HSC Cell Imaging Core
The HSC Cell Imaging Core, with over 20 years of experience, consistently delivers exceptional services to researchers within and beyond the University of Utah, as well as catering to corporate clients seeking access to cutting-edge optical microscopes and advanced imaging analysis software.
As a result of strong and continuous support from both the University and our dedicated users, the HSC Cell Imaging Core has expanded to five major locations across the campus. Each year, more than 300 researchers can readily access our extensive array of over 15 standard and state-of-the-art instruments. We offer comprehensive training for independent instrument use and also provide Assisted Imaging services through our team of experienced core members. In addition, we enthusiastically engage in deep collaborations to assist with complex projects.
We kindly request that patrons acknowledge the HSC Cell Imaging Core in their publications whenever experimental data is generated using our core instruments. This recognition serves to underscore the impact of your work and highlights the vital contributions that the Cell Imaging Core makes. It also plays a crucial role in our efforts to secure grants and funding for acquiring equipment that benefits our user community.
Welcome to Cell Imaging News!
Check out the latest from the Cell Imaging core. There is a lot of cool stuff happening here!
News & Announcements
Service Rates
Instruments and workstations can be booked at any time. Bookings can only be cancelled or modified at least 12 hours in advance of the session start time. Booked time has to be used otherwise. To schedule a training or consultation session with a Cell Imaging staff member, a 24-hour lead time is required. Please contact the Cell Imaging staff directly if you need to adjust your scheduling on shorter notice.
Requesting Services
Existing users may login directly to the Resource Scheduling System to schedule or order services. This system is cores-wide and uses University of Utah uNID authentication.
Charge Rates Procedure / Federal Facilities and Administration (F&A) Rate
Part of the University’s agreement with the Federal Government regarding F&A is that the University will not offer a lower than F&A rate to other kinds of sponsors. That means that the University has to use, at minimum, the same rates for commercial sponsors as it does for the Federal Government. The University would jeopardize its relationship with the Federal Government (the University’s single largest sponsor) if it were to accept rates lower than the current federal F&A rate.
The current F&A Rate is: 54%
The facility internal rate is used when exclusively internal funding sources are used. The F&A / external academic rate applies when external funding sources are used i.e. Federal Government or other academic universities. For more information about F&A rates at the University of Utah please see: 6.3 Indirect Costs/Facilities and Administrative Costs (F&A)
Training Types
There are two tracks of training offered by the Cell Imaging Core
New Users (20 hours or less per year)
- Assisted Imaging
- Staff will image your samples exclusively with you. Your presence is required for an assessment consultation of your sample quality and image goals.
- Signature of a release form is required to ensure the quality of samples and the resulting images
- Acknowledgement in publications for the University of Utah Cell Imaging is a requirement for this type of extensive assistance
Long Term Users
- Patrons that prefer in depth training for skill development with the goal of imaging yourself and to obtain rigorous understanding of software.
- Advanced training series
- Project consultation and basic training
- Advanced training for special software implementation (FRET, FRAP, live cell imaging, stitching, time lapse, ect.. )
BookStack Documentation
Before working with us, please take the time to read our Microscopy Core Policies and Training Documentation located below.
Facilities
HSC - Health Science Center - Building 585 - MAP
Offices: 48A, 48E, 55
Labs: 48B, 48D, 54, 56, 60
Phone Number: 801-587-7964
HCI - Huntsman Cancer Institute North - Building 555 - MAP
Offices: 1460
Labs: 1430, 1440, 1470 1480
Phone Number: 801-585-0106
CSC - Crocker Science Center - Building 5 - MAP
Offices: 030
Labs: 032
EEJ - Jones Medical Research - Building 565 - MAP
Labs: 3532, 5100, 5122
ASB - Skaggs Biology Building - Building 82 - MAP
Labs: 230
Hours of Operation
9:00 am to 5:00 pm
Monday - Friday
Contact Email
Cell Imaging Support
Mailing Address
Cell Imaging
Old Skaggs, Bldg 582
30 S 2000 E, Rm 250
Salt Lake City, UT 84112
Citing Our Facility
Acknowledgments
We would like to thank you for acknowledging the our facility. This recognition allows us to highlight the impact of your work and demonstrates the important contributions of our facility makes to research across the University of Utah. The recognition our core receives from your acknowledgments also aids in receiving grants and further funding for equipment and services we can provide to our users.
