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Biomedical subjects

Masao Seto

Publications and source records attributed to Masao Seto.

At least 37 records · Page 2Linked to original sources

Identification and characterization of a novel gene, C13orf25, as a target for 13q31-q32 amplification in malignant lymphoma.

The amplification at 13q31-q32 has been reported in not only hematopoietic malignancies but also in other solid tumors. We identified previously frequent amplification of chromosomal band 13q31-q32 in 70 cases of diffuse large B-cell lymphoma patients by conventional comparative genomic hybridization analysis. In an attempt to identify a candidate gene within this region, we used array comparative genomic hybridization and fluorescent in situ hybridization to map the 13q31-q32 amplicon. We then screened the 65 expressed sequence tags and Glypican 5 (GPC5) by reverse transcription-PCR and Northern blotting. As a result, we identified a novel gene, designated Chromosome 13 open reading frame 25 (C13orf25), which was overexpressed in B-cell lymphoma cell lines and diffuse large B-cell lymphoma patients with 13q31-q32 amplifications. However, GPC5, which has been reported to be a target gene for 13q31-q32 amplification, was truncated in one cell line, Rec1, possessing the amplification, and its expression in various cell lines with amplification at 13q31-q32 was not significantly different from that in other cell lines without amplification, suggesting that GPC5 is not likely to be the candidate gene. Additional analysis identified two major transcripts in the C13orf25 gene. The two transcripts A and B predicted open reading frames of 32 and 70-amino acid polypeptides, respectively. The former has been reported as bA121J7.2, which is conserved among species. Transcript-B also contained seven mature microRNAs in its untranslated region. These results suggest that the C13orf25 gene is the most likely candidate gene for the 13q31-q32 amplicon found in hematopoietic malignancies.

Amino Acid Sequence↗

MASL1, a candidate oncogene found in amplification at 8p23.1, is translocated in immunoblastic B-cell lymphoma cell line OCI-LY8.

Genetic amplification at chromosome 8p23.1 has been reported in some solid tumors. Translocation of 8p23.1 has also been reported in hematological malignancies and head and neck squamous cell cancer. In an attempt to clarify whether this translocation is implicated in lymphomagenesis, we performed FISH analysis of the immunoblastic B-cell lymphoma cell line OCI-LY8, which has chromosome translocation at 8p23.1, with various BAC clones. We found split signals on BAC, RP11-18L2 where the MASL1 gene is located. This translocation was found to produce a chimeric transcript of MASL1 exon 1 with a cryptic exon from the genome region at 14q21. Our study indicates that MASL1 is not only a target gene for genomic amplification but also for chromosomal translocation. Since tumorigenic activity of the MASL1 has not been proven, its in vitro transforming activity was studied and in vivo nude mice assay were performed. Although no in vitro transforming activity was detected by focus formation, the in vivo tumorigenesis assay with nude mice showed that both MASL1 and chimeric MASL1 possess tumorigenic activity. This suggests that MASL1 is an important oncogene not only for solid tumors but also for hematologic malignancies.

Animals↗

Methylenetetrahydrofolate reductase gene (MTHFR) polymorphisms and reduced risk of malignant lymphoma.

Folate and methionine are important nutrients in the "one-carbon" metabolism that is closely associated with DNA synthesis and DNA methylation. Genetic variation in these pathways may change susceptibility to cancer development. We have previously reported associations between lymphoma risk and germline polymorphisms in genes of methylenetetrahydrofolate reductase (MTHFR C677T and A1298C) and methionine synthase (MTR A2756G), finding the genotype other than the MTHFR 677CC/1298AA to confer a half-risk compared to the MTHFR 677CC/1298AA and a 3-fold higher risk with the MTR GG genotype than the AA/AG genotypes. To confirm the association and explore the histological difference, we extended the previous case series. A case-control study was conducted in Japan with a total of 372 lymphoma cases and 500 noncancer controls examined for genotypes. The relative risks were estimated by unconditional logistic regression analysis. In overall analyses, the age-sex adjusted odds ratio (OR) for the subjects harboring MTHFR 677T or 1298C alleles relative to 677CC/1298AA genotype was 0.58 (95% confidence interval: 0.41-0.83, P = 0.002). The MTR GG genotype showed an OR of 1.75 (0.87-3.52, P = 0.114). These findings were validated in separate analyses of the 273 new incident cases. Subgroup analyses according to histological subtype [diffuse large B-cell lymphoma (DLB), follicular lymphoma (FL), low-grade lymphoma of mucosa associated lymphoid tissue (MALT), and others] illustrated similar associations with certain exceptions for FL and MALT. Our data showed an association between the MTHFR polymorphisms and malignant lymphoma risk for all histological subtypes, although the extent of contribution of these polymorphisms may differ somewhat with histological subtype. Lack of association with MTR polymorphism was also confirmed.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Analysis of chromosomal imbalances in de novo CD5-positive diffuse large-B-cell lymphoma detected by comparative genomic hybridization.

