Search Results - "Dresel, Mark"

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  1. 1

    Incorporation of an Isohexide Subunit Improves the Drug-like Properties of Bioactive Compounds by Sidduri, Achyutharao, Dresel, Mark J., Knapp, Spencer

    Published in ACS medicinal chemistry letters (09-02-2023)
    “…An enhanced ability to pre-engineer favorable drug-likeness qualities into bioactive molecules would focus and streamline the drug development process. We find…”
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    Journal Article
  2. 2

    Stereoelectronic Features of a Complex Ketene Dimerization Reaction by Barrows, Robert D, Dresel, Mark J, Emge, Thomas J, Rablen, Paul R, Knapp, Spencer

    Published in Molecules (Basel, Switzerland) (23-12-2021)
    “…The amidation reaction of a tetrahydroisoquinolin-1-one-4-carboxylic acid is a key step in the multi-kilogram-scale preparation of the antimalarial drug SJ733,…”
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  3. 3

    Gadolinium Complex for the Catch and Release of Phosphate from Water by Harris, Sarah M, Nguyen, Jamie T, Pailloux, Sylvie L, Mansergh, Jarrett P, Dresel, Mark J, Swanholm, Tran B, Gao, Tuo, Pierre, Valérie C

    Published in Environmental science & technology (18-04-2017)
    “…The ability of complexes of hard and labile metal ions with one or more open coordination sites to capture phosphates with high affinity and selectivity…”
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  4. 4

    Protocol for building synthetic protocell membranes that sense redox using synthetic phospholipids and natural lipids by Wang, Liming, Dresel, Mark J., Robinson, Monique, Izgu, Enver Cagri

    Published in STAR protocols (20-09-2024)
    “…Sensing is a critical function of artificial cells; however, this is challenging to realize using bottom-up approaches. Here, we present a protocol for…”
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  5. 5

    The Stability of the Complex and the Basicity of the Anion Impact the Selectivity and Affinity of Tripodal Gadolinium Complexes for Anions by Ramakrishnam Raju, Mandapati V, Wilharm, Randall K, Dresel, Mark J, McGreal, Meghan E, Mansergh, Jarrett P, Marting, Spenser T, Goodpaster, Jason D, Pierre, Valérie C

    Published in Inorganic chemistry (18-11-2019)
    “…The affinities and selectivities of lanthanide complexes with open coordination sites for anions vary considerably with the chelate. In order to determine the…”
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  6. 6

    Evolution of the SARS‐CoV‐2 proteome in three dimensions (3D) during the first 6 months of the COVID‐19 pandemic by Lubin, Joseph H., Zardecki, Christine, Dolan, Elliott M., Lu, Changpeng, Shen, Zhuofan, Dutta, Shuchismita, Westbrook, John D., Hudson, Brian P., Goodsell, David S., Williams, Jonathan K., Voigt, Maria, Sarma, Vidur, Xie, Lingjun, Venkatachalam, Thejasvi, Arnold, Steven, Alfaro Alvarado, Luz Helena, Catalfano, Kevin, Khan, Aaliyah, McCarthy, Erika, Staggers, Sophia, Tinsley, Brea, Trudeau, Alan, Singh, Jitendra, Whitmore, Lindsey, Zheng, Helen, Benedek, Matthew, Currier, Jenna, Dresel, Mark, Duvvuru, Ashish, Dyszel, Britney, Fingar, Emily, Hennen, Elizabeth M., Kirsch, Michael, Khan, Ali A., Labrie‐Cleary, Charlotte, Laporte, Stephanie, Lenkeit, Evan, Martin, Kailey, Orellana, Marilyn, Ortiz‐Alvarez de la Campa, Melanie, Paredes, Isaac, Wheeler, Baleigh, Rupert, Allison, Sam, Andrew, See, Katherine, Soto Zapata, Santiago, Craig, Paul A., Hall, Bonnie L., Jiang, Jennifer, Koeppe, Julia R., Mills, Stephen A., Pikaart, Michael J., Roberts, Rebecca, Bromberg, Yana, Hoyer, J. Steen, Duffy, Siobain, Tischfield, Jay, Ruiz, Francesc X., Arnold, Eddy, Baum, Jean, Sandberg, Jesse, Brannigan, Grace, Khare, Sagar D., Burley, Stephen K.

    “…Understanding the molecular evolution of the SARS‐CoV‐2 virus as it continues to spread in communities around the globe is important for mitigation and future…”
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  7. 7

    Evolution of the SARS-CoV-2 proteome in three dimensions (3D) during the first 6 months of the COVID-19 pandemic by Lubin, Joseph H., Zardecki, Christine, Dolan, Elliott M., Lu, Changpeng, Shen, Zhuofan, Dutta, Shuchismita, Westbrook, John D., Hudson, Brian P., Goodsell, David S., Williams, Jonathan K., Voigt, Maria, Sarma, Vidur, Xie, Lingjun, Venkatachalam, Thejasvi, Arnold, Steven, Alfaro Alvarado, Luz Helena, Catalfano, Kevin, Khan, Aaliyah, McCarthy, Erika, Staggers, Sophia, Tinsley, Brea, Trudeau, Alan, Singh, Jitendra, Whitmore, Lindsey, Zheng, Helen, Benedek, Matthew, Currier, Jenna, Dresel, Mark, Duvvuru, Ashish, Dyszel, Britney, Fingar, Emily, Hennen, Elizabeth M., Kirsch, Michael, Khan, Ali A., Labrie‐Cleary, Charlotte, Laporte, Stephanie, Lenkeit, Evan, Martin, Kailey, Orellana, Marilyn, Ortiz‐Alvarez de la Campa, Melanie, Paredes, Isaac, Wheeler, Baleigh, Rupert, Allison, Sam, Andrew, See, Katherine, Soto Zapata, Santiago, Craig, Paul A., Hall, Bonnie L., Jiang, Jennifer, Koeppe, Julia R., Mills, Stephen A., Pikaart, Michael J., Roberts, Rebecca, Bromberg, Yana, Hoyer, J. Steen, Duffy, Siobain, Tischfield, Jay, Ruiz, Francesc X., Arnold, Eddy, Baum, Jean, Sandberg, Jesse, Brannigan, Grace, Khare, Sagar D., Burley, Stephen K.

    “…Abstract Understanding the molecular evolution of the SARS‐CoV‐2 virus as it continues to spread in communities around the globe is important for mitigation…”
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    Journal Article