Self-Run Services / Instrumentation Usage:
In published papers that used instruments at our facility and notably involved staff members please use the following format:
Assisted Services:
In published papers where a staff member assisted you in addition to the requested services please use the following format:
Collaboration:
For publications resulting from collaborations that assisted with the methodologies, planning process and execution of your experiment in addition to equipment usage we require Co-author attribution on your publication for our facility and any staff members who provided substantial contributions to the originating project.
All Publications
2023
- Anderl, W. J., Pearson, N., Converse, M. I., Yu, S. M., & Monson, K. L. (2023). Strain-induced collagen denaturation is rate dependent in failure of cerebral arteries. Acta Biomaterialia, 164, 282–292. https://doi.org/10.1016/j.actbio.2023.04.032
- Anderson, B., Blair, D., Huff, K., Wisniewski, J., Warner, K. S., & Kauser, K. (2023). Photochemical Modification of the Extracellular Matrix to Alter the Vascular Remodeling Process. Journal of Functional Biomaterials, 14(12), Article 12. https://doi.org/10.3390/jfb14120566
- Carney, K. R., Khan, A. M., Stam, S., Samson, S. C., Mittal, N., Han, S. J., Bidone, T. C., & Mendoza, M. C. (2023a). Nascent adhesions shorten the period of lamellipodium protrusion through the Brownian ratchet mechanism. Molecular Biology of the Cell, mbc.E23-08-0314. https://doi.org/10.1091/mbc.E23-08-0314
- Carney, K. R., Khan, A. M., Stam, S., Samson, S. C., Mittal, N., Han, S. J., Bidone, T. C., & Mendoza, M. C. (2023b). Nascent adhesions shorten the period of lamellipodium protrusion through the Brownian ratchet mechanism. Molecular Biology of the Cell, 34(12), ar115. https://doi.org/10.1091/mbc.E23-08-0314
- Chiola, S., Yang, J., Ullah, H. M. A., Napan, K., Huang, Q., Gamboa, N., Youssef, O., Colman, H., Cheshier, S. H., & Shcheglovitov, A. (2023). Transcriptional changes consistent with altered neuronal differentiation, angiogenesis, and tumor plasticity induced in human subpallial telencephalic organoid-glioblastoma chimeras (p. 2023.05.11.540229). bioRxiv. https://doi.org/10.1101/2023.05.11.540229
- de Hart, N. M. M. P., Petrocelli, J. J., Nicholson, R. J., Yee, E. M., van Onselen, L., Lang, M. J., Bourrant, P.-E., Ferrara, P. J., Bastian, E. D., Ward, L. S., Petersen, B. L., & Drummond, M. J. (2023). Dietary delivery of glycomacropeptide within the whey protein matrix is not effective in mitigating tissue ceramide deposition and obesity in high fat fed mice. Journal of Dairy Science. https://doi.org/10.3168/jds.2023-23914
- de Hart, N. MMP., Petrocelli, J. J., Nicholson, R. J., Yee, E. M., Ferrara, P. J., Bastian, E. D., Ward, L. S., Petersen, B. L., Summers, S. A., & Drummond, M. J. (2023). Palmitate-Induced Inflammation and Myotube Atrophy in C2C12 Cells Are Prevented by the Whey Bioactive Peptide, Glycomacropeptide. The Journal of Nutrition, 153(10), 2915–2928. https://doi.org/10.1016/j.tjnut.2023.08.033
- Digal, L., Samson, S., Stevens, M., Ghorai, A., Kim, H., Mifflin, M., Carney, K., Williamson, D., Um, S., Nagy, G., Oh, D.-C., Mendoza, M., & Roberts, A. (2023). Non-threaded isomers of sungsanpin and ulleungdin lasso peptides inhibit H1299 cancer cell migration [Preprint]. Chemistry. https://doi.org/10.26434/chemrxiv-2023-cfnrh
