Search Results - "Fraser, Rupsha"

  • Showing 1 - 11 results of 11
Refine Results
  1. 1

    Killer Timing: The Temporal Uterine Natural Killer Cell Differentiation Pathway and Implications for Female Reproductive Health by Fraser, Rupsha, Zenclussen, Ana Claudia

    Published in Frontiers in endocrinology (Lausanne) (27-06-2022)
    “…Natural killer (NK) cells are the predominant maternal uterine immune cell component, and they densely populate uterine mucosa to promote key changes in the…”
    Get full text
    Journal Article
  2. 2

    Remodelling at the maternal–fetal interface: relevance to human pregnancy disorders by Cartwright, Judith E, Fraser, Rupsha, Leslie, Karin, Wallace, Alison E, James, Joanna L

    Published in Reproduction (Cambridge, England) (01-12-2010)
    “…In human pregnancy, successful placentation and remodelling of the uterine vasculature require the integration of a number of stages, which are crucial for a…”
    Get full text
    Journal Article
  3. 3

    Upper respiratory tract mucosal immunity for SARS-CoV-2 vaccines by Fraser, Rupsha, Orta-Resendiz, Aurelio, Mazein, Alexander, Dockrell, David H.

    Published in Trends in molecular medicine (01-04-2023)
    “…Existing SARS-CoV-2 vaccination programmes have several drawbacks: (i) low impact on vaccine breakthrough infections and subsequent transmission in the…”
    Get full text
    Journal Article
  4. 4

    Epigenetic reprogramming of the zygote in mice and men: on your marks, get set, go by Fraser, Rupsha, Lin, Chih-Jen

    Published in Reproduction (Cambridge, England) (01-12-2016)
    “…Gametogenesis (spermatogenesis and oogenesis) is accompanied by the acquisition of gender-specific epigenetic marks, such as DNA methylation, histone…”
    Get full text
    Journal Article
  5. 5

    Does autonomous macrophage-driven inflammation promote alveolar damage in COVID-19? by Dockrell, David H, Russell, Clark D, McHugh, Brian, Fraser, Rupsha

    Published in The European respiratory journal (01-12-2022)
    “…SARS-CoV-2 has caused devastating effects with over 550 million infections by July 2022 and approximately 6.4 million deaths [1]. Societal and economic impacts…”
    Get full text
    Journal Article
  6. 6

    Extravillous trophoblast and decidual natural killer cells: a remodelling partnership by Wallace, Alison E, Fraser, Rupsha, Cartwright, Judith E

    Published in Human reproduction update (01-07-2012)
    “…During pregnancy, maternal uterine spiral arteries (SAs) are remodelled from minimal-flow, high-resistance vessels into larger diameter vessels with low…”
    Get full text
    Journal Article
  7. 7

    Severe COVID-19 versus multisystem inflammatory syndrome: comparing two critical outcomes of SARS-CoV-2 infection by Fraser, Rupsha, Orta-Resendiz, Aurelio, Dockrell, David, Müller-Trutwin, Michaela, Mazein, Alexander

    Published in European respiratory review (31-03-2023)
    “…Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection is associated with diverse host response immunodynamics and variable inflammatory…”
    Get full text
    Journal Article
  8. 8

    Impaired decidual natural killer cell regulation of vascular remodelling in early human pregnancies with high uterine artery resistance by Fraser, Rupsha, Whitley, Guy StJ, Johnstone, Alan P, Host, Amanda J, Sebire, Neil J, Thilaganathan, Baskaran, Cartwright, Judith E

    Published in The Journal of pathology (01-11-2012)
    “…During human pregnancy, natural killer (NK) cells accumulate in the maternal decidua, but their specific roles remain to be determined. Decidual NK (dNK) cells…”
    Get full text
    Journal Article
  9. 9

    Decidual natural killer cells regulate vessel stability: implications for impaired spiral artery remodelling by Fraser, Rupsha, Whitley, Guy St.J, Thilaganathan, Baskaran, Cartwright, Judith E

    Published in Journal of reproductive immunology (01-08-2015)
    “…Highlights • dNK cells isolated from pregnancies with high or normal uterine artery resistance indices. • Normal-RI dNK cells activate ECs and destabilise…”
    Get full text
    Journal Article
  10. 10

