Services:Assay Development+++BSL-2 Flow Cytometry+++Cell Sorting+++Cell Sorting (Assisted &
amp
Unassisted)+++Consultation (experimental Design, Data Analysis)+++Droplet Digital PCR+++ELISpot+++Experimental Design+++Experimental Support And Advice+++FACS Cell Sorting+++Flow Cytometry+++Flow Cytometry Data Analysis+++Flow Cytometry Sample Processing+++Flow Cytometry Software And Support+++Flow Cytometry Training +++Full Spectrum Flow Cytometry+++Grant Proposal Preparation+++Immunoassay+++Instrument Training+++Method Development+++Multiparameter Flow Cytometry Assays+++Plate-based Flow Cytometry+++Single-cell Sorting+++Spectral Flow Cytometry+++Training - Cell Sorters
RRID: RRID:SCR_028833
Other CIDs: 5P20GM113117-10
Description:The University of Kansas Flow Cytometry Core (FCC) provides access to flow cytometry and cell sorting instrumentation and expertise to researchers. Services and training are provided for flow cytometry: cell sorting and multi-parametric analysis of individual cells in solution, calculated from their fluorescent or light scattering characteristics. The FCC provides assistance in sample processing, data analysis, instrument training, software support, method and grant assistance, manuscript support, and consulting. The FCC is a 980 ft2 BSL-2 facility equipped with BD FACSymphony S6 and FACSAria Fusion cell sorters, a Cytek Aurora spectral flow cytometer, an Agilent NovoCyte Advanteon conventional flow cytometer, and other supplemental assay instrumentation (Bio-Rad QX600 ddPCR, C.T.L ImmunoSpot). The flow cytometry analyzers provide users with tube- and plate-based, conventional and spectral flow cytometry. The BD FACS instruments allow measurement and sorting of up to 6 resolved populations of cells simultaneously, based on up to 50 parameters of detection using 18 simultaneous fluorochromes. The facility is equipped to handle BSL-2 samples and perform aseptic and single cell sorting into tubes or 96-well plates. The facility provides instrument training for users who desire to become self-operators of the facility instruments. The FCC will equip CBID researchers with tools directly applicable to infectious disease research, such as identifying and characterizing infectious agents such as bacteria and parasites, quantification and sorting of cells infected with microbial pathogens, and assessing chemical probe efficacy against infectious agents. The University of Kansas Flow Cytometry Core seeks to assist the academic community in achieving their research goals.
This facility provides services outside its institution
This facility provides consulting outside its institution
Services:3D Printing+++3D Profilometry (WLI)+++Atomic Force Microscopy+++DC Magnetron Sputtering+++E-Beam Deposition+++Ellipsometry+++Glass Microfluidics+++Hot Embossing+++Hydrofluoric Acid Etching+++Inductively Coupled Plasma Reactive Ion Etching+++Laser Cutting/Engraving+++Maskless Lithography+++Micro-Pattern Generation+++Microfabrication+++Muffle Furnace+++Nano-Imprint Lithography+++Nanofabrication+++Photolithography+++Photomask Writing+++Plasma Ashing+++Plasma-Enhanced Chemical Vapor Deposition+++Polydimethylsiloxane (PDMS) Microfluidics+++Probe Station+++Scanning Electron Microscopy+++Scanning Electron Microscopy (SEM) - Elemental Analysis (EDS)+++Scanning Electron Microscopy (SEM) - Variable Pressure+++Soft Lithography+++Spin Coating+++Sputter Coating+++Stylus Profilometry+++Tensiometry+++Thermoplastic Microfluidics+++Thin Film Deposition+++Tube Furnace+++Wafer Dicing+++Wet And Dry Etching+++Wire Bonding
Google Maps Location
RRID: RRID:SCR_028756
Other CIDs: 5P30GM145499-04
Description:The University of Kansas Nanofabrication Facility (KUNF) is a Core Lab supported by the KU Office of Research and the Center for Molecular Analysis of Disease Pathways COBRE. The KUNF primarily caters to researchers who are manufacturing micro- and nanofluidic devices for biomedical research, but has the equipment and resources to also accommodate broad research applications with micro- and nanofabrication needs. The facility consists of about 1,300 ft2 of ISO class 5, 1,700 ft2 of ISO class 6 and 1,250 ft2 of ISO class 7 cleanroom space, housing tools and materials for techniques including photolithography, nano-imprint lithography, plasma (dry) etching (ICP-RIE), wet etching, thin film deposition, scanning electron microscopy (VP-SEM), atomic force microscopy, contact angle goniometry, ellipsometry, profilometry, wafer dicing, wire bonding, laser ablation and engraving, 3D printing, hot embossing, and COMSOL software for device modeling. In addition, the facility has numerous microscopes for general inspection, ovens and furnaces, ultrapure water, and dedicated process fume hoods. Services and usage of the facility are available to researchers from all Kansas universities. Training is provided to new investigators and graduate students in the use of micro- and nanofabrication procedures and equipment. In addition, researchers from both non-Kansas academic and private industry institutions may contract with the facility for consultation and services, including access to the facility. Hourly and per-use rates apply for facility access, equipment usage, and staff labor. Consultation is free.
This facility provides services outside its institution
This facility provides consulting outside its institution
Services:Alphafold+++Computational - Application Development+++Computational - Bioinformatics+++Computational - High Performance Computing+++Computational Biology+++Computational Chemistry+++Hit-to-Lead Optimization+++Molecular Dynamics+++Molecular Modeling+++Peptide Docking+++Protein Design+++Small Molecule Docking+++Virtual Screening
Resources:
Google Maps Location
Description:The University of Kansas Computational Chemical Biology and Molecular Modeling Core (CCBMM) provides the computational resources and expertise to enhance the productivity of researchers in a variety of fields, including biology, biochemistry, medicinal chemistry, pharmacology, and pharmaceutical chemistry. The CCBMM has the tools and expertise to perform virtual screening, protein-small molecule docking, binding site prediction, protein modeling and design, prediction of protein stability changes upon mutation, fragment based probe design, molecular dynamics, as well as preparation of presentation graphics.
With the introduction of Alphafold, the CCBMM has significant expertise in interpreting results, modeling specific ligands and/or alternate states that weren‘t returned by Alphafold, and virtual screening against Alphafold models, which often are not suitable for a traditional virtual screen. This is accomplished through out specialization in initial hit identification of non-traditional drug targets such as structures lacking pre-formed small molecule binding site or protein-RNA interfaces by offering high-throughput virtual screening via pocket optimization with exemplar screening at protein-protein interfaces and hotspot pharmacophore mimicry of protein-RNA interactions.
We look forward to working with you in any stage of your project, from hypothesis formation, gathering of preliminary data for grant submissions, long-term collaborations, all the way to providing a figure to put the finishing touch on your manuscript.
This facility provides services outside its institution
This facility provides consulting outside its institution
Resources:Molecular Structure and Modeling
Google Maps Location
Description:Provides or assists with docking and virtual screening of small molecule ligands against protein targets of interest, molecular dynamics simulation and modeling of small/macro molecules, proteins, and biomolecular systems, analysis of structure-activity relationships, visualization and graphics of biomolecules and biomolecular systems, and custom algorithm/software development along with databases and web applications.
This facility does not provide services outside its institution
This facility does not consult outside its institution