- Ellis, K. E., Bervoets, S., Smihula, H., Ganguly, I., Vigato, E., Auer, T. O., Benton, R., Litwin-Kumar, A., & Caron, S. J. C. (2023). Evolution of connectivity architecture in the Drosophila mushroom body (p. 2023.02.10.528036). bioRxiv. https://doi.org/10.1101/2023.02.10.528036
- Figueroa, K. P., Gross, C., Atienza, E. B., Paul, S., Gandelman, M., Haack, T., Kakar, N., Sturm, M., Casadei, N., Admard, J., Park, J., Zühlke, C., Hellenbroich, Y., Pozojevic, J., Balachandran, S., Händler, K., Zittel, S., Timmann, D., Erdlenbruch, F., … Pulst, S. M. (2023). GGC expansion in ZFHX3 causes SCA4 and impairs autophagy (p. 2023.10.26.23297560). medRxiv. https://doi.org/10.1101/2023.10.26.23297560
- Guo, L., Jacob, S., Manne, B. K., Kolawole, E. M., Guo, S., Wang, X., Murray, D., Tugolukova, E. A., Portier, I., Kosaka, Y., Barba, C., Rondina, M. T., Evavold, B., Morley, C., Bhatlekar, S., & Bray, P. F. (2023). Actin-bundling protein L-plastin promotes megakaryocyte rigidity and dampens proplatelet formation. Haematologica, 109(1), 331–336. https://doi.org/10.3324/haematol.2023.283016
- Nagarajan N, Capecchi MR. Optogenetic stimulation of mouse Hoxb8 microglia in specific regions of the brain induces anxiety, grooming, or both. Mol Psychiatry. 2023 Apr 10;. doi: 10.1038/s41380-023-02019-w. [Epub ahead of print] PubMed PMID: 37037872.
- Paine, E. L., Skalicky, J. J., Whitby, F. G., Mackay, D. R., Ullman, K. S., Hill, C. P., & Sundquist, W. I. (2023). The Calpain-7 protease functions together with the ESCRT-III protein IST1 within the midbody to regulate the timing and completion of abscission. eLife, 12, e84515. https://doi.org/10.7554/eLife.84515
- Petrocelli, J. J., McKenzie, A. I., de Hart, N. M. M. P., Reidy, P. T., Mahmassani, Z. S., Keeble, A. R., Kaput, K. L., Wahl, M. P., Rondina, M. T., Marcus, R. L., Welt, C. K., Holland, W. L., Funai, K., Fry, C. S., & Drummond, M. J. (2023). Disuse-induced muscle fibrosis, cellular senescence, and senescence-associated secretory phenotype in older adults are alleviated during re-ambulation with metformin pre-treatment. Aging Cell, n/a(n/a), e13936. https://doi.org/10.1111/acel.13936
- Scherer, S. D., Zhao, L., Butterfield, A. J., Yang, C.-H., Cortes-Sanchez, E., Guillen, K. P., Welm, B. E., & Welm, A. L. (2023). Breast cancer PDxO cultures for drug discovery and functional precision oncology. STAR Protocols, 4(3), 102402. https://doi.org/10.1016/j.xpro.2023.102402
- Van Scoyk, A. N., Antelope, O., Franzini, A., Ayer, D. E., Peterson, R. T., Pomicter, A. D., Owen, S. C., & Deininger, M. W. (2023). Bioluminescence Assay of Lysine Deacylase Sirtuin Activity. bioRxiv, 2023.08.10.552871. https://doi.org/10.1101/2023.08.10.552871
2024
- Carey, C. M., Hollins, H. L., Schmid, A. V., & Gagnon, J. A. (2024). Distinct features of the regenerating heart uncovered through comparative single-cell profiling. Biology Open, 13(4), bio060156. https://doi.org/10.1242/bio.060156