We recently demonstrated that the prognosis for de novo CD5-positive (CD5+) diffuse large-B-cell lymphoma (DLBCL) is markedly worse than that for CD5-negative (CD5-) DLBCL. Our findings also suggested that on the basis of its clinical features CD5+ DLBCL may constitute a unique disease category. However, the genetic basis for these two categories has not been established. Therefore, we performed comparative genomic hybridization analysis (CGH) of 26 cases of CD5+ DLBCL and 44 cases of CD5- DLBCL. Several identical changes in CD5+ and CD5- DLBCLs were found, such as gains of 3q, 9p, 12q, 13q, and 18q and losses of 1p, 6q, 17p, and 19p. However, distinct differences between the two categories were also detected. These included gains of 11q21-q24 (P=0.032) and 16p (P=0.005) in CD5+ DLBCL, and loss of 16p (P=0.028) in CD5- DLBCL. A comparison with results reported for mantle cell lymphoma, chronic lymphocytic leukemia, and Richter's syndrome demonstrated that the CGH pattern of CD5+ DLBCL was markedly different. This indicates that CD5+ DLBCL constitutes a disease category distinct from that of CD5- DLBCL and other CD5+ malignancies.

Adult↗

Lack of association between DNA base excision repair gene XRCC1 Gln399Arg polymorphism and risk of malignant lymphoma in Japan.

Growing evidence suggests that the polymorphism of DNA base excision repair gene XRCC1 Arg399Gln is associated with altered DNA repair proficiency and subsequent cancer susceptibility; however, no evidence is available for malignant lymphoma. We therefore conducted a case-control study (372 cases, 500 controls) to evaluate links with malignant lymphoma risk in Japan. The risk was evaluated in terms of odds ratio (OR) and 95% confidence interval (CI) adjusted for age and sex in an unconditional logistic regression model. There was no statistical risk change with the Arg/Gln (adjusted OR 0.89; 0.65-1.23, P = 0.492) or the Gln/Gln (0.57; 0.27-1.17, P = 0.127) compared with the Arg/Arg of the XRCC1 Arg399Gln polymorphism. The results were unchanged in analyses according to histological subtype (diffuse large lymphoma, follicular lymphoma, low-grade lymphoma of mucosa-associated lymphoid tissue, and others). These data suggest that XRCC1 Gln399Arg polymorphism plays a limited role in lymphomagenesis. Further study on the interaction between the polymorphism and environmental exposure is required.

Adolescent↗

Molecular-cytogenetic characterization of non-Hodgkin's lymphoma with double and cryptic translocations of the immunoglobulin heavy chain gene.

The present study aimed to characterize the clinical and molecular-cytogenetic features of non-Hodgkin's lymphoma (NHL) with double translocation of the immunoglobulin heavy chain (IGH) gene. G-banding analysis, fluorescence in situ hybridization (FISH) with the IGH (Cgamma and VH) and oncogene (c-MYC, BCL1, BCL2, and BCL6) probes, and long-distance polymerase chain reaction (LD-PCR) were performed on 6 patients with B-cell lymphoma, one with angioimmunoblastic T-cell lymphoma, and one with acute lymphoblastic leukemia (ALL) with B-cell phenotype. G-banding analysis detected two different 14q32 translocations, t(14,18) and add (14)(q32) in a patient with ALL. Two distinct partners of double IGH translocation identified by FISH were as follows: c-MYC + BCL2 in 3 patients, c-MYC + BCL1 in 2, c-MYC + BCL6 in one, BCL2 + 9q22 in one, and 1q21 + 6q27 in one. Colocalization of BCL1 and c-MYC probes was demonstrated in a patient with mantle cell lymphoma. LD-PCR detected c-MYC/Cmu, c-MYC/Calpha and BCL6/Cmu, and c-MYC/Calpha fusion in each one patient. Seven of 8 patients showed high serum LDH. Central nervous system and leukemic involvement was observed in 5 and 6 patients, respectively. Median survival time of patients with c-MYC/IGH translocation was 9 months. The results defined a clinical subset of B-cell lymphoma/leukemia showing extremely poor prognosis. C-MYC/IGH translocation is possibly an evolutionary alteration following the primary IGH translocation with BCL1, BCL2, or BCL6. Furthermore, FISH identified one novel (9q22) and one cryptic chromosomal breakpoints (6q27) involved in IGH translocation.

