Items where Subject is "macrophages"

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Number of items at this level: 16.

A

Antonyak, M. A., Lukey, M. J., Cerione, R. A. (March 2019) Lipid-filled vesicles modulate macrophages. Science, 363 (6430). pp. 931-932. ISSN 1095-9203

C

Chamberland, Megan, Farrell, Brian, Yeh, Johannes (June 2022) Evaluating the differential expression of TAM family receptors and efferocytosis activities in differentiated and polarized THP-1 macrophage. biorxiv.

E

Ehrt, S., Schnappinger, D., Bekiranov, S., Drenkow, J., Shi, S., Gingeras, T. R., Gaasterland, T., Schoolnik, G., Nathan, C. (2001) Reprogramming of the macrophage transcriptome in response to interferon-γ and mycobacterium tuberculosis: Signaling roles of nitric oxide synthase-2 and phagocyte oxidase. Journal of Experimental Medicine, 194 (8). pp. 1123-1139. ISSN 00221007 (ISSN)

H

Hershey, Alfred Day (1966) The injection of DNA into cells by phage. In: Phage and the Origins of Molecular Biology. Cold Spring Harbor Laboratory of Quantitative Biology (CSHLQB), Cold Spring Harbor, NY, pp. 100-108.

Hrecka, K., Hao, C., Gierszewska, M., Swanson, S. K., Kesik-Brodacka, M., Srivastava, S., Florens, L., Washburn, M. P., Skowronski, J. (2011) Vpx relieves inhibition of HIV-1 infection of macrophages mediated by the SAMHD1 protein. Nature, 474 (7353). pp. 658-61. ISSN 1476-4687 (Electronic) 0028-0836 (Linking)

I

Ibrahim, Ayman M, Moss, Matthew A, Gray, Zane, Rojo, Michelle D, Burke, Caitlin M, Schwertfeger, Kathryn L, Dos Santos, Camila O, Machado, Heather L (2020) Diverse Macrophage Populations Contribute to the Inflammatory Microenvironment in Premalignant Lesions During Localized Invasion. Frontiers in Oncology, 10. p. 569985. ISSN 2234-943X

N

Nielsen, S. R., Quaranta, V., Linford, A., Emeagi, P., Rainer, C., Santos, A., Ireland, L., Sakai, T., Sakai, K., Kim, Y. S., Engle, D., Campbell, F., Palmer, D., Ko, J. H., Tuveson, D. A., Hirsch, E., Mielgo, A., Schmid, M. C. (April 2016) Macrophage-secreted granulin supports pancreatic cancer metastasis by inducing liver fibrosis. Nat Cell Biol, 18 (5). pp. 549-60. ISSN 1476-4679 (Electronic)1465-7392 (Linking)

R

Ragno, S., Romano, M., Howell, S., Pappin, D. J., Jenner, P. J., Colston, M. J. (September 2001) Changes in gene expression in macrophages infected with Mycobacterium tuberculosis: a combined transcriptomic and proteomic approach. Immunology, 104 (1). pp. 99-108. ISSN 0019-2805 (Print)0019-2805 (Linking)

Rosati, A., Basile, A., D'Auria, R., d'Avenia, M., De Marco, M., Falco, A., Festa, M., Guerriero, L., Iorio, V., Parente, R., Pascale, M., Marzullo, L., Franco, R., Arra, C., Barbieri, A., Rea, D., Menichini, G., Hahne, M., Bijlsma, M., Barcaroli, D., Sala, G., di Mola, F. F., di Sebastiano, P., Todoric, J., Antonucci, L., Corvest, V., Jawhari, A., Firpo, M. A., Tuveson, D. A., Capunzo, M., Karin, M., De Laurenzi, V., Turco, M. C. (November 2015) BAG3 promotes pancreatic ductal adenocarcinoma growth by activating stromal macrophages. Nat Commun, 6. p. 8695. ISSN 2041-1723 (Electronic)2041-1723 (Linking)

Rosati, A., Basile, A., D'Auria, R., d'Avenia, M., De Marco, M., Falco, A., Festa, M., Guerriero, L., Iorio, V., Pascale, M., Franco, R., Arra, C., Barbieri, A., Rea, D., Menichini, G., Hahne, M., Bijlsma, M., Barcaroli, D., Tuveson, D. A., Todoric, J., Karin, M., De Laurenzi, V., Turco, M. C. (August 2015) PDAC cells release BAG3 that activates a paracrine loop with stromal macrophages. Cancer Research, 75 (Supple). Abstract 2393. ISSN 0008-5472

S

Seifert, L., Werba, G., Tiwari, S., Giao Ly, N. N., Alothman, S., Alqunaibit, D., Avanzi, A., Barilla, R., Daley, D., Greco, S. H., Torres-Hernandez, A., Pergamo, M., Ochi, A., Zambirinis, C. P., Pansari, M., Rendon, M., Tippens, D., Hundeyin, M., Mani, V. R., Hajdu, C., Engle, D., Miller, G. (April 2016) The necrosome promotes pancreatic oncogenesis via CXCL1 and Mincle-induced immune suppression. Nature, 532 (7598). pp. 245-9. ISSN 1476-4687 (Electronic)0028-0836 (Linking)

Shaik-Dasthagirisaheb, Y., Huang, N., Baer, M. T., Gibson, F. C. (February 2013) Role of MyD88-dependent and MyD88-independent signaling in Porphyromonas gingivalis-elicited macrophage foam cell formation. Molecular Oral Microbiology, 28 (1). pp. 28-39. ISSN 20411006

Shi, S., Nathan, C., Schnappinger, D., Drenkow, J., Fuortes, M., Block, E., Ding, A., Gingeras, T. R., Schoolnik, G., Akira, S., Takeda, K., Ehrt, S. (2003) MyD88 primes macrophages for full-scale activation by interferon-γ yet mediates few responses to Mycobacterium tuberculosis. Journal of Experimental Medicine, 198 (7). pp. 987-997. ISSN 00221007 (ISSN)

Srivastava, S., Swanson, S. K., Manel, N., Florens, L., Washburn, M. P., Skowronski, J. (May 2008) Lentiviral Vpx accessory factor targets VprBP/DCAF1 substrate adaptor for cullin 4 E3 ubiquitin ligase to enable macrophage infection. PLoS Pathog, 4 (5). e1000059.

Sun, Lijuan, Han, Xiao, Egeblad, Mikala (December 2022) Isolation of mouse mammary carcinoma-derived macrophages and cancer cells for co-culture assays. STAR Protocols, 3 (4). p. 101833. ISSN 2666-1667 (In Press)

Sun, Lijuan, Kees, Tim, Almeida, Ana Santos, Liu, Bodu, He, Xue-Yan, Ng, David, Han, Xiao, Spector, David L, McNeish, Iain A, Gimotty, Phyllis, Adams, Sylvia, Egeblad, Mikala (September 2021) Activating a collaborative innate-adaptive immune response to control metastasis. Cancer Cell. ISSN 1535-6108

This list was generated on Sat Jun 3 13:37:20 2023 EDT.
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