- Casey, M. J., Chan, P. P., Li, Q., Jette, C. A., Kohler, M., Myers, B. R., & Stewart, R. A. (2024). A Simple and Scalable Zebrafish Model of Sonic Hedgehog Medulloblastoma (p. 2024.02.03.577834). bioRxiv. https://doi.org/10.1101/2024.02.03.577834
- Collins, B. C., Shapiro, J. B., Scheib, M. M., Musci, R. V., Verma, M., & Kardon, G. (2024). Three-dimensional imaging studies in mice identify cellular dynamics of skeletal muscle regeneration. Developmental Cell. https://doi.org/10.1016/j.devcel.2024.03.017
- de Hart, N. M. M. P., Petrocelli, J. J., Nicholson, R. J., Yee, E. M., van Onselen, L., Lang, M. J., Bourrant, P.-E., Ferrara, P. J., Bastian, E. D., Ward, L. S., Petersen, B. L., & Drummond, M. J. (2024). Dietary delivery of glycomacropeptide within the whey protein matrix is not effective in mitigating tissue ceramide deposition and obesity in mice fed a high-fat diet. Journal of Dairy Science, 107(2), 669–682. https://doi.org/10.3168/jds.2023-23914
- Fennel, Z. J., Bourrant, P.-E., Kurian, A. S., Petrocelli, J. J., de Hart, N. M. M. P., Yee, E. M., Boudina, S., Keirstead, H. S., Nistor, G., Greilach, S. A., Berchtold, N. C., Lane, T. E., & Drummond, M. J. (2024). Stem cell secretome treatment improves whole-body metabolism, reduces adiposity, and promotes skeletal muscle function in aged mice. Aging Cell, n/a(n/a), e14144. https://doi.org/10.1111/acel.14144
- Figueroa, K. P., Gross, C., Buena-Atienza, E., Paul, S., Gandelman, M., Kakar, N., Sturm, M., Casadei, N., Admard, J., Park, J., Zühlke, C., Hellenbroich, Y., Pozojevic, J., Balachandran, S., Händler, K., Zittel, S., Timmann, D., Erdlenbruch, F., Herrmann, L., … Pulst, S. M. (2024). A GGC-repeat expansion in ZFHX3 encoding polyglycine causes spinocerebellar ataxia type 4 and impairs autophagy. Nature Genetics, 1–10. https://doi.org/10.1038/s41588-024-01719-5
- Herstine, J. A., Chang, P.-K., Chornyy, S., Stevenson, T. J., Sunshine, A. C., Nokhrina, K., Rediger, J., Wentz, J., Vetter, T. A., Scholl, E., Holaway, C., Pyne, N. K., Bratasz, A., Yeoh, S., Flanigan, K. M., Bonkowsky, J. L., & Bradbury, A. M. (2024). Evaluation of safety and early efficacy of AAV gene therapy in mouse models of vanishing white matter disease. Molecular Therapy: The Journal of the American Society of Gene Therapy, S1525-0016(24)00212-0. https://doi.org/10.1016/j.ymthe.2024.03.034
- Merrill, C. B., Titos, I., Pabon, M. A., Montgomery, A. B., Rodan, A. R., & Rothenfluh, A. (2024). Iterative assay for transposase-accessible chromatin by sequencing to isolate functionally relevant neuronal subtypes. Science Advances, 10(13), eadi4393. https://doi.org/10.1126/sciadv.adi4393
- Morales, J. C. F., Redfearn, C., Titus, M. A., & Roh-Johnson, M. (2024). Reduced PaxillinB localization to cell-substrate adhesions promotes cell migration in Dictyostelium (p. 2024.03.19.585764). bioRxiv. https://doi.org/10.1101/2024.03.19.585764
- Moriwaki, M., Liu, L., James, E. R., Tolley, N., O’Connora, A. M., Emery, B., Aston, K. I., Campbell, R. A., & Welt, C. K. (2024). Heterozygous Eif4nif1 Stop Gain Mice Replicate the Primary Ovarian Insufficiency Phenotype in Women (p. 2024.04.09.588694). bioRxiv. https://doi.org/10.1101/2024.04.09.588694
- Nwagbo, U., Parvez, S., Maschek, J. A., & Bernstein, P. S. (2024). Elovl4b knockout zebrafish as a model for ocular very-long-chain PUFA deficiency. Journal of Lipid Research, 65(3). https://doi.org/10.1016/j.jlr.2024.100518