Adult↗

Gastric MALT lymphomas are divided into three groups based on responsiveness to Helicobacter Pylori eradication and detection of API2-MALT1 fusion.

Gastric MALT lymphoma shows unique features including regression by Helicobacter pylori eradication and API2-MALT1 fusion. We performed a molecular and clinicopathologic study for 115 cases. All eradication-responsive cases were devoid of API2-MALT1 fusion. All tumors positive for the fusion and all negative for H. pylori infection were nonresponsive to the eradication. Consequently, gastric MALT lymphomas were divided into three groups: Eradication-responsive and fusion-negative (group A, n = 72), eradication-nonresponsive and fusion-negative (group B, n = 22), and eradication-nonresponsive and fusion-positive (group C, n = 21). Group A tumors were characterized by low clinical stage and superficial gastric wall involvement, and group C tumors by low H. pylori infection rate, advanced clinical stage, and nuclear BCL10 expression. All group C tumors showed exclusively low-grade histology. Group B tumors, which have not been well recognized, frequently showed nodal involvement, deep gastric wall involvement, and advanced clinical stage, and sometimes an increased large cell component. A multivariate discriminant analysis revealed that responsiveness to the eradication could be predicted accurately by negative API2-MALT1 fusion, positive H. pylori infection, low clinical stage, and superficial gastric wall invasion, the former being the most important factor for the prediction. This 3-group categorization may be helpful for a comprehensive understanding of gastric MALT lymphoma.

Adaptor Proteins, Signal Transducing↗

Comparison of genetic aberrations in CD10+ diffused large B-cell lymphoma and follicular lymphoma by comparative genomic hybridization and tissue-fluorescence in situ hybridization.

CD10 is one of the hallmarks of germinal center B-cells where follicular lymphomas (FL) originate. It has not been clearly established, however, whether CD10(+) diffuse B-cell lymphomas (DLBCL) are genetically similar to FL. We therefore examined 19 CD10(+) DLBCL and 40 FL by means of comparative genomic hybridization (CGH) and tissue-fluorescence in situ hybridization (T-FISH). Chromosomal imbalance was more frequently detected in CD10(+) DLBCLs (19/19) than in FLs (24/40). Significant differences were found in eight frequently imbalanced regions, namely those with gains of chromosomes 7q and 12 and those with losses of chromosomes 1p, 4p, 6q, 15q, 16p and 17. Amplification of the 3q region where BCL6 is located is reported to occur frequently in DLBCL, but it was only found in one of the 19 CD10(+) DLBCL cases we examined. The involvement of t(14;18) in CD10(+)+ DLBCL (31%) and in FL (73%) was significantly different (P = 0.0064). The CGH pattern of CD10(+) DLBCL with t(14;18) was also different from that of FL with t(14;18). Taken together, our results indicate that CD10(+) DLBCL constitutes a unique subtype entity with genetic characteristics significantly different from those of FL and DLBCL.

Aged↗

Genetic and epigenetic factors involved in B-cell lymphomagenesis.

