🏆 Foundational Paper

Quantum dots for quantitative imaging: from single molecules to tissue.

Vu Tania Q, Lam Wai Yan, Hatch Ellen W, Lidke Diane S

📰 Cell and tissue research 📅 2015 📊 100 citations

Abstract

Since their introduction to biological imaging, quantum dots (QDs) have progressed from a little known, but attractive, technology to one that has gained broad application in many areas of biology. The versatile properties of these fluorescent nanoparticles have allowed investigators to conduct biological studies with extended spatiotemporal capabilities that were previously not possible. In this review, we focus on QD applications that provide enhanced quantitative information concerning protein dynamics and localization, including single particle tracking and immunohistochemistry, and finish by examining the prospects of upcoming applications, such as correlative light and electron microscopy and super-resolution. Advances in single molecule imaging, including multi-color and three-dimensional QD tracking, have provided new insights into the mechanisms of cell signaling and protein trafficking. New forms of QD tracking in vivo have allowed the observation of biological processes at molecular level resolution in the physiological context of the whole animal. Further methodological development of multiplexed QD-based immunohistochemistry assays should enable more quantitative analysis of key proteins in tissue samples. These advances highlight the unique quantitative data sets that QDs can provide to further our understanding of biological and disease processes.

🔬 Techniques

💻 Software

ZEN

✨ Fluorophores

🧪 Sample Preparation

🔬 Cell Lines

🏭 Microscope Brands

Zeiss PerkinElmer

🧪 Reagent Suppliers

📷 Detectors

APD

💻 Software Details

Image Acquisition:
ZEN
Image Analysis:
ImageJ inForm

🏛️ Research Organizations (ROR)

Affiliated research institutions:

📊 Figures

Figure 1

QDs are used in a range of biological imaging techniques

a) Single molecule detection provides high spatiotemporal resolution. Example of two-color QD tracking of QD-labeled EGF bound to EGFR (see also Low-Nam et al, 2011 ). b) Live cell imaging captures dy...

Figure 2

Single and multi-color QD Tracking of Extracellular and Intracellular Molecular Processes

a) Single QD tracking reveals heterogeneous trafficking dynamics of BDNF-TrkB receptor transport in neurons. Left: receptor trajectory overlaid on wide field cell image (gray). Right: Magnified view o...

Figure 3

Multiplex QD-immunohistochemistry

a) QD-IHC performed on human spleen tissue of a patient with aggressive systemic mastocytosis (tissue courtesy of Tracy George, MD). Staining includes anti-CD31 (QD565, blue), anti-tryptase (QD585, gr...

Figure images are served from the NIH/NLM PubMed Central Open Access Subset or Europe PMC; copyright remains with the publishers and authors.

🏛️ Imaging Facility

🏛️ United States Army

💬 Discussion

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