- Smith, J. J., Valentino, T. R., Ablicki, A. H., Banerjee, R., Colligan, A. R., Eckert, D. M., Desjardins, G. A., & Diehl, K. L. (2024). A genetically-encoded fluorescent biosensor for visualization of acetyl-CoA in live cells (p. 2023.12.31.573774). bioRxiv. https://doi.org/10.1101/2023.12.31.573774
- Verma, S., Giagnocavo, S. D., Curtin, M. C., Arumugam, M., Osburn-Staker, S. M., Wang, G., Atkinson, A., Nix, D. A., Lum, D. H., Cox, J. E., & Hilgendorf, K. I. (2024). Zinc Alpha-2-Glycoprotein (ZAG/AZGP1) secreted by triple-negative breast cancer promotes tumor microenvironment fibrosis (p. 2024.03.04.583349). bioRxiv. https://doi.org/10.1101/2024.03.04.583349
- Walker, M. F., Zhang, J., Steiner, W., Ku, P.-I., Zhu, J.-F., Michaelson, Z., Yen, Y.-C., Lee, A., Long, A. B., Casey, M. J., Poddar, A., Nelson, I. B., Arveseth, C. D., Nagel, F., Clough, R., LaPotin, S., Kwan, K. M., Schulz, S., Stewart, R. A., … Myers, B. R. (2024). GRK2 Kinases in the Primary Cilium Initiate SMOOTHENED-PKA Signaling in the Hedgehog Cascade (p. 2023.05.10.540226). bioRxiv. https://doi.org/10.1101/2023.05.10.540226
- Wallis, G. J., Bell, L. A., Wagner, J. N., Buxton, L., Balachandar, L., & Wilcox, K. S. (2024). Reactive microglia fail to respond to environmental damage signals in a viral-induced mouse model of temporal lobe epilepsy (p. 2024.03.06.583768). bioRxiv. https://doi.org/10.1101/2024.03.06.583768
2022
- Hagen-Lillevik, S., Johnson, J., & Lai, K. (2022). Early postnatal alterations in follicular stress response and survival in a mouse model of Classic Galactosemia. Journal of Ovarian Research, 15(1), 122. https://doi.org/10.1186/s13048-022-01049-2
- Hagen-Lillevik, S., Johnson, J., Siddiqi, A., Persinger, J., Hale, G., & Lai, K. (2022). Harnessing the Power of Purple Sweet Potato Color and Myo-Inositol to Treat Classic Galactosemia. International Journal of Molecular Sciences, 23(15), 8654. https://doi.org/10.3390/ijms23158654
- Hoffman, L. M., Jensen, C. C., & Beckerle, M. C. (2022). Phosphorylation of the small heat shock protein HspB1 regulates cytoskeletal recruitment and cell motility. Molecular Biology of the Cell, 33(11), ar100. https://doi.org/10.1091/mbc.E22-02-0057
- LaJoie, D., Turkmen, A. M., Mackay, D. R., Jensen, C. C., Aksenova, V., Niwa, M., Dasso, M., & Ullman, K. S. (2022). A role for Nup153 in nuclear assembly reveals differential requirements for targeting of nuclear envelope constituents. Molecular Biology of the Cell, 33(13), ar117. https://doi.org/10.1091/mbc.E22-05-0189
- Rush, C. M., Blanchard, Z., Polaski, J. T., Osborne, K. S., Osby, K., Vahrenkamp, J. M., Yang, C.-H., Lum, D. H., Hagan, C. R., Leslie, K. K., Pufall, M. A., Thiel, K. W., & Gertz, J. (2022). Characterization of HCI-EC-23 a novel estrogen- and progesterone-responsive endometrial cancer cell line. Scientific Reports, 12(1), Article 1. https://doi.org/10.1038/s41598-022-24211-8
- Sefton, E. M., Gallardo, M., Tobin, C. E., Collins, B. C., Colasanto, M. P., Merrell, A. J., & Kardon, G. (2022). Fibroblast-derived Hgf controls recruitment and expansion of muscle during morphogenesis of the mammalian diaphragm. ELife, 11, e74592. https://doi.org/10.7554/eLife.74592