Malignant lymphomas have been classified by the WHO into disease categories based not only on histological features, but also on cell surface markers, cytogenetic and clinical features. It is known that chromosome translocation plays an important role in lymphoma development, but it is not entirely clear yet why a given type of chromosome translocation is associated with a specific type of lymphoma. This review deals with molecular mechanisms of B-cell lymphoma development in association with chromosome translocations. The outcome of chromosome translocations can be categorized into three factors: enhancement of proliferation, inhibition of differentiation and anti-apoptotic activity. It is well known that chromosome translocation by itself cannot cause cells to become malignant because it is only one of the growth advantages leading to malignancy, while additional genetic and epigenetic alterations are required for cells to become fully malignant. Mucosa-associated lymphoid tissue (MALT) lymphomas of the stomach are unique in that a majority can be cured by Helicobacter pylori eradication, although 20 to 30% remain resistant. Others as well as we have demonstrated that the presence of the API2-MALT1 chimeric gene correlates well with resistance to H. pylori eradication treatment. These characteristics have led to the speculation that the classification of MALT lymphoma falls somewhere between tumor and inflammation. Although MALT lymphoma seems to have unique features in comparison with other types of B-cell lymphomas, it shares common molecular mechanisms with B-cell lymphoma development.

Animals↗

Nuclear factor kappaB activation and antiapoptosis in mucosa-associated lymphoid tissue lymphoma.

Three distinct chromosomal translocations, t(11;18), t(1;14), and t(14;18), involving the API2-MALT1 fusion protein, BCL10, and MALT1 have been convincingly implicated in the pathogenesis of mucosa-associated lymphoid tissue (MALT) lymphomas. Recent genetic and biochemical studies have indicated that BCL10 and MALT1 form a physical and functional complex and are both essential for nuclear factor kappaB (NF-kappaB) activation by antigen receptor stimulation in lymphocytes. API2-MALT1 can bypass the BCL10/MALT1 pathway linking to NF-kappaB activation, thereby inducing antigen receptor-independent events of lymphocytes. BCL10/MALT1- and API2-MALT1-induced NF-kappaB activation can be assumed to be able to contribute to antiapoptosis, probably through NF-kappaB-mediated up-regulation of several apoptotic inhibitor genes. We also have provided direct evidence that API2-MALT1 can exert an antiapoptotic effect, in part through its direct interaction with apoptotic regulators. We therefore hypothesize that the antiapoptotic effect of API2-MALT1 may be mediated by the interaction with apoptotic regulators as well as by the up-regulation of apoptotic inhibitor genes. Finally, we hope that further studies will stimulate research leading to the development of therapeutic drugs that specifically inhibit the antigen receptor-stimulated NF-kappaB activation pathway. Such drugs should be useful for interfering with inappropriate proliferation of lymphocytes associated with inflammatory and neoplastic disorders, including MALT lymphomas.

Apoptosis↗

Highly efficient delivery of p16 antitumor peptide into aggressive leukemia/lymphoma cells using a novel transporter system.

Molecular targeting of hematopoietic malignancies has been generally hindered by technological obstacles to gene delivery in the neoplastic cells. The development of peptide delivery systems based on protein transduction domains has recently gained attention as a means of potentially overcoming these impediments. Here, we present a novel peptide transporter system that increases the efficiency of peptide delivery more than 10 times compared with the previous methods. The transporter, Wr-T, has an enlarged hydrophobic pocket consisting of triple tryptophan-rich domains fused with nine d-enantiomer polyarginines (r9) via Gly-Pro-Gly spacer, which serves to augment delivery of a cargo peptide. Wr-T-mediated transport of p16(INK4a) functional peptide dramatically inhibits growth of highly aggressive leukemia/lymphomas by up to 80% through restoration of p16 function. The Wr-T system thus represents a highly effective approach to cargo peptide delivery with the potential for substantially developing p16 peptide-based therapy for hematopoietic malignancies.

Animals↗

Stability and subcellular localization of API2-MALT1 chimeric protein involved in t(11;18) (q21;q21) MALT lymphoma.

t(11; 18) (q21; q21) is a chromosomal aberration specific to low-grade mucosa-associated lymphoid tissue (MALT) lymphoma, and generates the chimeric product apoptosis inhibitor 2 (API2)-MALT1, which has been suggested to play an important role in MALT lymphomagenesis. However, little is known about the characteristics of API2, MALT1, and API2-MALT1 proteins. We therefore investigated the subcellular localization and stability of these products. API2 was localized in the nucleus and the cytoplasm, and MALT1 and API2-MALT1 in the cytoplasm only. Western blot analysis showed that the products of API2 and MALT1 were unstable, while the API2-MALT1 product was stable. The API2 deletion mutants at the end of the C-terminal and the MALT1 deletion mutants at the end of the N-terminal were stable compared with the full-length products. These results indicate that the domains responsible for protein instability are located in the end of the C-terminal of API2 and in that of the N-terminal of MALT1, and also that API2-MALT1 became stable because it lacks these domains. It has been suggested that NF-kappaB activation plays an important role in the tumorigenesis of MALT lymphoma. Our findings further suggest that the stabilized expression of API2-MALT1 products may continuously stimulate the NF-kappaB activating pathway, thus leading to MALT lymphomagenesis.