    COVID‐19 Disease Map, a computational knowledge repository of virus‐host interaction mechanisms by Niarakis, Anna, Kuperstein, Inna, Orta‐Resendiz, Aurelio, Singh, Vidisha, Aghamiri, Sara Sadat, Acencio, Marcio Luis, Glaab, Enrico, Ruepp, Andreas, Montrone, Corinna, Monraz Gómez, Luis Cristóbal, Somers, Julia, Hoch, Matti, Scheel, Julia, Borlinghaus, Hanna, Schreiber, Falk, Montagud, Arnau, Funahashi, Akira, Hiki, Yusuke, Yamada, Takahiro G, Renz, Alina, Naveez, Muhammad, Bocskei, Zsolt, Messina, Francesco, Börnigen, Daniela, Fergusson, Liam, Conti, Marta, Rameil, Marius, Nakonecnij, Vanessa, Vanhoefer, Jakob, Schmiester, Leonard, Wang, Muying, Ackerman, Emily E, Shoemaker, Jason E, Oxford, Kristie, Teuton, Jeremy, Kocakaya, Ebru, Summak, Gökçe Yağmur, Hanspers, Kristina, Kutmon, Martina, Coort, Susan, Ehrhart, Friederike, Martens, Marvin, Pham, Nhung, Haw, Robin, Jassal, Bijay, Matthews, Lisa, Senff‐Ribeiro, Andrea, Rothfels, Karen, Shamovsky, Veronica, Stephan, Ralf, Sevilla, Cristoffer, Varusai, Thawfeek, Ravel, Jean‐Marie, Fraser, Rupsha, Smula, Ewa, Heirendt, Laurent, Satagopam, Venkata, Owen, Stuart, Goble, Carole, Hu, Xiaoming, Maier, Dieter, Bauch, Angela, Gyori, Benjamin M, Bachman, John A, Vega, Carlos, Grouès, Valentin, Porras, Pablo, Licata, Luana, Sacco, Francesca, Nesterova, Anastasia, Turei, Denes, Luna, Augustin, Babur, Ozgun, Soliman, Sylvain, Peña‐Chilet, Maria, Rian, Kinza, Helikar, Tomáš, Modos, Dezso, Treveil, Agatha, Olbei, Marton, De Meulder, Bertrand, Ballereau, Stephane, Dugourd, Aurélien, Naldi, Aurélien, Noël, Vincent, Calzone, Laurence, Sander, Chris, Demir, Emek, Korcsmaros, Tamas, Beckmann, Jacques S, Hasenauer, Jan, Wolkenhauer, Olaf, Willighagen, Egon L, Evelo, Chris T, Gillespie, Marc E, Valencia, Alfonso, Kitano, Hiroaki, Auffray, Charles, Balling, Rudi, Schneider, Reinhard

    Published in Molecular systems biology (01-12-2021)
    Get full text
    Journal Article
  11. 11

    Erratum To: COVID‐19 Disease Map, a computational knowledge repository of virus‐host interaction mechanisms by Niarakis, Anna, Kuperstein, Inna, Orta‐Resendiz, Aurelio, Singh, Vidisha, Aghamiri, Sara Sadat, Acencio, Marcio Luis, Glaab, Enrico, Ruepp, Andreas, Montrone, Corinna, Monraz Gómez, Luis Cristóbal, Somers, Julia, Hoch, Matti, Scheel, Julia, Borlinghaus, Hanna, Schreiber, Falk, Montagud, Arnau, Funahashi, Akira, Hiki, Yusuke, Yamada, Takahiro G, Renz, Alina, Naveez, Muhammad, Bocskei, Zsolt, Messina, Francesco, Börnigen, Daniela, Fergusson, Liam, Conti, Marta, Rameil, Marius, Nakonecnij, Vanessa, Vanhoefer, Jakob, Schmiester, Leonard, Wang, Muying, Ackerman, Emily E, Shoemaker, Jason E, Oxford, Kristie, Teuton, Jeremy, Kocakaya, Ebru, Summak, Gökçe Yağmur, Hanspers, Kristina, Kutmon, Martina, Coort, Susan, Ehrhart, Friederike, Martens, Marvin, Pham, Nhung, Haw, Robin, Jassal, Bijay, Matthews, Lisa, Senff‐Ribeiro, Andrea, Rothfels, Karen, Shamovsky, Veronica, Stephan, Ralf, Sevilla, Cristoffer, Varusai, Thawfeek, Ravel, Jean‐Marie, Fraser, Rupsha, Smula, Ewa, Heirendt, Laurent, Satagopam, Venkata, Owen, Stuart, Goble, Carole, Hu, Xiaoming, Maier, Dieter, Bauch, Angela, Gyori, Benjamin M, Bachman, John A, Vega, Carlos, Grouès, Valentin, Porras, Pablo, Licata, Luana, Sacco, Francesca, Nesterova, Anastasia, Turei, Denes, Luna, Augustin, Babur, Ozgun, Soliman, Sylvain, Peña‐Chilet, Maria, Rian, Kinza, Helikar, Tomáš, Modos, Dezso, Treveil, Agatha, Olbei, Marton, De Meulder, Bertrand, Ballereau, Stephane, Dugourd, Aurélien, Naldi, Aurélien, Noël, Vincent, Calzone, Laurence, Sander, Chris, Demir, Emek, Korcsmaros, Tamas, Beckmann, Jacques S, Hasenauer, Jan, Wolkenhauer, Olaf, Willighagen, Egon L, Evelo, Chris T, Gillespie, Marc E, Valencia, Alfonso, Kitano, Hiroaki, Auffray, Charles, Balling, Rudi, Schneider, Reinhard

    Published in Molecular systems biology (23-12-2021)
    “…Graphical Abstract…”
    Get full text
    Journal Article