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Early life exposure to perfluorooctanesulfonate (PFOS) impacts vital biological processes in Xenopus laevis: Integrated morphometric and transcriptomic analyses. , Ismail T, Lee HK , Lee H , Kim Y, Kim E , Lee JY , Kim KB, Ryu HY, Cho DH, Kwon TK , Park TJ, Kwon T , Lee HS , Lee HS ., Ecotoxicol Environ Saf. January 1, 2024; 269 115820.
Advances in the Xenopus immunome: Diversification, expansion, and contraction. , Dimitrakopoulou D, Khwatenge CN, James-Zorn C , Paiola M , Bellin EW, Tian Y, Sundararaj N , Polak EJ, Grayfer L , Barnard D , Ohta Y, Horb M , Sang Y, Robert J ., Dev Comp Immunol. August 1, 2023; 145 104734.
Thyroid hormone receptor knockout prevents the loss of Xenopus tail regeneration capacity at metamorphic climax. , Wang S, Shibata Y, Fu L, Tanizaki Y, Luu N, Bao L, Peng Z, Shi YB , Shi YB ., Cell Biosci. February 23, 2023; 13 (1): 40.
Gene Structure Analysis of Chemokines and Their Receptors in Allotetraploid Frog, Xenopus laevis. , Fukui A , Matsunami M., Front Genet. November 25, 2021; 12 787979.
The Roles of Amphibian (Xenopus laevis) Macrophages during Chronic Frog Virus 3 Infections. , Hossainey MRH, Yaparla A, Hauser KA, Moore TE, Grayfer L ., Viruses. November 18, 2021; 13 (11):
Prior induction of cellular antiviral pathways limits frog virus 3 replication in two permissive Xenopus laevis skin epithelial-like cell lines. , Bui-Marinos MP, Todd LA, Wasson MD, Morningstar BEE, Katzenback BA ., Dev Comp Immunol. November 1, 2021; 124 104200.
Amphibian (Xenopus laevis) Tadpoles and Adult Frogs Differ in Their Antiviral Responses to Intestinal Frog Virus 3 Infections. , Hauser KA, Singer JC, Hossainey MRH, Moore TE, Wendel ES, Yaparla A, Kalia N, Grayfer L ., Front Immunol. January 1, 2021; 12 737403.
Amphibian (Xenopus laevis) Interleukin-8 (CXCL8): A Perspective on the Evolutionary Divergence of Granulocyte Chemotaxis. , Koubourli DV, Yaparla A, Popovic M, Grayfer L ., Front Immunol. September 12, 2018; 9 2058.
Leptin Induces Mitosis and Activates the Canonical Wnt/ β-Catenin Signaling Pathway in Neurogenic Regions of Xenopus Tadpole Brain. , Bender MC, Sifuentes CJ, Denver RJ ., Front Endocrinol (Lausanne). January 1, 2017; 8 99.
Antimicrobial and immunomodulatory properties of PGLa-AM1, CPF-AM1, and magainin-AM1: Potent activity against oral pathogens. , McLean DT, McCrudden MT, Linden GJ, Irwin CR, Conlon JM, Lundy FT., Regul Pept. November 1, 2014; .
Molecular cloning, expression and functional analysis of interleukin-8 ( IL-8) in South African clawed frog (Xenopus laevis). , Cui X, Han Y, Pan Y, Xu X, Ren W, Zhang S., Dev Comp Immunol. November 1, 2011; 35 (11): 1159-65.
Soluble factors from IL-1β-stimulated astrocytes activate NR1a/ NR2B receptors: implications for HIV-1-induced neurodegeneration. , Jing T, Wu L, Borgmann K, Surendran S, Ghorpade A, Liu J , Xiong H., Biochem Biophys Res Commun. November 12, 2010; 402 (2): 241-6.
The characterization of amphibian nucleoplasmins yields new insight into their role in sperm chromatin remodeling. , Frehlick LJ, Eirín-López JM, Jeffery ED, Hunt DF, Ausió J., BMC Genomics. April 28, 2006; 7 99.
Adenosine regulates the IL-1 beta-induced cellular functions of human gingival fibroblasts. , Murakami S, Hashikawa T, Saho T, Takedachi M, Nozaki T, Shimabukuro Y, Okada H., Int Immunol. December 1, 2001; 13 (12): 1533-40.
Bacterial lipopolysaccharide induces endothelial cells to synthesize a degranulating factor for neutrophils. , Gill EA, Imaizumi T, Carveth H, Topham MK, Tarbet EB, McIntyre TM, Prescott SM, Zimmerman GA., FASEB J. June 1, 1998; 12 (9): 673-84.
Molecular piracy of mammalian interleukin-8 receptor type B by herpesvirus saimiri. , Ahuja SK, Murphy PM., J Biol Chem. October 5, 1993; 268 (28): 20691-4.
Cloning of complementary DNA encoding a functional human interleukin-8 receptor. , Murphy PM, Tiffany HL., Science. September 13, 1991; 253 (5025): 1280-3.
The interleukin-8 receptor is encoded by a neutrophil-specific cDNA clone, F3R. , Thomas KM, Taylor L , Navarro J., J Biol Chem. August 15, 1991; 266 (23): 14839-41.