- Simeone, C. A., Wilkerson, J. L., Poss, A. M., Banks, J. A., Varre, J. V., Guevara, J. L., Hernandez, E. J., Gorsi, B., Atkinson, D. L., Turapov, T., Frodsham, S. G., Morales, J. C. F., O’Neil, K., Moore, B., Yandell, M., Summers, S. A., Krolewski, A. S., Holland, W. L., & Pezzolesi, M. G. (2022). A dominant negative ADIPOQ mutation in a diabetic family with renal disease, hypoadiponectinemia, and hyperceramidemia. Npj Genomic Medicine, 7(1), Article 1. https://doi.org/10.1038/s41525-022-00314-z
- Smith, M. A., Blankman, E., Jensen, C. C., Hoffman, L. M., Ullman, K. S., & Beckerle, M. C. (2022). Nuclear pore complexes concentrate on Actin/LINC/Lamin nuclear lines in response to mechanical stress in a SUN1 dependent manner. Heliyon, 8(12), e12147. https://doi.org/10.1016/j.heliyon.2022.e12147
- Wang, Y., Chiola, S., Yang, G., Russell, C., Armstrong, C. J., Wu, Y., Spampanato, J., Tarboton, P., Ullah, H. M. A., Edgar, N. U., Chang, A. N., Harmin, D. A., Bocchi, V. D., Vezzoli, E., Besusso, D., Cui, J., Cattaneo, E., Kubanek, J., & Shcheglovitov, A. (2022). Modeling human telencephalic development and autism-associated SHANK3 deficiency using organoids generated from single neural rosettes. Nature Communications, 13(1), Article 1. https://doi.org/10.1038/s41467-022-33364-z
- Wenzel, D. M., Mackay, D. R., Skalicky, J. J., Paine, E. L., Miller, M. S., Ullman, K. S., & Sundquist, W. I. (2022). Comprehensive analysis of the human ESCRT-III-MIT domain interactome reveals new cofactors for cytokinetic abscission. ELife, 11, e77779. https://doi.org/10.7554/eLife.77779
- Zhang, C., Jin, Y., Marchetti, M., Lewis, M. R., Hammouda, O. T., & Edgar, B. A. (2022). EGFR signaling activates intestinal stem cells by promoting mitochondrial biogenesis and β-oxidation. Current Biology. https://doi.org/10.1016/j.cub.2022.07.003
2023
- Almanzar, D. E., Gordon, S. G., Bristow, C., Hamrick, A., von Diezmann, L., Liu, H., & Rog, O. (2023). Meiotic DNA exchanges in C. elegans are promoted by proximity to the synaptonemal complex. Life Science Alliance, 6(4), e202301906. https://doi.org/10.26508/lsa.202301906
- Anderl, W. J., Pearson, N., Converse, M. I., Yu, S. M., & Monson, K. L. (2023). Strain-induced collagen denaturation is rate dependent in failure of cerebral arteries. Acta Biomaterialia. https://doi.org/10.1016/j.actbio.2023.04.032
- Ellis, K. E., Smihula, H., Ganguly, I., Vigato, E., Bervoets, S., Auer, T. O., Benton, R., Litwin-Kumar, A., & Caron, S. J. C. (2023). Evolution of connectivity architecture in the Drosophila mushroom body [Preprint]. Neuroscience. https://doi.org/10.1101/2023.02.10.528036
- Eshima, H., Shahtout, J. L., Siripoksup, P., Pearson, M. J., Mahmassani, Z. S., Ferrara, P. J., Lyons, A. W., Maschek, J. A., Peterlin, A. D., Verkerke, A. R. P., Johnson, J. M., Salcedo, A., Petrocelli, J. J., Miranda, E. R., Anderson, E. J., Boudina, S., Ran, Q., Cox, J. E., Drummond, M. J., & Funai, K. (2023). Lipid hydroperoxides promote sarcopenia through carbonyl stress. ELife, 12, e85289. https://doi.org/10.7554/eLife.85289
