James A Piper
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Explore the profile of James A Piper including associated specialties, affiliations and a list of published articles.
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Citations
648
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Recent Articles
1.
Sayyadi N, Justiniano I, Wang Y, Zheng X, Zhang W, Jiang L, et al.
Sci Rep
. 2022 Nov;
12(1):18452.
PMID: 36323734
Two molecular cytology approaches, (i) time-gated immunoluminescence assay (TGiA) and (ii) Raman-active immunolabeling assay (RiA), have been developed to detect prostate cancer (PCa) cells in urine from five prostate cancer...
2.
Cao Y, Wu J, Zheng X, Lu Y, Piper J, Lu Y, et al.
Anal Chim Acta
. 2022 May;
1209:339863.
PMID: 35569873
Surface modification and functionalization is typically required to engineer upconversion nanoparticles (UCNPs) for biosensing and bioimaging applications. Nevertheless, despite various antibody conjugation methods having been applied to UCNPs, no consensus...
3.
Liu H, Piper J, Li M
Anal Chem
. 2021 Jul;
93(31):10955-10965.
PMID: 34323465
Water-in-oil-in-water (w/o/w) double emulsion (DE) encapsulation has been widely used as a promising platform technology for various applications in the fields of food, cosmetics, pharmacy, chemical engineering, materials science, and...
4.
Liu H, Xu X, Peng K, Zhang Y, Jiang L, Williams T, et al.
Biotechnol Bioeng
. 2020 Oct;
118(2):647-658.
PMID: 33022743
Yeast has been engineered for cost-effective organic acid production through metabolic engineering and synthetic biology techniques. However, cell growth assays in these processes were performed in bulk at the population...
5.
De Camillis S, Ren P, Cao Y, Ploschner M, Denkova D, Zheng X, et al.
Nanoscale
. 2020 Oct;
12(39):20347-20355.
PMID: 33006350
Upconversion nanoparticles (UCNPs) exhibit unique optical properties such as photo-emission stability, large anti-Stokes shift, and long excited-state lifetimes, allowing significant advances in a broad range of applications from biomedical sensing...
6.
Cao Y, Zheng X, De Camillis S, Shi B, Piper J, Packer N, et al.
Nano Lett
. 2020 Sep;
20(12):8487-8492.
PMID: 32936645
Lanthanide-based upconversion nanoparticles (UCNPs) generally require high power laser excitation. Here, we report wide-field upconversion microscopy at single-nanoparticle sensitivity using incoherent excitation of a 970 nm light-emitting diode (LED). We...
7.
Ploschner M, Denkova D, De Camillis S, Das M, Parker L, Zheng X, et al.
Opt Express
. 2020 Aug;
28(16):24308-24326.
PMID: 32752412
Upconversion nanoparticles (UCNPs) are becoming increasingly popular as biological markers as they offer photo-stable imaging in the near-infrared (NIR) biological transparency window. Imaging at NIR wavelengths benefits from low auto-fluorescence...
8.
Wang Y, Sayyadi N, Zheng X, Woods T, Leif R, Shi B, et al.
Lab Chip
. 2020 Jan;
20(3):655-664.
PMID: 31934716
Time-resolved luminescence detection using long-lived probes with lifetimes in the microsecond region have shown great potential in ultrasensitive and multiplexed bioanalysis. In flow cytometry, however, the long lifetime poses a...
9.
Li D, Jiang L, Piper J, Maksymov I, Greentree A, Wang E, et al.
ACS Sens
. 2019 Aug;
4(9):2507-2514.
PMID: 31436434
The sensitive and simultaneous detection of cytokines will provide new insights into the physiological process and disease pathways due to the complex nature of cytokine networks. However, the key challenge...
10.
Denkova D, Ploschner M, Das M, Parker L, Zheng X, Lu Y, et al.
Nat Commun
. 2019 Aug;
10(1):3695.
PMID: 31420541
Sub-diffraction microscopy enables bio-imaging with unprecedented clarity. However, most super-resolution methods require complex, costly purpose-built systems, involve image post-processing and struggle with sub-diffraction imaging in 3D. Here, we realize a...