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Dive into the research topics where Wilson A. Silva is active.

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Featured researches published by Wilson A. Silva.


Experimental Hematology | 2008

Multipotent mesenchymal stromal cells obtained from diverse human tissues share functional properties and gene-expression profile with CD146+ perivascular cells and fibroblasts.

Dimas Tadeu Covas; Rodrigo A. Panepucci; Aparecida Maria Fontes; Wilson A. Silva; Maristela Delgado Orellana; Marcela Cristina Corrêa de Freitas; Luciano Neder; Anemari Ramos Dinarte dos Santos; Luiz Cesar Peres; Maria Célia Jamur; Marco A. Zago

OBJECTIVE The relationship of multipotent mesenchymal stromal cells (MSC) with pericytes and fibroblasts has not been established thus far, although they share many markers of primitive marrow stromal cells and the osteogenic, adipogenic, and chondrogenic differentiation potentials. MATERIALS AND METHODS We compared MSCs from adult or fetal tissues, MSC differentiated in vitro, fibroblasts and cultures of retinal pericytes obtained either by separation with anti-CD146 or adhesion. The characterizations included morphological, immunophenotypic, gene-expression profile, and differentiation potential. RESULTS Osteogenic, adipocytic, and chondrocytic differentiation was demonstrated for MSC, retinal perivascular cells, and fibroblasts. Cell morphology and the phenotypes defined by 22 markers were very similar. Analysis of the global gene expression obtained by serial analysis of gene expression for 17 libraries and by reverse transcription polymerase chain reaction of 39 selected genes from 31 different cell cultures, revealed similarities among MSC, retinal perivascular cells, and hepatic stellate cells. Despite this overall similarity, there was a heterogeneous expression of genes related to angiogenesis, in MSC derived from veins, artery, perivascular cells, and fibroblasts. Evaluation of typical pericyte and MSC transcripts, such as NG2, CD146, CD271, and CD140B on CD146 selected perivascular cells and MSC by real-time polymerase chain reaction confirm the relationship between these two cell types. Furthermore, the inverse correlation between fibroblast-specific protein-1 and CD146 transcripts observed on pericytes, MSC, and fibroblasts highlight their potential use as markers of this differentiation pathway. CONCLUSION Our results indicate that human MSC and pericytes are similar cells located in the wall of the vasculature, where they function as cell sources for repair and tissue maintenance, whereas fibroblasts are more differentiated cells with more restricted differentiation potential.


Stem Cells | 2004

COMPARISON OF GENE EXPRESSION OF UMBILICAL CORD VEIN AND BONE MARROW DERIVED MESENCHYMAL STEM CELLS

Rodrigo A. Panepucci; Jorge L.C. Siufi; Wilson A. Silva; Rodrigo Proto‐Siquiera; Luciano Neder; Maristela Delgado Orellana; Vanderson Rocha; Dimas Tadeu Covas; Marco A. Zago

Mesenchymal stem cells (MSCs) give origin to the marrow stromal environment that supports hematopoiesis. These cells present a wide range of differentiation potentials and a complex relationship with hematopoietic stem cells (HSCs) and endothelial cells. In addition to bone marrow (BM), MSCs can be obtained from other sites in the adult or the fetus. We isolate MSCs from the umbilical cord (UC) veins that are morphologically and immunophenotpically similar to MSCs obtained from the BM. In culture, these cells are capable of differentiating in vitro into adipocytes, osteoblasts, and condrocytes. The gene expression profiles of BM‐MSCs and of UC‐MSCs were compared by serial analysis of gene expression, then validated by reverse transcription polymerase chain reaction of selected genes. The two lineages shared almost all of the first thousand most expressed transcripts, including vimentin, galectin 1, osteonectin, collagens, transgelins, annexin A2, and MMP2. Nevertheless, a set of genes related to antimicrobial activity and to osteogenesis was more expressed in BM‐MSCs, whereas higher expression in UC‐MSCs was observed for genes that participate in pathways related to matrix remodeling via metalloproteinases and angiogenesis. Finally, cultured endothelial cells, CD34+ HSCs, MSCs, blood leukocytes, and bulk BM clustered together, separated from seven other normal nonhematopoietic tissues, on the basis of shared expressed genes. MSCs isolated from UC veins are functionally similar to BM‐MSCs, but differentially expressed genes may reflect differences related to their sites of origin: BM‐MSCs would be more committed to osteogenesis, whereas UC‐MSCs would be more committed to angiogenesis.