- Espino-Sanchez, T. J., Wienkers, H., Marvin, R. G., Nalder, S.-A., García-Guerrero, A. E., VanNatta, P. E., Jami-Alahmadi, Y., Mixon Blackwell, A., Whitby, F. G., Wohlschlegel, J. A., Kieber-Emmons, M. T., Hill, C. P., & Sigala, P. A. (2023). Direct tests of cytochrome c and c1 functions in the electron transport chain of malaria parasites. Proceedings of the National Academy of Sciences of the United States of America, 120(19), e2301047120. https://doi.org/10.1073/pnas.2301047120
- Ferrara, P. J., Reidy, P. T., Petrocelli, J. J., Yee, E. M., Fix, D. K., Mahmassani, Z. S., Montgomery, J. A., McKenzie, A. I., de Hart, N. M. M. P., & Drummond, M. J. (2023). Global deletion of CCL2 has adverse impacts on recovery of skeletal muscle fiber size and function and is muscle-specific. Journal of Applied Physiology. https://doi.org/10.1152/japplphysiol.00444.2022
- He, Y., Anderson, B., Hu, Q., Hayes, R. B., Huff, K., Isaacson, J., Warner, K. S., Hauser, H., Greenberg, M., Chandra, V., Kauser, K., & Berceli, S. A. (2023). Photochemically Aided Arteriovenous Fistula Creation to Accelerate Fistula Maturation. International Journal of Molecular Sciences, 24(8), Article 8. https://doi.org/10.3390/ijms24087571
- Kidwell, C. U., Casalini, J. R., Pradeep, S., Scherer, S. D., Greiner, D., Bayik, D., Watson, D. C., Olson, G. S., Lathia, J. D., Johnson, J. S., Rutter, J., Welm, A. L., Zangle, T. A., & Roh-Johnson, M. (2023). Transferred mitochondria accumulate reactive oxygen species, promoting proliferation. ELife, 12, e85494. https://doi.org/10.7554/eLife.85494
- Merrill, C. B., Titos, I., Pabon, M. A., Montgomery, A. B., Rodan, A. R., & Rothenfluh, A. (2023). Iterative assay for transposase-accessible chromatin by sequencing to isolate functionally relevant neuronal subtypes (p. 2023.04.14.536950). bioRxiv. https://doi.org/10.1101/2023.04.14.536950
- Petrocelli, J. J., Hart, N. M. M. P. de, Lang, M. J., Yee, E. M., Ferrara, P. J., Fix, D. K., Chaix, A., Funai, K., & Drummond, M. J. (2023). Cellular senescence and disrupted proteostasis induced by myotube atrophy are prevented with low-dose metformin and leucine cocktail. Aging, 15. https://doi.org/10.18632/aging.204600
- Preston, A. J., Rogers, A., Sharp, M., Mitchell, G., Toruno, C., Barney, B. B., Donovan, L. N., Bly, J., Kennington, R., Payne, E., Iovino, A., Furukawa, G., Robinson, R., Shamloo, B., Buccilli, M., Anders, R., Eckstein, S., Fedak, E. A., Wright, T., … Abegglen, L. M. (2023). Elephant TP53-RETROGENE 9 induces transcription-independent apoptosis at the mitochondria. Cell Death Discovery, 9(1), Article 1. https://doi.org/10.1038/s41420-023-01348-7
- Rice, M. C., Little, J. H., Forrister, D. L., Machado, J., Clark, N. L., & Gagnon, J. A. (2023). Gadusol is a maternally provided sunscreen that protects fish embryos from DNA damage [Preprint]. Developmental Biology. https://doi.org/10.1101/2023.01.30.526370
- Stover, J. D., Trone, M. A., Lawrence, B., & Bowles, R. D. (2023). Multiplex epigenome editing of ion channel expression in nociceptive neurons abolished degenerative IVD-conditioned media-induced mechanical sensitivity. JOR SPINE, n/a(n/a), e1253. https://doi.org/10.1002/jsp2.1253
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2021
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