• Je něco špatně v tomto záznamu ?

Novel markers for differentiation of lobular and ductal invasive breast carcinomas by laser microdissection and microarray analysis

Turashvili G, Bouchal J, Baumforth K, Wei W, Dziechciarkova M, Ehrmann J, Klein J, Fridman E, Skarda J, Srovnal J, Hajduch M, Murray P, Kolar Z

. 2007 ; 7 () : 55.

Jazyk angličtina Země Velká Británie

Perzistentní odkaz   https://www.medvik.cz/link/bmc07528016

Grantová podpora
NR7844 MZ0 CEP - Centrální evidence projektů
NR8425 MZ0 CEP - Centrální evidence projektů

BACKGROUND: Invasive ductal and lobular carcinomas (IDC and ILC) are the most common histological types of breast cancer. Clinical follow-up data and metastatic patterns suggest that the development and progression of these tumors are different. The aim of our study was to identify gene expression profiles of IDC and ILC in relation to normal breast epithelial cells. METHODS: We examined 30 samples (normal ductal and lobular cells from 10 patients, IDC cells from 5 patients, ILC cells from 5 patients) microdissected from cryosections of ten mastectomy specimens from postmenopausal patients. Fifty nanograms of total RNA were amplified and labeled by PCR and in vitro transcription. Samples were analysed upon Affymetrix U133 Plus 2.0 Arrays. The expression of seven differentially expressed genes (CDH1, EMP1, DDR1, DVL1, KRT5, KRT6, KRT17) was verified by immunohistochemistry on tissue microarrays. Expression of ASPN mRNA was validated by in situ hybridization on frozen sections, and CTHRC1, ASPN and COL3A1 were tested by PCR. RESULTS: Using GCOS pairwise comparison algorithm and rank products we have identified 84 named genes common to ILC versus normal cell types, 74 named genes common to IDC versus normal cell types, 78 named genes differentially expressed between normal ductal and lobular cells, and 28 named genes between IDC and ILC. Genes distinguishing between IDC and ILC are involved in epithelial-mesenchymal transition, TGF-beta and Wnt signaling. These changes were present in both tumor types but appeared to be more prominent in ILC. Immunohistochemistry for several novel markers (EMP1, DVL1, DDR1) distinguished large sets of IDC from ILC. CONCLUSION: IDC and ILC can be differentiated both at the gene and protein levels. In this study we report two candidate genes, asporin (ASPN) and collagen triple helix repeat containing 1 (CTHRC1) which might be significant in breast carcinogenesis. Besides E-cadherin, the proteins validated on tissue microarrays (EMP1, DVL1, DDR1) may represent novel immunohistochemical markers helpful in distinguishing between IDC and ILC. Further studies with larger sets of patients are needed to verify the gene expression profiles of various histological types of breast cancer in order to determine molecular subclassifications, prognosis and the optimum treatment strategies.

