS: The positive staining of clusterin in different colorectal tissues was primarily a cytoplasmic pattern. Cytoplasmic overexpression of clusterin was detected in none of the normal colorectal mucosa, 17% of the adenomas, 46% of the primary CRCs, and 57% of the CRC metastatic lesions. In addition, a significant positive correlation between overexpression of clusterin and advanced clinical (Dukes) stage was observed (P<0.01). Overexpression of cytoplasmic clusterin in CRCs was inversely correlated with tumor apoptotic index (P<0.01), indicating the anti-apoptotic function of cytoplasmic clusterin in CRCs. CONCLUSION: These data suggests that overexpression of cytoplasmic clusterin might be involved in the tumorigenesis and/or progression of CRCs. The anti-apoptotic function of cytoplasmic clusterin may be responsible, at least in part, for the development and biologically aggressive behavior of CRC.

Adult↗

Characterization of 3p, 5p, and 3q in two nasopharyngeal carcinoma cell lines, using region-specific multiplex fluorescence in situ hybridization probes.

Amplification of chromosome arms 3q and 5p and deletion of 3p were frequently detected in nasopharyngeal carcinoma (NPC) with comparative genomic hybridization and loss of heterozygosity studies. To identify the minimal amplified or deleted regions in these arms, structural aberrations in chromosome arms 3p, 3q, and 5p in two NPC cell lines, CNE1 and SUNE1, were studied with multiplex-color FISH (M-FISH) and chromosome region-specific probes (CRP). All CRPs, which were generated from microdissected DNA, were specific and strong in intensity, and sensitive enough to detect chromosome aberrations including translocations, deletions, and amplifications of target regions. In these two NPC cell lines, minimal regions of deletion and amplification were found at 3p12 and 3q26 approximately q27, respectively. On 5p, most of the regions were amplified as intact copies. Interregion translocations of these three arms were also observed. The amplification on 3q26 approximately q27 provided useful hints for further screening the minimal amplification at RP11-115J24 (3q26.2), containing candidate oncogene eIF-5A2. M-FISH with CRPs is thus not only useful in revealing a comprehensive picture of structural aberrations in target chromosomes, but also in narrowing down the minimal region for screening cancer-related genes.

Cell Line, Tumor↗

Up-regulated expression of cytoplasmic clusterin in human ovarian carcinoma.

BACKGROUND: Recently, tumorigenic roles of the clusterin gene in several human malignancies have been suggested, but its potential role in the development and progression of ovarian carcinoma is unclear. METHODS: In the current study, immunohistochemistry was used to examine the expression status of clusterin in 10 normal ovaries, 20 ovarian cystadenomas, 15 borderline ovarian tumors, and 240 ovarian carcinomas (nonmetastatic and metastatic) by tissue microarray. In addition, the apoptotic index of each tumor was assessed with a terminal deoxyuridine triphosphate nick-end labeling assay. RESULTS: Positive staining for clusterin in different ovarian tissues was observed primarily a cytoplasmic pattern. Cytoplasmic overexpression of clusterin was detected in none of the normal ovaries, in 17% of cystadenomas, in 38% of borderline tumors, and in 58% of invasive ovarian carcinomas. A significant association was observed (P < 0.001) between the overexpression of clusterin and late clinical stage according to the International Federation of Gynecology and Obstetrics staging system. In addition, the overexpression of clusterin was detected more frequently in metastatic lesions than that in their matched primary tumors. The current results also provided evidence that the overexpression of cytoplasmic clusterin in carcinomas was correlated inversely with the tumors' apoptotic index, demonstrating an antiapoptotic function of cytoplasmic clusterin in ovarian carcinomas. CONCLUSIONS: The current results suggested that the overexpression of cytoplasmic clusterin may represent an acquired malignant phenotypic feature of ovarian carcinoma and may be one of the important factors in determining the aggressive nature of ovarian carcinoma.

Adult↗

Correlation of AIB1 overexpression with advanced clinical stage of human colorectal carcinoma.

AIB1, a member of the steroid receptor coactivator 1 family, has been cloned on 20q12 and is a candidate oncogene in human breast cancer. It is commonly amplified and overexpressed in several types of human cancers. In this study, we examined the expression of AIB1, as related to clinicopathologic features, in 85 human colorectal cancers (CRCs). The status of the number of AIB1 copies, p53 expression, and DNA ploidy was also analyzed. The overexpression of AIB1 was detected in 35% of CRCs. Amplification of AIB1 was observed in 10% of CRCs. In addition, the overexpression of AIB1 was observed more frequently in CRCs in later clinical stages (T3 N1 M0/T3 N0 2M1), compared with that in T3 N0 M0 stage (P < .05). These results suggest that overexpression of AIB1 might provide a selective advantage for the developmental growth and/or progression of subsets of CRCs. In addition, a significant correlation (P < .05) of overexpression of AIB1 with p53 overexpression as well as with aneuploid DNA content was observed in these CRCs. The overexpression of p53 was also correlated significantly with CRC DNA ploidy (P < .05). Furthermore, there was a substantial population of CRCs showing overexpression of both AIB1 and p53 protein and all had aneuploid DNA content; most of these were in the later clinical stage. These findings suggest a possible convergence of AIB1 with a pathway involving p53, which might induce chromosomal instability and affect the clinical phenotype of a subset of CRCs.

Acetyltransferases↗

[Comparative genomic hybridization: the profile of chromosomal imbalances in esophageal squamous cell carcinoma].

