Found 1825 results
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Journal Article
R. G. Bastos, Sears, K. P., Dinkel, K. D., Knowles, D. P., and Fry, L. M., Changes in the Molecular and Functional Phenotype of Bovine Monocytes during Infection., Infect Immun, vol. 87, no. 12, 2019.
K. R. Magnusson, Changes in the localization of taurine-like immunoreactivity during development and regeneration in the rat brain., Advances in experimental medicine and biology, vol. 359, pp. 235-43, 1994.
J. A. Hall, Jewell, D. E., and Ephraim, E., Changes in the Fecal Metabolome Are Associated with Feeding Fiber Not Health Status in Cats with Chronic Kidney Disease., Metabolites, vol. 10, no. 7, 2020.
L. Bai, Hof, P. R., Standaert, D. G., Xing, Y., Nelson, S. E., Young, A. B., and Magnusson, K. R., Changes in the expression of the NR2B subunit during aging in macaque monkeys., Neurobiology of aging, vol. 25, no. 2, pp. 201-8, 2004.
S. A. Semevolos, Nixon, A. J., and Brower-Toland, B. D., Changes in molecular expression of aggrecan and collagen types I, II, and X, insulin-like growth factor-I, and transforming growth factor-beta1 in articular cartilage obtained from horses with naturally acquired osteochondrosis., American journal of veterinary research, vol. 62, no. 7, pp. 1088-94, 2001.
F. Stormshak, Estill, C. T., Resko, J. A., and Roselli, C. E., Changes in LH secretion in response to an estradiol challenge in male- and female-oriented rams and in ewes., Reproduction (Cambridge, England), vol. 135, no. 5, pp. 733-8, 2008.
S. R. Das and Magnusson, K. R., Changes in expression of splice cassettes of NMDA receptor GluN1 subunits within the frontal lobe and memory in mice during aging., Behavioural brain research, vol. 222, no. 1, pp. 122-33, 2011.
S. R. Das and Magnusson, K. R., Changes in expression of splice cassettes of NMDA receptor GluN1 subunits within the frontal lobe and memory in mice during aging., Behavioural brain research, vol. 222, no. 1, pp. 122-133, 2011.
K. R. Magnusson, Scanga, C., Wagner, A. E., and Dunlop, C., Changes in anesthetic sensitivity and glutamate receptors in the aging canine brain., The journals of gerontology. Series A, Biological sciences and medical sciences, vol. 55, no. 9, pp. B448-54, 2000.
C. Lawrence, Ennis, D. G., Harper, C., Kent, M. L., Murray, K., and Sanders, G. E., The challenges of implementing pathogen control strategies for fishes used in biomedical research., Comp Biochem Physiol C Toxicol Pharmacol, vol. 155, no. 1, pp. 160-6, 2012.
C. Lawrence, Ennis, D. G., Harper, C., Kent, M. L., Murray, K., and Sanders, G. E., The challenges of implementing pathogen control strategies for fishes used in biomedical research., Comparative biochemistry and physiology. Toxicology & pharmacology : CBP, vol. 155, no. 1, pp. 160-6, 2012.
B. D. Hultgren, Wallner-Pendleton, E., Watrous, B. J., and Blythe, L. L., Cervical dorsal spondylosis with spinal cord compression in a black swan (Cygnus atratus)., Journal of wildlife diseases, vol. 23, no. 4, pp. 705-8, 1987.
Y. Yao and Ramsey, S. A., CERENKOV3: Clustering and molecular network-derived features improve computational prediction of functional noncoding SNPs., Pac Symp Biocomput, vol. 25, pp. 535-546, 2020.
Y. Yao, Liu, Z., Wei, Q., and Ramsey, S. A., CERENKOV2: improved detection of functional noncoding SNPs using data-space geometric features., BMC Bioinformatics, vol. 20, no. 1, p. 63, 2019.
Y. Minato, Fassio, S. R., Wolfe, A. J., and Häse, C. C., Central metabolism controls transcription of a virulence gene regulator in Vibrio cholerae., Microbiology (Reading, England), vol. 159, no. Pt 4, pp. 792-802, 2013.
M. J. Allen, Leone, K. A., Lamonte, K., Townsend, K. L., and Mann, K. A., Cemented total knee replacement in 24 dogs: surgical technique, clinical results, and complications., Vet Surg, vol. 38, no. 5, pp. 555-67, 2009.
H. M. Moulton, Nelson, M. H., Hatlevig, S. A., Reddy, M. T., and Iversen, P. L., Cellular uptake of antisense morpholino oligomers conjugated to arginine-rich peptides., Bioconjugate chemistry, vol. 15, no. 2, pp. 290-9, 2004.
L. Jin, Carpenter, D., Moerdyk-Schauwecker, M., Vanarsdall, A. L., Osorio, N., Hsiang, C., Jones, C., and Wechsler, S. L., Cellular FLIP can substitute for the herpes simplex virus type 1 latency-associated transcript gene to support a wild-type virus reactivation phenotype in mice., Journal of neurovirology, vol. 14, no. 5, pp. 389-400, 2008.
L. E. Bermudez and Sangari, F. J., Cellular and molecular mechanisms of internalization of mycobacteria by host cells., Microbes and infection / Institut Pasteur, vol. 3, no. 1, pp. 37-42, 2001.
R. Abes, Arzumanov, A. A., Moulton, H. M., Abes, S., Ivanova, G. D., Iversen, P. L., Gait, M. J., and Lebleu, B., Cell-penetrating-peptide-based delivery of oligonucleotides: an overview., Biochemical Society transactions, vol. 35, no. Pt 4, pp. 775-9, 2007.
H. M. Moulton, Cell-penetrating peptides enhance systemic delivery of antisense morpholino oligomers., Methods in molecular biology (Clifton, N.J.), vol. 867, pp. 407-14, 2012.
R. P. Wu, Youngblood, D. S., Hassinger, J. N., Lovejoy, C. E., Nelson, M. H., Iversen, P. L., and Moulton, H. M., Cell-penetrating peptides as transporters for morpholino oligomers: effects of amino acid composition on intracellular delivery and cytotoxicity., Nucleic acids research, vol. 35, no. 15, pp. 5182-91, 2007.
H. M. Moulton, Fletcher, S., Neuman, B. W., McClorey, G., Stein, D. A., Abes, S., Wilton, S. D., Buchmeier, M. J., Lebleu, B., and Iversen, P. L., Cell-penetrating peptide-morpholino conjugates alter pre-mRNA splicing of DMD (Duchenne muscular dystrophy) and inhibit murine coronavirus replication in vivo., Biochemical Society transactions, vol. 35, no. Pt 4, pp. 826-8, 2007.
M. Bersani, Rizzuti, M., Pagliari, E., Garbellini, M., Saccomanno, D., Moulton, H. M., Bresolin, N., Comi, G. P., Corti, S., and Nizzardo, M., Cell-penetrating peptide-conjugated Morpholino rescues SMA in a symptomatic preclinical model., Mol Ther, 2021.
H. Yin, Moulton, H. M., Seow, Y., Boyd, C., Boutilier, J., Iverson, P., and Wood, M. J. A., Cell-penetrating peptide-conjugated antisense oligonucleotides restore systemic muscle and cardiac dystrophin expression and function., Human molecular genetics, vol. 17, no. 24, pp. 3909-18, 2008.

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