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Kostic, Aleksandar

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Kostic

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Aleksandar

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Kostic, Aleksandar

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Now showing 1 - 3 of 3
  • Publication

    Exploring host-microbiota interactions in animal models and humans

    (Cold Spring Harbor Laboratory Press, 2013) Kostic, Aleksandar; Howitt, Michael; Garrett, Wendy

    The animal and bacterial kingdoms have coevolved and coadapted in response to environmental selective pressures over hundreds of millions of years. The meta'omics revolution in both sequencing and its analytic pipelines is fostering an explosion of interest in how the gut microbiome impacts physiology and propensity to disease. Gut microbiome studies are inherently interdisciplinary, drawing on approaches and technical skill sets from the biomedical sciences, ecology, and computational biology. Central to unraveling the complex biology of environment, genetics, and microbiome interaction in human health and disease is a deeper understanding of the symbiosis between animals and bacteria. Experimental model systems, including mice, fish, insects, and the Hawaiian bobtail squid, continue to provide critical insight into how host-microbiota homeostasis is constructed and maintained. Here we consider how model systems are influencing current understanding of host-microbiota interactions and explore recent human microbiome studies.

  • Publication

    Genomic analysis identifies association of Fusobacterium with colorectal carcinoma

    (Cold Spring Harbor Laboratory Press, 2011) Kostic, Aleksandar; Gevers, D.; Pedamallu, Chandra Sekhar; Michaud, Monia; Duke, F.; Earl, A. M.; Ojesina, Akinyemi Ifedapo; Jung, J.; Bass, Adam; Tabernero, J.; Baselga, J.; Liu, C.; Shivdasani, Ramesh; Ogino, Shuji; Birren, B. W.; Huttenhower, Curtis; Garrett, Wendy; Meyerson, Matthew

    The tumor microenvironment of colorectal carcinoma is a complex community of genomically altered cancer cells, nonneoplastic cells, and a diverse collection of microorganisms. Each of these components may contribute to carcinogenesis; however, the role of the microbiota is the least well understood. We have characterized the composition of the microbiota in colorectal carcinoma using whole genome sequences from nine tumor/normal pairs. Fusobacterium sequences were enriched in carcinomas, confirmed by quantitative PCR and 16S rDNA sequence analysis of 95 carcinoma/normal DNA pairs, while the Bacteroidetes and Firmicutes phyla were depleted in tumors. Fusobacteria were also visualized within colorectal tumors using FISH. These findings reveal alterations in the colorectal cancer microbiota; however, the precise role of Fusobacteria in colorectal carcinoma pathogenesis requires further investigation.

  • Publication

    Fusobacterium nucleatum in Colorectal Carcinoma Tissue According to Tumor Location

    (Nature Publishing Group, 2016) Mima, Kosuke; Cao, Yin; Chan, Andrew; Qian, Zhi Rong; Nowak, Jonathan; Masugi, Yohei; Shi, Yan; Song, Mingyang; da Silva, Annacarolina; Gu, Mancang; Li, Wanwan; Hamada, Tsuyoshi; Kosumi, Keisuke; Hanyuda, Akiko; Liu, Li; Kostic, Aleksandar; Giannakis, Marios; Bullman, Susan; Brennan, Caitlin; Milner, Danny; Baba, Hideo; Garraway, Levi; Meyerhardt, Jeffrey; Garrett, Wendy; Huttenhower, Curtis; Meyerson, Matthew; Giovannucci, Edward; Fuchs, Charles; Nakashima, Reiko; Ogino, Shuji

    Objectives: Evidence suggests a possible role of Fusobacterium nucleatum in colorectal carcinogenesis, especially in right-sided proximal colorectum. Considering a change in bowel contents and microbiome from proximal to distal colorectal segments, we hypothesized that the proportion of colorectal carcinoma enriched with F. nucleatum might gradually increase along the bowel subsites from rectum to cecum. Methods: A retrospective, cross-sectional analysis was conducted on 1,102 colon and rectal carcinomas in molecular pathological epidemiology databases of the Nurses’ Health Study and the Health Professionals Follow-up Study. We measured the amount of F. nucleatum DNA in colorectal tumor tissue using a quantitative PCR assay and equally dichotomized F. nucleatum-positive cases (high vs. low). We used multivariable logistic regression analysis to examine the relationship of a bowel subsite variable (rectum, rectosigmoid junction, sigmoid colon, descending colon, splenic flexure, transverse colon, hepatic flexure, ascending colon, and cecum) with the amount of F. nucleatum. Results: The proportion of F. nucleatum-high colorectal cancers gradually increased from rectal cancers (2.5% 4/157) to cecal cancers (11% 19/178), with a statistically significant linear trend along all subsites (P<0.0001) and little evidence of non-linearity. The proportion of F. nucleatum-low cancers was higher in rectal, ascending colon, and cecal cancers than in cancers of middle segments. Conclusions: The proportion of F. nucleatum-high colorectal cancers gradually increases from rectum to cecum. Our data support the colorectal continuum model that reflects pathogenic influences of the gut microbiota on neoplastic and immune cells and challenges the prevailing two-colon (proximal vs. distal) dichotomy paradigm.