Catalogue Search | MBRL
Search Results Heading
Explore the vast range of titles available.
MBRLSearchResults
-
DisciplineDiscipline
-
Is Peer ReviewedIs Peer Reviewed
-
Item TypeItem Type
-
SubjectSubject
-
YearFrom:-To:
-
More FiltersMore FiltersSourceLanguage
Done
Filters
Reset
8
result(s) for
"Corder, Amanda"
Sort by:
TanCAR: A Novel Bispecific Chimeric Antigen Receptor for Cancer Immunotherapy
by
Grada, Zakaria
,
Corder, Amanda
,
Heslop, Helen E
in
bispecific chimeric antigen receptor
,
cancer immunotherapy
,
Methods - Original
2013
Targeted T cells are emerging as effective non-toxic therapies for cancer. Multiple elements, however, contribute to the overall pathogenesis of cancer through both distinct and redundant mechanisms. Hence, targeting multiple cancer-specific markers simultaneously could result in better therapeutic efficacy. We created a functional chimeric antigen receptor'the TanCAR, a novel artificial molecule that mediates bispecific activation and targeting of T cells. We demonstrate the feasibility of cumulative integration of structure and docking simulation data using computational tools to interrogate the design and predict the functionality of such a complex bispecific molecule. Our prototype TanCAR induced distinct T cell reactivity against each of two tumor restricted antigens, and produced synergistic enhancement of effector functions when both antigens were simultaneously encountered. Furthermore, the TanCAR preserved the cytolytic ability of T cells upon loss of one of the target molecules and better controlled established experimental tumors by recognition of both targets in an animal disease model. This proof-of-concept approach can be used to increase the specificity of effector cells for malignant versus normal target cells, to offset antigen escape or to allow for targeting the tumor and its microenvironment.
Journal Article
Combinational Targeting Offsets Antigen Escape and Enhances Effector Functions of Adoptively Transferred T Cells in Glioblastoma
2013
Preclinical and early clinical studies have demonstrated that chimeric antigen receptor (CAR)-redirected T cells are highly promising in cancer therapy. We observed that targeting HER2 in a glioblastoma (GBM) cell line results in the emergence of HER2-null tumor cells that maintain the expression of nontargeted tumor-associated antigens. Combinational targeting of these tumor-associated antigens could therefore offset this escape mechanism. We studied the single-cell coexpression patterns of HER2, IL-13Rα2, and EphA2 in primary GBM samples using multicolor flow cytometry and immunofluorescence, and applied a binomial routine to the permutations of antigen expression and the related odds of complete tumor elimination. This mathematical model demonstrated that cotargeting HER2 and IL-13Rα2 could maximally expand the therapeutic reach of the T cell product in all primary tumors studied. Targeting a third antigen did not predict an added advantage in the tumor cohort studied. We therefore generated bispecific T cell products from healthy donors and from GBM patients by pooling T cells individually expressing HER2 and IL-13Rα2-specific CARs and by making individual T cells to coexpress both molecules. Both HER2/IL-13Rα2-bispecific T cell products offset antigen escape, producing enhanced effector activity in vitro immunoassays (against autologous glioma cells in the case of GBM patient products) and in an orthotopic xenogeneic murine model. Further, T cells coexpressing HER2 and IL-13Rα2-CARs exhibited accentuated yet antigen-dependent downstream signaling and a particularly enhanced antitumor activity.
Journal Article
Cadaver Anatomy Soft Skills Scale (CASSS): Design and preliminary validation of a tool to assess student perceptions of the impact of cadaveric anatomy instruction on soft skills for future healthcare workers
by
Howard, Amanda R.
,
Corder, Katelynn M.
,
Pierce, Camryn J.
in
Adult
,
Anatomy
,
Anatomy - education
2025
As technology becomes more advanced, the effectiveness and appropriateness of cadaver dissections has been called into question. In addition to academic effectiveness, cadaver dissection can lead to both positive and negative emotional responses, potentially affecting so-called “soft skills” associated with effective healthcare professionals. In particular, we are interested in the perceived effect of cadaveric dissection on empathy, confidence, and professional boundaries in students who have completed cadaveric dissection-based gross anatomy courses. In this study, we validate a new tool to assess these perceived effects using survey data from graduate students who have completed a graduate level gross anatomy course. This instrument was validated by evaluating convergent and divergent validity of the CASSS established through Pearson’s product moment correlations by correlating obtained factors with self-perceived general empathy, confidence, mortality, and professional boundaries scores. This tool will be useful for determining the impact that various anatomical education techniques have on the development of soft skills (empathy, confidence, and professional boundaries) associated with successful healthcare workers.