Stem Cells | 2003

The Profile of Gene Expression of Human Marrow Mesenchymal Stem Cells

Wilson A. Silva; Dimas Tadeu Covas; Rodrigo A. Panepucci; Rodrigo Proto-Siqueira; Jorge L.C. Siufi; Dalila L. Zanette; Anemari Ramos Dinarte dos Santos; Marco A. Zago

Mesenchymal stem cells (MSCs) are multipotent precursors present in adult bone marrow, that differentiate into osteoblasts, adipocytes and myoblasts, and play important roles in hematopoiesis. We examined gene expression of these cells by serial analysis of gene expression, and found that collagen I, secreted protein acidic and rich in cysteine (osteonectin), transforming growth factor beta‐ (TGF‐β) induced, cofilin, galectin‐1, laminin‐receptor 1, cyclophilin A, and matrix metalloproteinase‐2 are among the most abundantly expressed genes. Comparison with a library of CD34+ cells revealed that MSCs had a larger number of expressed genes in the categories of cell adhesion molecule, extracellular and development. The two types of cells share abundant transcripts of many genes, some of which are highly expressed in myeloid progenitors (thymosin‐β4 and β10, fos and jun). Interleukin‐11 (IL‐11), IL‐15, IL‐27 and IL‐10R, IL‐13R and IL‐17R were the most expressed genes among the cytokines and their receptors in MSCs, and various interactions can be predicted with the CD34+ cells. MSCs express several transcripts for various growth factors and genes suggested to be enriched in stem cells. This study reports the profile of gene expression in MSCs and identifies the important contribution of extracellular protein products, adhesion molecules, cell motility, TGF‐β signaling, growth factor receptors, DNA repair, protein folding, and ubiquination as part of their transcriptome.


American Journal of Human Genetics | 2008

Mitochondrial Population Genomics Supports a Single Pre-Clovis Origin with a Coastal Route for the Peopling of the Americas

Nelson Jurandi Rosa Fagundes; Ricardo Kanitz; Roberta Eckert; Ana Carolina Silva e Valls; Maurício Reis Bogo; Francisco M. Salzano; David Glenn Smith; Wilson A. Silva; Marco A. Zago; Andrea K. Ribeiro-dos-Santos; Sidney Santos; Maria Luiza Petzl-Erler; Sandro L. Bonatto

It is well accepted that the Americas were the last continents reached by modern humans, most likely through Beringia. However, the precise time and mode of the colonization of the New World remain hotly disputed issues. Native American populations exhibit almost exclusively five mitochondrial DNA (mtDNA) haplogroups (A-D and X). Haplogroups A-D are also frequent in Asia, suggesting a northeastern Asian origin of these lineages. However, the differential pattern of distribution and frequency of haplogroup X led some to suggest that it may represent an independent migration to the Americas. Here we show, by using 86 complete mitochondrial genomes, that all Native American haplogroups, including haplogroup X, were part of a single founding population, thereby refuting multiple-migration models. A detailed demographic history of the mtDNA sequences estimated with a Bayesian coalescent method indicates a complex model for the peopling of the Americas, in which the initial differentiation from Asian populations ended with a moderate bottleneck in Beringia during the last glacial maximum (LGM), around approximately 23,000 to approximately 19,000 years ago. Toward the end of the LGM, a strong population expansion started approximately 18,000 and finished approximately 15,000 years ago. These results support a pre-Clovis occupation of the New World, suggesting a rapid settlement of the continent along a Pacific coastal route.


Proceedings of the National Academy of Sciences of the United States of America | 2001

The contribution of 700,000 ORF sequence tags to the definition of the human transcriptome

Anamaria A. Camargo; Helena P.B. Samaia; Emmanuel Dias-Neto; Daniel F. Simão; Italo A. Migotto; Marcelo R. S. Briones; Fernando Ferreira Costa; Maria Aparecida Nagai; Sergio Verjovski-Almeida; Marco A. Zago; Luís Eduardo Coelho Andrade; Helaine Carrer; Enilza M. Espreafico; Angelita Habr-Gama; Daniel Giannella-Neto; Gustavo H. Goldman; Arthur Gruber; Christine Hackel; Edna T. Kimura; Rui M. B. Maciel; Suely Kazue Nagahashi Marie; Elizabeth A. L. Martins; Marina P. Nobrega; Maria Luisa Paçó-Larson; Maria Inês de Moura Campos Pardini; Gonçalo Amarante Guimarães Pereira; João Bosco Pesquero; Vanderlei Rodrigues; Silvia Regina Rogatto; Ismael D.C.G. Silva

Open reading frame expressed sequences tags (ORESTES) differ from conventional ESTs by providing sequence data from the central protein coding portion of transcripts. We generated a total of 696,745 ORESTES sequences from 24 human tissues and used a subset of the data that correspond to a set of 15,095 full-length mRNAs as a means of assessing the efficiency of the strategy and its potential contribution to the definition of the human transcriptome. We estimate that ORESTES sampled over 80% of all highly and moderately expressed, and between 40% and 50% of rarely expressed, human genes. In our most thoroughly sequenced tissue, the breast, the 130,000 ORESTES generated are derived from transcripts from an estimated 70% of all genes expressed in that tissue, with an equally efficient representation of both highly and poorly expressed genes. In this respect, we find that the capacity of the ORESTES strategy both for gene discovery and shotgun transcript sequence generation significantly exceeds that of conventional ESTs. The distribution of ORESTES is such that many human transcripts are now represented by a scaffold of partial sequences distributed along the length of each gene product. The experimental joining of the scaffold components, by reverse transcription–PCR, represents a direct route to transcript finishing that may represent a useful alternative to full-length cDNA cloning.


