• 제목/요약/키워드: LCN DNA

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Evaluation of DNA Extraction Methods from Low Copy Number (LCN) DNA Samples for Forensic DNA Typing

  • Eom, Yong-Bin
    • 대한의생명과학회지
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    • 제15권3호
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    • pp.229-232
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    • 2009
  • DNA isolation for PCR-based short tandem repeat (STR) analysis is essential to recover high yields of amplifiable DNA from low copy number (LCN) DNA samples. There are different methods developed for DNA extraction from the small bloodstain and gloves, commonly found at crime scenes. In order to obtain STR profiles from LCN DNA samples, DNA extraction protocols, namely the automated $iPrep^{TM}$ $ChargeSwitch^{(R)}$ method, the automated $QIAcube^{TM}$ method, the automated $Maxwell^{(R)}$ 16 DNA $IQ^{TM}$ Resin method, and the manual $QIAamp^{(R)}$ DNA Micro Kit method, were evaluated. Extracted DNA was quantified by the $Quantifiler^{TM}$ Human DNA Quantification Kit and DNA profiled by $AmpFISTR^{(R)}$ $Identifiler^{(R)}$ Kit. Results were compared based on the amount of DNA obtained and the completeness of the STR profiles produced. The automated $iPrep^{TM}$ $ChargeSwitch^{(R)}$ and $QIAcube^{TM}$ methoas produced reproducible DNA of sufficient quantity and quality trom the dried blood spot. This two automated methods showed a quantity and quality comparable to those of the forensic manual standard protocols normally used in our laboratory. In our hands, the automated DNA extraction method is another obvious choice when the forensic case sample available is bloodstain. The findings of this study indicate that the manual simple modified $QIAamp^{(R)}$ DNA Micro Kit method is best method to recover high yields of amplifiable DNA from the numerous potential sources of LCN DNA samples.

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총기 흔적흔에서의 low copy number(LCN) DNA 검출에 관한 연구 (Research on the detection of LCN DNA from traces on firearms)

  • 전충현;박성우
    • 분석과학
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    • 제24권1호
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    • pp.51-59
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    • 2011
  • 유전자 감식은 다양한 범죄현장에서 발견되는 생체시료의 분석을 통해 신원을 식별하는 중요한 법과학적 수사과정으로 자리 잡았다. 최근에는 범인이 사용했던 펜, 뺑소니 차량에서의 핸들, 기어, 각종 버튼스위치 등에 남겨져 있는 touch evidence-type sample로 알려져 있는 low copy number (LCN) DNA에서의 A-STR분석을 위해 의뢰되는 감정물들이 증가하는 추세에 있다. 본 연구에서는 총기의 뭉개진 지문 등에 남겨져 있는 touch evidence-type의 LCN DNA를 추출하고 유전자형의 분석 성공률을 확인하고 자 하였다. 4종류의 총기(M16, K1A, COLT 45 권총, M29 리볼버)를 각각 격발한 후 총기별로 4곳의 부위에서 시료를 채취한 다음 LCN DNA의 추출을 위해 Microkit과 $Prepfiler^{TM}$ 등 2종류의 시약을 이용하여 DNA 검출량과 유전자형 분석 성공률을 비교 분석하였다. 분석결과 $Prepfiler^{TM}$가 Microkit에 비해 평균 1.7배 DNA검출량이 많았으며, 유전자형 분석 성공률에 있어서도 Microkit은 0%인데 비해 $Prepfiler^{TM}$에서는 평균 24.9%의 성공률을 보였으며, K1A의 손잡이 부위에서 50.6%의 성공률을 나타냈다.

LCN2 Promoter Methylation Status as Novel Predictive Marker for Microvessel Density and Aggressive Tumor Phenotype in Breast Cancer Patients

  • Meka, Phanni bhushann;Jarjapu, Sarika;Nanchari, Santhoshi Rani;Vishwakarma, Sandeep Kumar;Edathara, Prajitha Mohandas;Gorre, Manjula;Cingeetham, Anuradha;Vuree, Sugunakar;Annamaneni, Sandhya;Dunna, Nageswara Rao;Mukta, Srinivasulu;Triveni, B;Satti, Vishnupriya
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권12호
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    • pp.4965-4969
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    • 2015
  • LCN2 (Lipocalin 2) is a 25 KD secreted acute phase protein, reported to be a novel regulator of angiogenesis in breast cancer. Up regulation of LCN2 had been observed in multiple cancers including breast cancer, pancreatic cancer and ovarian cancer. However, the role of LCN2 promoter methylation in the formation of microvessels is poorly understood. The aim of this study was to analyze the association of LCN 2 promoter methylation with microvessel formation and tumor cell proliferation in breast cancer patients. The LCN2 promoter methylation status was studied in 64 breast cancer tumors by methylation specific PCR (MSP). Evaluation of microvessel density (MVD) and Ki67 cell proliferation index was achieved by immunohistochemical staining using CD34 and MIB-1 antibodies, respectively. LCN2 promoter unmethylation status was observed in 43 (67.2%) of breast cancer patients whereas LCN2 methylation status was seen in 21 (32.8%). Further, LCN2 promoter unmethylation status was associated with aggressive tumor phenotype and elevated mean MVD in breast cancer patients.

Effect of NUCKS-1 Overexpression on Cytokine Profiling in Obese Women with Breast Cancer

  • Soliman, Nema Ali;Zineldeen, Doaa Hussein;El-Khadrawy, Osama Helmy
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권2호
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    • pp.837-845
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    • 2014
  • Background: Overweight and obesity are recognized as major drivers of cancers including breast cancer. Several cytokines, including interleukin-6 (IL-6), IL-10 and lipocalin 2 (LCN2), as well as dysregulated cell cycle proteins are implicated in breast carcinogenesis. The nuclear, casein kinase and cyclin-dependent kinase substrate-1 (NUCKS-1), is a nuclear DNA-binding protein that has been implicated in several human cancers, including breast cancer. Objectives: The present study was conducted to evaluate NUCKS-1 mRNA expression in breast tissue from obese patients with and without breast cancer and lean controls. NUCKS-1 expression was correlated to cytokine profiles as prognostic and monitoring tools for breast cancer, providing a molecular basis for a causal link between obesity and risk. Materials and Methods: This study included 39 females with breast cancer (G III) that was furtherly subdivided into two subgroups according to cancer grading (G IIIa and G IIIb) and 10 control obese females (G II) in addition to 10 age-matched healthy lean controls (G I). NUCKS-1 expression was studied in breast tissue biopsies by means of real-time PCR (RT-PCR). Serum cytokine profiles were determined by immunoassay. Lipid profiles and glycemic status as well as anthropometric measures were also recorded for all participants. Results: IL-6, IL-12 and LCN2 were significantly higher in control obese and breast cancer group than their relevant lean controls (p<0.05), while NUCKS-1 mRNA expression was significantly higher in the breast cancer group compared to the other groups (p<0.05). Significant higher levels of IL-6, IL-12, and LCN2 as well as NUCKS-1 mRNA levels were reported in G IIIb than G IIIa, and positively correlated with obesity markers in all obese patients. Conclusions: Evaluation of cytokine levels as well as related gene expression may provide a new tool for understanding interactions for three axes of carcinogenesis, innate immunity, inflammation and cell cycling, and hope for new strategies of management.