Journal Article
Lower Microscopy Sensitivity with Decreasing Malaria Prevalence in the Urban Amazon Region, Brazil, 2018–2021
by
Esquivel, Fabiana D.
,
Cavasini, Carlos E.
,
Fontoura, Pablo S.
in
Adolescent
,
Adult
,
Amazon Basin
2024
Malaria is increasingly diagnosed in urban centers across the Amazon Basin. In this study, we combined repeated prevalence surveys over a 4-year period of a household-based random sample of 2,774 persons with parasite genotyping to investigate the epidemiology of malaria in Mâncio Lima, the main urban transmission hotspot in Amazonian Brazil. We found that most malarial infections were asymptomatic and undetected by point-of-care microscopy. Our findings indicate that as malaria transmission decreases, the detection threshold of microscopy rises, resulting in more missed infections despite similar parasite densities estimated by molecular methods. We identified genetically highly diverse populations of Plasmodium vivax and P. falciparum in the region; occasional shared lineages between urban and rural residents suggest cross-boundary propagation. The prevalence of low-density and asymptomatic infections poses a significant challenge for routine surveillance and the effectiveness of malaria control and elimination strategies in urbanized areas with readily accessible laboratory facilities.
Journal Article
Ultrafast extreme ultraviolet photoemission without space charge
by
Bakalis, Jin
,
Corder, Christopher
,
Muraca, Amanda R.
in
Condensed matter physics
,
Energy
,
Experiments
2018
Time- and Angle-resolved photoelectron spectroscopy from surfaces can be used to record the dynamics of electrons and holes in condensed matter on ultrafast time scales. However, ultrafast photoemission experiments using extreme-ultraviolet (XUV) light have previously been limited by either space-charge effects, low photon flux, or limited tuning range. In this article, we describe XUV photoelectron spectroscopy experiments with up to 5 nA of average sample current using a tunable cavity-enhanced high-harmonic source operating at 88 MHz repetition rate. The source delivers >1011 photons/s in isolated harmonics to the sample over a broad photon energy range from 18 to 37 eV with a spot size of 58 × 100 μm2. From photoelectron spectroscopy data, we place conservative upper limits on the XUV pulse duration and photon energy bandwidth of 93 fs and 65 meV, respectively. The high photocurrent, lack of strong space charge distortions of the photoelectron spectra, and excellent isolation of individual harmonic orders allow us to observe laser-induced modifications of the photoelectron spectra at the 10−4 level, enabling time-resolved XUV photoemission experiments in a qualitatively new regime.
Journal Article
Ultrafast extreme ultraviolet photoemission without space charge
by
Bakalis, Jin
,
Corder, Christopher
,
Muraca, Amanda R.
in
Electrons
,
Excitation spectra
,
INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY
2019
We present photoelectron spectroscopy experiments using an 88 MHz cavityenhanced high-harmonic source operating from 8 to 40 eV. Nanoampere space-charge free sample photo currents enable us to record time-resolved photoelectron spectra from weakly excited samples.
Journal Article
Ultrafast extreme ultraviolet photoemission without space charge
by
Bakalis, Jin
,
Kershis, Matthew D
,
Corder, Christopher
in
Condensed matter physics
,
Experiments
,
Photoelectric effect
2018
Time- and Angle-resolved photoelectron spectroscopy from surfaces can be used to record the dynamics of electrons and holes in condensed matter on ultrafast time scales. However, ultrafast photoemission experiments using extreme-ultraviolet (XUV) light have previously been limited by either space-charge effects, low photon flux, or limited tuning range. In this article, we describe space-charge-free XUV photoelectron spectroscopy experiments with up to 5 nA of average sample current using a tunable cavity-enhanced high-harmonic source operating at 88 MHz repetition rate. The source delivers \\( > 10^11\\) photons/s in isolated harmonics to the sample over a broad photon energy range from 18 to 37 eV with a spot size of \\(58 100 \\; \\)m\\(^2\\). From photoelectron spectroscopy data, we place conservative upper limits on the XUV pulse duration and photon energy bandwidth of 93 fs and 65 meV, respectively. The high photocurrent, lack of space charge distortions of the photoelectron spectra, and excellent isolation of individual harmonic orders allow us to observe the laser-assisted photoelectric effect with sideband amplitudes as low as \\(6 10^-4\\), enabling time-resolved XUV photoemission experiments in a qualitatively new regime.