The Journal of Clinical Endocrinology and Metabolism | 2009

MicroRNAs Differentially Expressed in ACTH-Secreting Pituitary Tumors

Fernando Amaral; Natalia Torres; Fabiano Pinto Saggioro; Luciano Neder; Hélio Rubens Machado; Wilson A. Silva; Ayrton C. Moreira; Margaret de Castro

CONTEXT MicroRNAs (miRNAs) are small noncoding RNAs, functioning as antisense regulators of gene expression by targeting mRNA and contributing to cancer development and progression. More than 50% of miRNA genes are located in cancer-associated genomic regions or in fragile sites of the genome. OBJECTIVE The aim of the study was to analyze the differential expression of let-7a, miR-15a, miR-16, miR-21, miR-141, miR-143, miR-145, and miR-150 in corticotropinomas and normal pituitary tissue and verify whether their profile of expression correlates with tumor size or remission after treatment. MATERIAL AND METHODS ACTH-secreting pituitary tumor samples were obtained during transphenoidal surgery from patients with Cushing disease and normal pituitary tissues from autopsies. The relative expression of miRNAs was measured by real-time PCR using RNU44 and RNU49 as endogenous controls. Relative quantification of miRNA expression was calculated using the 2(-DeltaDeltaCt) method. RESULTS We found underexpression of miR-145 (2.0-fold; P = 0.04), miR-21 (2.4-fold; P = 0.004), miR-141 (2.6-fold; P = 0.02), let-7a (3.3-fold; P = 0.003), miR-150 (3.8-fold; P = 0.04), miR-15a (4.5-fold; P = 0.03), miR-16 (5.0-fold; P = 0.004), and miR-143 (6.4-fold; P = 0.004) in ACTH-secreting pituitary tumors when compared to normal pituitary tissues. There were no differences between miRNA expression and tumor size as well as miRNA expression and ratio of remission after surgery, except in patients presenting lower miR-141 expression who showed a better chance of remission. CONCLUSION Our results support the possibility that altered miRNA expression profile might be involved in corticotrophic tumorigenesis. However, the lack of knowledge about miRNA target genes postpones full understanding of the biological functions of down-regulated or up-regulated miRNAs in corticotropinomas.


Proceedings of the National Academy of Sciences of the United States of America | 2003

The generation and utilization of a cancer-oriented representation of the human transcriptome by using expressed sequence tags

Helena Brentani; Otavia L. Caballero; Anamaria A. Camargo; Aline M. da Silva; Wilson A. Silva; Emmanuel Dias Neto; Marco Grivet; Arthur Gruber; Pedro Edson Moreira Guimarães; Winston Hide; Christian Iseli; C. Victor Jongeneel; Janet Kelso; Maria Aparecida Nagai; Elida B. Ojopi; Elisson Osório; Eduardo M. Reis; Gregory J. Riggins; Andrew J.G. Simpson; Sandro J. de Souza; Brian J. Stevenson; Robert L. Strausberg; Eloiza Helena Tajara; Sergio Verjovski-Almeida

Whereas genome sequencing defines the genetic potential of an organism, transcript sequencing defines the utilization of this potential and links the genome with most areas of biology. To exploit the information within the human genome in the fight against cancer, we have deposited some two million expressed sequence tags (ESTs) from human tumors and their corresponding normal tissues in the public databases. The data currently define ≈23,500 genes, of which only ≈1,250 are still represented only by ESTs. Examination of the EST coverage of known cancer-related (CR) genes reveals that <1% do not have corresponding ESTs, indicating that the representation of genes associated with commonly studied tumors is high. The careful recording of the origin of all ESTs we have produced has enabled detailed definition of where the genes they represent are expressed in the human body. More than 100,000 ESTs are available for seven tissues, indicating a surprising variability of gene usage that has led to the discovery of a significant number of genes with restricted expression, and that may thus be therapeutically useful. The ESTs also reveal novel nonsynonymous germline variants (although the one-pass nature of the data necessitates careful validation) and many alternatively spliced transcripts. Although widely exploited by the scientific community, vindicating our totally open source policy, the EST data generated still provide extensive information that remains to be systematically explored, and that may further facilitate progress toward both the understanding and treatment of human cancers.