Animals↗

Detection of t(11;18)(q21;q21) in marginal zone lymphoma of mucosa-associated lymphocytic tissue type on paraffin-embedded tissue sections by using fluorescence in situ hybridization.

A chromosomal t(11;18)(q21;q21) recurrently found in marginal zone lymphomas of mucosa-associated lymphocytic tissue (MALT) type is one of the key determinants of their treatment and outcome because t(11;18)-positive cases are resistant to Helicobacter pylori eradication therapy. To detect t(11;18) on paraffin-embedded tissue sections, we established a method of dual-color fluorescence in situ hybridization (D-FISH) using DNA probes directly labeled with SpectrumGreen and SpectrumOrange (tissue-FISH [T-FISH]). T-FISH detected the t(11;18) as colocalized signals between the band-specific yeast artificial chromosome (YAC) clones y966e4 (11q21) and y943b8 (18q21) on the der(11)t(11;18). The t(11;18) was detected in four of 22 patients with marginal zone lymphoma of MALT type in 72%-78% of the cells. In both patients studied, the percentage of t(11;18)-positive cells was much higher in tissue-FISH analysis than in interphase-FISH: 74% versus 30% in patient 1 and 75% versus 31% in patient 4. None of the 12 patients with diffuse large B-cell lymphoma of the stomach showed the t(11;18). Tissue-FISH is a powerful tool for the diagnosis of marginal zone lymphoma of MALT type because it can be applied not only to small specimens obtained from endoscopic biopsy samples but also to archival materials, hence facilitating the delineation of subtypes in marginal zone lymphoma of MALT type.

Adult↗

Prognostic significance of CD7+CD56+ phenotype and chromosome 5 abnormalities for acute myeloid leukemia M0.

Myeloid/natural killer (NK) cell precursor acute leukemia is an entity of acute leukemia characterized by poor prognosis and a CD7+CD56+ myeloid antigen+ phenotype without light-microscopic myeloperoxidase reactivity. This disease shares several clinical characteristics with acute myeloid leukemia (AML) M0. To clarify the relationship between these 2 leukemias, we analyzed 105 cases of AML M0. Among them, 17 were CD7+ and CD56+, 77 were negative for either antigen, and 11 could not be determined. CD7+CD56+ AML M0 showed onset at significantly lower patient age (median 46 versus 63 years, P = .004). The disease localization and the hematological manifestations were significantly different: CD7+CD56+ AML showed more frequent extramedullary involvement, fewer circulating leukemic blasts, less anemia, and less thrombocytopenia than did AML M0. The cytogenetic aberrations were also unique, because no 5q abnormalities were found in CD7+CD56+ M0. The prognosis of CD7+CD56+ M0 was poor in patients younger than 46 years (P = .03). Multivariate analysis showed that the CD7+CD56+ phenotype was a significant prognostic factor for AML M0, as well as age, circulating blast percentage, and chromosome 5 abnormalities These findings suggest that AML M0 consists of heterogeneous subgroups to be managed separately, and CD7+CD56+ M0 constitutes a distinct subtype of AML M0.

Acute Disease↗

Gastric low-grade B-cell MALT lymphoma: treatment, response, and genetic alteration.

