Advanced microscopy solutions for monitoring the kinetics and dynamics of drug-DNA targeting in living cells.

نویسندگان

  • R J Errington
  • S M Ameer-Beg
  • B Vojnovic
  • L H Patterson
  • M Zloh
  • P J Smith
چکیده

Many anticancer drugs require interaction with DNA or chromatin components of tumor cells to achieve therapeutic activity. Quantification and exploration of drug targeting dynamics can be highly informative in the rational development of new therapies and in the drug discovery pipeline. The problems faced include the potential infrequency and transient nature of critical events, the influence of micropharmacokinetics on the drug-target equilibria, the dependence on preserving cell function to demonstrate dynamic processes in situ, the need to map events in functional cells and the confounding effects of cell-to-cell heterogeneity. We demonstrate technological solutions in which we have integrated two-photon laser scanning microscopy (TPLSM) to track drug delivery in subcellular compartments, with the mapping of sites of critical molecular interactions. We address key design concepts for the development of modular tools used to uncover the complexity of drug targeting in single cells. First, we describe the combination of two-photon excitation with fluorescence lifetime imaging microscopy (FLIM) to map the nuclear docking of the anticancer drug topotecan (TPT) at a subset of DNA sites in nuclear structures of live breast tumor cells. Secondly, we demonstrate how we incorporate the smart design of a two-photon 'dark' DNA binding probe, such as DRAQ5, as a well-defined quenching probe to uncover sites of drug interaction. Finally, we discuss the future perspectives on introducing these modular kinetic assays in the high-content screening arena and the interlinking of the consequences of drug-target interactions with cellular stress responses.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

The Effect of Plant-derived Compounds in Targeting Cancer Stem Cells

Background Cancer stem cells (CSCs) are a small subpopulation of cancer cells with self-renewal and differentiation ability. Furthermore, CSCs are resistant to chemoradiotherapy due to their high level of detoxifying enzymes, strong DNA repair abilities, and high drug efflux capacity. Objective Therefore, CSCs are supposed to account for cancer initiation, progression, metastasis, recurrence, ...

متن کامل

Applications of nanofibers in the diagnosis and treatment of cancer

When a cell’s DNA is damaged, the injured cells react by changing from normal to malignant cells, rather than dying or repairing the damage. Metastatic cancer is the deadliest kind of cancer since it refers to cancer that has spread to other parts of the patient’s body. The need for cancer detection techniques that are rapid, non-invasive, and accurate is growing. Cancer diagnosis, monitoring, ...

متن کامل

Studies on electron beam induced DNA damage and repair kinetics in lymphocytes by alkaline comet assay

Background: Exposure to ionizing radiation is known to induce oxidative stress followed by damage to critical biomolecules like lipids, proteins and DNA through radiolysis of cellular water. Since radiation has been widely used as an important tool in therapy of cancer, the detailed investigation regarding the DNA damage and repair kinetics would help to predict the radiation sensitivity of cel...

متن کامل

SRL-coated PAMAM dendrimer nano-carrier for targeted gene delivery to the glioma cells and competitive inhibition by lactoferrin

Glioma, as a primary tumor of central nervous system, is the main cause of death in patients with brain cancer. Therefore, development of an efficient strategy for treatment of glioma is worthy. The aim of the current study was to develop a SRL peptide-coated dendrimer as a novel dual gene delivery system for targeting the LRP receptor, an up-regulated gene in both BBB and glioma cells. To perf...

متن کامل

Hybridization kinetics is different inside cells.

It is generally expected that the kinetics of reactions inside living cells differs from the situation in bulk solutions. Macromolecular crowding and specific binding interactions could change the diffusion properties and the availability of free molecules. Their impact on reaction kinetics in the relevant context of living cells is still elusive, mainly because the difficulty of capturing fast...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • Advanced drug delivery reviews

دوره 57 1  شماره 

صفحات  -

تاریخ انتشار 2005