Stem Cells | 2013

Brief Report: The lincRNA Hotair Is Required for Epithelial-to-Mesenchymal Transition and Stemness Maintenance of Cancer Cell Lines

Cleidson Pádua Alves; Aline Simoneti Fonseca; Bruna Rodrigues Muys; Rafaela de Barros e Lima Bueno; Matheus Carvalho Bürger; Jorge Estefano Santana de Souza; Valeria Valente; Marco A. Zago; Wilson A. Silva

Hotair is a member of the recently described class of noncoding RNAs called lincRNA (large intergenic noncoding RNA). Various studies suggest that Hotair acts regulating epigenetic states by recruiting chromatin‐modifying complexes to specific target sequences that ultimately leads to suppression of several genes. Although Hotair has been associated with metastasis and poor prognosis in different tumor types, a deep characterization of its functions in cancer is still needed. Here, we investigated the role of Hotair in the scenario of epithelial‐to‐mesenchymal transition (EMT) and in the arising and maintenance of cancer stem cells (CSCs). We found that treatment with TGF‐β1 resulted in increased Hotair expression and triggered the EMT program. Interestingly, ablation of Hotair expression by siRNA prevented the EMT program stimulated by TGF‐β1, and also the colony‐forming capacity of colon and breast cancer cells. Furthermore, we observed that the colon CSC subpopulation (CD133+/CD44+) presents much higher levels of Hotair when compared with the non‐stem cell subpopulation. These results indicate that Hotair acts as a key regulator that controls the multiple signaling mechanisms involved in EMT. Altogether, our data suggest that the role of Hotair in tumorigenesis occurs through EMT triggering and stemness acquisition. Stem Cells 2013;31:2827–2832


American Journal of Human Genetics | 2002

Mitochondrial genome diversity of Native Americans supports a single early entry of founder populations into America.

Wilson A. Silva; Sandro L. Bonatto; Adriano J. Holanda; Andrea K. Ribeiro-dos-Santos; Beatriz M. Paixão; Gustavo H. Goldman; Kiyoko Abe-Sandes; Luis Rodriguez-Delfin; Marcela Barbosa; M. L. Paçó-Larson; Maria Luiza Petzl-Erler; Valeria Valente; Sidney Santos; Marco A. Zago

There is general agreement that the Native American founder populations migrated from Asia into America through Beringia sometime during the Pleistocene, but the hypotheses concerning the ages and the number of these migrations and the size of the ancestral populations are surrounded by controversy. DNA sequence variations of several regions of the genome of Native Americans, especially in the mitochondrial DNA (mtDNA) control region, have been studied as a tool to help answer these questions. However, the small number of nucleotides studied and the nonclocklike rate of mtDNA control-region evolution impose several limitations to these results. Here we provide the sequence analysis of a continuous region of 8.8 kb of the mtDNA outside the D-loop for 40 individuals, 30 of whom are Native Americans whose mtDNA belongs to the four founder haplogroups. Haplogroups A, B, and C form monophyletic clades, but the five haplogroup D sequences have unstable positions and usually do not group together. The high degree of similarity in the nucleotide diversity and time of differentiation (i.e., approximately 21,000 years before present) of these four haplogroups support a common origin for these sequences and suggest that the populations who harbor them may also have a common history. Additional evidence supports the idea that this age of differentiation coincides with the process of colonization of the New World and supports the hypothesis of a single and early entry of the ancestral Asian population into the Americas.


American Journal of Human Biology | 1999

African-derived South American populations: A history of symmetrical and asymmetrical matings according to sex revealed by bi- and uni-parental genetic markers.

Maria Cátira Bortolini; Wilson A. Silva; Dinorah Castro de Guerra; Gabriela Remonatto; Rosana Claudia Mirandola; Mara H. Hutz; Tania de Azevedo Weimer; Maria Cristina B.O. Silva; Marco A. Zago; Francisco M. Salzano

Estimates of African, European, and Amerindian contributions to the gene pool of 11 predominantly African‐derived South American populations were obtained using five autosomal and one Y chromosome hypervariable loci, as well as mitochondrial DNA (sequences of the first hypervariable segment of the control region, plus two restriction sites and the presence or absence of the CoII/tRNALys intergenic 9‐bp deletion). The three latter characteristics are reported here for the first time for 42 individuals living in three Brazilian populations. Thirty‐eight sequences were identified in these persons; 17 (45%) could be classified as being of African, 4 (11%) of Amerindian, and 2 (5%) of European origin. Evidence for asymmetrical matings in relation to sex and ethnic group was obtained for nine of the 11 populations. The most consistent finding was the introduction of European genes through males, but the results differ in the several communities, indicating the importance of local factors in such interactions. Am. J. Hum. Biol. 11:551–563, 1999.

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Marco A. Zago

University of São Paulo

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Luciano Neder

University of São Paulo

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