Obtaining molecular markers for prognostic and diagnosis of cutaneous malignant melanoma. / Obtenção de marcadores moleculares para prognóstico e diagnóstico de melanoma cutâneo maligno.

AUTOR(ES)
DATA DE PUBLICAÇÃO

2009

RESUMO

The incidence of malignant skin melanoma (MM) increases around 2,5 a 4% each year in the world. The main risk factors are family history of MM, multiple benign or atypical nevi, and additional factors such as immunossuppression, sun sensibility and UV exposure. Genomic instability is responsible for a collection of mutations that are frequently involved in malignant transformation, and it can cause alterations in repetitive DNA sequences. There are two ways of studying genomic instability: microsatellites and RAPD (Random Amplified Polymorphic DNA). Through microsatellite instability (MSI) and loss of heterozygosis (LOH) we can separate normal from tumoral tissues. RAPD technique (which is based on PCR) generates fingerprints used for detection of genomic instability, polymorphisms, mutations and translocations that can be compared with fingerprint generated from normal tissue. Studying nine microsatellite, we found an increased MSI (p=0.0132). D9S50 showed the greater number of alterations (28,5%) in nevi and MM. D6S252, D9S52 e D9S180 are candidates for MM prognostic marker for showing alterations (MSI+LOH) in melanomas only. The analysis of 15 RAPD primers in 12 MM samples showed 100% of alteration related to the number or location of the bands. OPA-2 and OPA-14 primers are capable of detecting genetic alterations in MM. In the patterns obtained, two bands which were absent in tumors were found, and they were cloned and submitted to sequencing. These procedures highlighted alterations in loci 9q33 e 12q15. RAPD makes it possible to study the genome without a previous definition of a locus. So we are able to detect alterations so far unknown, increasing our knowledge on tumor genetics.

ASSUNTO(S)

molecular genetics microsatellites microssatélites nevo nervo nevus melanoma genetic instability rapd biotecnologia marcador molecular melanoma nerve molecular markers genética molecular biotechnology rapd instabilidade genética

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