OBJECTIVE: To characterize the profile of chromosomal imbalances of esophageal squamous cell carcinoma (SCC) in Linzhou, the high prevalence area of Henan province. METHODS: Comparative genomic hybridization (CGH) was used to examine 52 cases of primary SCC of esophagus. RESULTS: Gains in part or in whole of chromosome 3q, 8q, 5p, 1q, 6q, 18p, 20q and losses of 3p, 1p, 9q, 19p, 4p, 8p were detected frequently in SCC (> 20%). Gain of 3q, 5p, 1q, 11q13-14 and loss of 4pq, 13q were all significantly correlated with pathologic staging (P < 0.05). Gains of 8q, loss of 4p were linked to nodal metastasis (P < 0.05). Gains of 2p and loss of 4pq, 11q14-qter were associated with distant organ metastasis (P < 0.05). CONCLUSION: These observations suggest that 3q, 8q, 5p, 1q, 6q, 18p, and 20q may contain SCC-related oncogenes; 3p, 1p, 9q, 19p, 4p and 8p may contain SCC-related tumor suppressor genes. It is likely that gain of 3q, 5p, 1q, 11q13-14 and loss of 4pq, 13q are the genetic aberrations critical for the development of esophageal carcinoma, whereas gains of 8q, 2p and loss of 4pq, 11q14-qter are considered later events associated with tumor progression and are thought to confer metastatic potential to esophageal carcinoma. Furthermore, nodal and distant organ metastases involve different genes.

Carcinoma, Squamous Cell↗

Establishment and characterization of a human non-small cell lung cancer cell line.

Lung cancer is one of the most common causes of cancer death worldwide. Although many efforts have been made to explore the mechanisms involved in the development of lung cancer, the genetic events involved in the pathogenesis of lung cancer are still unclear. For a better mechanistic scope of study, a well-established cellular model is essential. We report the establishment of a squamous cell carcinoma (SCC) cell line of human lung, SCC-37. Chromosomal abnormalities and global genomic alterations of SCC-37 were studied by spectral karyotyping (SKY) and comparative genomic hybridization (CGH), respectively. Results showed that SCC-37 was a hypodiploid with complex chromosomal rearrangements. Some of the alterations, such as the gain of 1q25-qter in SCC-37, have been correlated to the tumor recurrence of non-small cell lung cancer (NSCLC). Other interesting findings include the amplification of 3q25-qter and 12q13, suggesting the existence of important oncogenes in the amplicons. This cell line may thus provide a useful cellular resource for studying the pathogenesis of SCC of the lung in the future.

Aged↗

[Genomic changes in primary lesion and lymph node metastases of esophageal squamous cell carcinoma].

BACKGROUND & OBJECTIVE: Local lymph node and blood metastasis could occur at early stage of esophageal squamous cell carcinoma (ESCC), which may be the key factors of its recurrence and poor prognosis. However, the mechanism of ESCC metastasis is unclear. This study was to analyze the genetic changes in primary lesion and lymph node metastases of ESCC, to screen for and locate ESCC metastasis-related genes. METHODS: Genomic alterations in 15 pairs of primary lesions and matched metastatic lymph nodes of ESCC were analyzed by comparative genomic hybridization (CGH). RESULTS: In the 15 pairs of tissues, the most common chromosomal alterations were the gains of 3q, 8q, 6p, 20p, 5p, 18p, 2p, 2q and 1q, and the losses of 10p, 10q, 17p, 18q, 4p and 13q. Of these changes, the most significant finding was the gain of 6p with a frequency of 47% in metastatic lymph nodes and 13% in primary lesions, and the gain of 20p with a frequency of 73% in metastatic lymph nodes and 33% in primary lesions. The second interesting finding was the loss of 10p with a frequency of 53% in metastatic lymph nodes and 13% in primary lesions, and the loss of 10q with a frequency of 47% in metastatic lymph nodes and 13% in primary lesions. CONCLUSION: The gains of 6p and 20p and the losses of 10p and 10q are common genomic alterations in primary lesion and lymph node metastases of ESCC, which may code ESCC metastasis-related genes.

Adult↗

Distinct profiles of critically short telomeres are a key determinant of different chromosome aberrations in immortalized human cells: whole-genome evidence from multiple cell lines.

Chromosomal aberrations are common in cancers. However, the search for chromosomal aberrations leading to development of specific solid tumors has been severely hindered because the majority of solid tumors have complex chromosomal aberrations that differ within the same tumor types. A similar phenomenon exists in immortalized cell lines. The underlying mechanisms driving these diverse aberrations are largely unknown. Telomeres play crucial roles in protecting the integrity of eucaryotic chromosomes and maintaining genomic stability of human cells. Telomere lengths on individual chromosomes in normal human somatic cells are heterogeneous and undergo progressive shortening with aging process. In this study, for the first time, a molecular cytogenetic method using sequential telomere quantitative fluorescence in situ hybridization and spectral karyotyping on the same human metaphases was applied successfully to examine the dynamic profiles of individual telomere shortening and their relationship to chromosome aberrations in multiple human cell lines undergoing immortalization. Human ovarian surface epithelial cells and esophageal epithelial cells were immortalized by the expression of HPV16 E6 and E7, which drive cells to proliferate by inactivating p53 and Rb genes. In these cell lines, we consistently detected large-scale differences in telomere signal intensities not only among nonhomologous chromosome arms but also between some homologous chromosome arms. The cell lines derived from different donors had different profiles of critically short telomeres (lacking telomere signals). Strikingly, the different profiles of chromosomal structural aberrations in multiple immortalized cell lines were highly significantly associated with the distinct distributions of critically short telomeres in whole-genome. Since cellular immortalization is one of the hallmarks of cancer, our findings suggest that distinct profiles of critically short telomeres in different human individuals might play an essential role in determining the complex and individual-specific chromosomal structural aberrations in human solid tumors.

Cell Line, Transformed↗