000      
00000naa 2200000 a 4500
001      
bmc07528016
003      
CZ-PrNML
005      
20131009110035.0
008      
090901s2007 xxk e eng||
009      
AR
040    __
$a ABA008 $b cze $c ABA008 $d ABA008 $e AACR2
041    0_
$a eng
044    __
$a xxk
100    1_
$a Turashvili, Gullisa. $7 _AN040279
245    10
$a Novel markers for differentiation of lobular and ductal invasive breast carcinomas by laser microdissection and microarray analysis / $c Turashvili G, Bouchal J, Baumforth K, Wei W, Dziechciarkova M, Ehrmann J, Klein J, Fridman E, Skarda J, Srovnal J, Hajduch M, Murray P, Kolar Z
314    __
$a Laboratory of Molecular Pathology, Institute of Pathology, Palacky University, Olomouc, Czech Republic. guliat@gmail.com <guliat@gmail.com>
520    9_
$a BACKGROUND: Invasive ductal and lobular carcinomas (IDC and ILC) are the most common histological types of breast cancer. Clinical follow-up data and metastatic patterns suggest that the development and progression of these tumors are different. The aim of our study was to identify gene expression profiles of IDC and ILC in relation to normal breast epithelial cells. METHODS: We examined 30 samples (normal ductal and lobular cells from 10 patients, IDC cells from 5 patients, ILC cells from 5 patients) microdissected from cryosections of ten mastectomy specimens from postmenopausal patients. Fifty nanograms of total RNA were amplified and labeled by PCR and in vitro transcription. Samples were analysed upon Affymetrix U133 Plus 2.0 Arrays. The expression of seven differentially expressed genes (CDH1, EMP1, DDR1, DVL1, KRT5, KRT6, KRT17) was verified by immunohistochemistry on tissue microarrays. Expression of ASPN mRNA was validated by in situ hybridization on frozen sections, and CTHRC1, ASPN and COL3A1 were tested by PCR. RESULTS: Using GCOS pairwise comparison algorithm and rank products we have identified 84 named genes common to ILC versus normal cell types, 74 named genes common to IDC versus normal cell types, 78 named genes differentially expressed between normal ductal and lobular cells, and 28 named genes between IDC and ILC. Genes distinguishing between IDC and ILC are involved in epithelial-mesenchymal transition, TGF-beta and Wnt signaling. These changes were present in both tumor types but appeared to be more prominent in ILC. Immunohistochemistry for several novel markers (EMP1, DVL1, DDR1) distinguished large sets of IDC from ILC. CONCLUSION: IDC and ILC can be differentiated both at the gene and protein levels. In this study we report two candidate genes, asporin (ASPN) and collagen triple helix repeat containing 1 (CTHRC1) which might be significant in breast carcinogenesis. Besides E-cadherin, the proteins validated on tissue microarrays (EMP1, DVL1, DDR1) may represent novel immunohistochemical markers helpful in distinguishing between IDC and ILC. Further studies with larger sets of patients are needed to verify the gene expression profiles of various histological types of breast cancer in order to determine molecular subclassifications, prognosis and the optimum treatment strategies.
650    _2
$a financování organizované $7 D005381
650    _2
$a biologické markery $7 D015415
650    _2
$a prsy $x metabolismus $7 D001940
650    _2
$a nádory prsu $x genetika $x patologie $7 D001943
650    _2
$a kadheriny $x genetika $7 D015820
650    _2
$a duktální karcinom prsu $x genetika $x patologie $7 D018270
650    _2
$a lobulární karcinom $x genetika $x patologie $7 D018275
650    _2
$a kolagen typ III $x genetika $7 D024061
650    _2
$a extracelulární matrix - proteiny $x genetika $7 D016326
650    _2
$a ženské pohlaví $7 D005260
650    _2
$a lidé $7 D006801
650    _2
$a imunohistochemie $7 D007150
650    _2
$a hybridizace in situ $7 D017403
650    _2
$a lasery $7 D007834
650    _2
$a mikrodisekce $x metody $7 D042282
650    _2
$a čipová analýza tkání $x metody $7 D046888
700    1_
$a Bouchal, Jan, $d 1973- $7 xx0034399
700    1_
$a Baumforth, Karl
700    1_
$a Wei, Wenbin
700    1_
$a Dziechciarková, Marta $7 xx0080459
700    1_
$a Ehrmann, Jiří, $d 1967- $7 jo2003163162
700    1_
$a Klein, Jiří, $d 1963- $7 xx0047429
700    1_
$a Fridman, Eduard
700    1_
$a Škarda, Jozef $7 xx0098446
700    1_
$a Srovnal, Josef $7 xx0091239
700    1_
$a Hajdúch, Marián, $d 1969- $7 xx0050218
700    1_
$a Murray, Paul
700    1_
$a Kolář, Zdeněk, $d 1953- $7 jn20000710256
773    0_
$w MED00008171 $t BMC cancer $g Roč. 7(2007), s. 55 $x 1471-2407
910    __
$a ABA008 $b x $y 9 $z 0
990    __
$a 20090824163150 $b ABA008
991    __
$a 20131009110557 $b ABA008
999    __
$a ok $b bmc $g 673556 $s 532821
BAS    __
$a 3
BMC    __
$a 2007 $b 7 $d 55 $i 1471-2407 $m BMC cancer $x MED00008171
GRA    __
$a NR7844 $p MZ0
GRA    __
$a NR8425 $p MZ0
LZP    __
$a 2009-B4/vtme

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...