Approximately 10% of gastric low-grade B-cell lymphomas of mucosa-associated lymphoid tissue (MALT) type are unresponsive to Helicobacter pylori ( H. pylori) eradication treatment, and many of them contain an API2-MALT1 chimeric transcript mediated by t(11;18)(q21;q21) translocation. We here review the current status on the interrelationship among clinical features, H. pylori infection status, responsiveness to antibacterial treatment, and API2-MALT1 chimeric transcript of gastric MALT lymphoma in a unicenter study experience and discuss the clinicopathologic significance of API2-MALT1 chimeric transcript in gastric MALT lymphoma. We enrolled 59 patients with gastric MALT lymphoma in a unicenter study. H. pylori infection status and clinical stages were investigated. Antibacterial treatment and subsequent follow-up endoscopy were performed for the assessment of responsiveness of MALT lymphoma in every patient. All cases were examined for API2-MALT1 chimeric transcript by means of RT-PCR and sequencing analyses using RNA extracted from tissues. H. pylori infection status was assessed as positive in 50 patients and negative in 9. Antibacterial treatment achieved complete or partial remission in 41 patients and no change in 12. API2-MALT1 chimeric transcript was detected in 9 patients, all of whom showed no change in response to treatment. Notably, responsiveness to H. pylori eradication treatment most clearly delineated the enrolled cases into two groups, indicating that six factors ( H. pylori infection, API2-MALT1 chimeric transcript, cobblestone mucosa and submucosal tumor in gross appearance, nodal involvement, and clinical stage) were statistically significant. On the other hand, comparison of two groups from the standpoint of H. pylori or API2-MALT1 chimeric transcript status revealed a lesser number of the statistically significant factors (two and three, respectively). Gastric MALT lymphoma characterized by unresponsiveness to antibacterial treatment contains all API2-MALT1 chimeric transcript-positive cases and may constitute a distinct group often seen with nodal involvement and an advanced clinical stage. This group is thought to be unrelated to H. pylori infection in its pathogenesis, and might share a unifying feature of genetic alteration such as involving the MALT1 locus on chromosome 18. Investigation in the future will clarify this issue and establish the clinical implication of such genetic alteration as the predictive factor for gastric MALT lymphoma.

Chromosome Aberrations↗

Selection of causal gene sets for lymphoma prognostication from expression profiling and construction of prognostic fuzzy neural network models.

To assess the response of lymphomas to chemotherapy, gene expression profiling data from DNA microarrays were analyzed using the fuzzy neural network (FNN) modeling method. We used the FNN modeling method to produce 10 noninferior models. Using these models, we were able to predict diffuse large B-cell lymphoma (DLBCL) patient outcome with 93% accuracy. Of the 37 genes in the 10 models, 13 genes were repeatedly selected, indicating that these genes are important for prognostication. On Kaplan-Meier plots of overall survival, patients predicted by the FNN model to be cured survived significantly longer than those predicted to be refractory (P<0.0001), indicating that the FNN could successfully identify patients with a relatively poor prognosis among low-clinical-risk patients. The FNN modeling method presented here is able to precisely extract significant biological markers affecting prognosis.

Journal Article↗

Multiple fuzzy neural network system for outcome prediction and classification of 220 lymphoma patients on the basis of molecular profiling.

A fuzzy neural network (FNN) using gene expression profile data can select combinations of genes from thousands of genes, and is applicable to predict outcome for cancer patients after chemotherapy. However, wide clinical heterogeneity reduces the accuracy of prediction. To overcome this problem, we have proposed an FNN system based on majoritarian decision using multiple noninferior models. We used transcriptional profiling data, which were obtained from "Lymphochip" DNA microarrays (http://llmpp.nih.gov/DLBCL), reported by Rosenwald (N Engl J Med 2002; 346: 1937-47). When the data were analyzed by our FNN system, accuracy (73.4%) of outcome prediction using only 1 FNN model with 4 genes was higher than that (68.5%) of the Cox model using 17 genes. Higher accuracy (91%) was obtained when an FNN system with 9 noninferior models, consisting of 35 independent genes, was used. The genes selected by the system included genes that are informative in the prognosis of Diffuse large B-cell lymphoma (DLBCL), such as genes showing an expression pattern similar to that of CD10 and BCL-6 or similar to that of IRF-4 and BCL-4. We classified 220 DLBCL patients into 5 groups using the prediction results of 9 FNN models. These groups may correspond to DLBCL subtypes. In group A containing half of the 220 patients, patients with poor outcome were found to satisfy 2 rules, i.e., high expression of MAX dimerization with high expression of unknown A (LC_26146), or high expression of MAX dimerization with low expression of unknown B (LC_33144). The present paper is the first to describe the multiple noninferior FNN modeling system. This system is a powerful tool for predicting outcome and classifying patients, and is applicable to other heterogeneous diseases.

Cluster Analysis↗