Showing posts with label Cancer. Show all posts
Showing posts with label Cancer. Show all posts
Monday, March 11, 2013

Dendrimers improve anticancer efficacy in lung metastasis model

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Dendrimers improve anticancer efficacy in lung metastasis model

The study involved a dendrimer formulation of the widely used cancer drug doxorubicin delivered via intra-tracheal administration, and was substantially more efficacious than doxorubicin alone in treating lung metastases of breast cancer.

The study was conducted as part of an ARC (Australian Research Council) funded collaboration with Monash Institute of Pharmaceutical Sciences (MIPS). It utilised a rat model which uses lung-resident secondary tumours (or metastases) derived from breast cancer cells. Lung metastases are particularly difficult to treat with conventional chemotherapeutic drugs, leading to a mortality rate of approximately 85% within 5 years, and existing treatments may often be considered palliative in nature. Commonly used treatments include doxorubicin, either alone or in combination with other agents.

In addition to the improvement in efficacy, the study also found that the dendrimer-doxorubicin formulation tended to remain in the lungs rather than passing into the body of the animal. This distribution pattern also creates the potential for reduced side effects, which are a significant problem with many cancer drugs, including doxorubicin.

Dr Jackie Fairley said: "The combination of Starpharma's dendrimers, an existing cancer drug and direct lung administration appears to yield a substantially more efficacious agent for treating lung metastases than the drug alone. Given the clinical management of lung metastases is an area of significant medical need, and current drugs often provide poor results, this finding has the potential to create a valuable and important application for Starpharma's proprietary dendrimer formulations."

Starpharma has recently filed a new patent based on these results as a precursor to further discussions with commercial partners.

Results and Methods

This rat lung metastasis model is intended to replicate the situation in humans in which breast cancer cells separate from the primary breast tumour and "metastasize" or spread, seeding new tumours to multiple points throughout a lung.

To conduct the study, rats were dosed with breast cancer cells by tail vein injection (Day 0). These tumour cells had been transfected with the luciferase gene allowing imaging of resultant tumours by a technique known as bioluminescent imaging. Following administration, breast cancer cells migrated to the lungs, lodged there and began to replicate, initially without treatment. From Day 7 different treatment formulations were administered to the rats twice a week for two weeks. At the end of the experiment (day 18-21, depending on the extent of tumour growth) all rats were sacrificed and an assessment was made of their lung pathology and degree of metastasis using both visual inspection of the gross pathology and bioluminescent imaging.

Work is now underway to further explore these findings, including examination of the effect of dosage in metastatic models and the testing of other dendrimer drug combinations. Starpharma is also investigating potential explanations for this finding including the observation that its dendrimer nanoparticles appear to be selectively concentrated in tumour tissue and within the lymphatic system - which plays an important role in tumour spread.

The work was conducted as part of an on-going collaboration between Starpharma and Professor Chris Porter, Dr Lisa Kaminskas, and their colleagues at MIPS. The collaboration is funded through the ARC linkage scheme and is exploring a range of novel applications of dendrimers as drug delivery systems. Data generated under this program also supports Starpharma's in-house oncology program including its proprietary dendrimer-docetaxel formulation being developed for intravascular use and due to enter the clinic later this year.

Starpharma's internal oncology program sits alongside a number of partnered drug delivery programs (including for a range of indications with Lilly, GSK and AstraZeneca), and Starpharma's development programs and commercial relationships based on VivaGel® in BV (bacterial vaginosis) and as a condom coating (licensed to Ansell and Okamoto).

Copyright © Starpharma Holdings Limited
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Sunday, March 10, 2013

New Nano-Based Method Found for Early Diagnosis of Prostate Cancer

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New Nano-Based Method Found for Early Diagnosis of Prostate Cancer

cancer
Immunosensors based on the nanocomposite of carbon nanotubes and ionic liquids were produced by the Iranian researchers fat Kurdistan University in order to diagnose prostate cancer. The immunosensor can be used in clinical and medical diagnoses.


It is vital to early diagnose cancer in order to improve the treatment for the patients. Nowadays, the need for reliable diagnosis tests has attracted the attention of many scientific societies in order to identify tumor markers in human serum. 

Prostate specific antigen (PSA) is known as a valuable biomarker for the treatment of patients who suffer from prostate cancer. The aim of this research was to design and to produce a nanocomposite by using carbon nanotubes and ionic liquids in order to be used in the production of sensitive, repeatable, simple, and cost-effective immunosensors for the measurement of tumor markers, especially, PSA tumor marker. 

Sandwich connection was used in this research in order to measure PSA. In this method, the stabilized antibody firstly entraps the related analyte (antigen), then the entrapped antigen is identified and measured with the help of the second marked antibody. Sandwich method has very high selectivity and sensitivity because it uses two similar antibodies. 

At the same time with its simplicity (the lack of the need for complicated synthesis procedures), the nanocomposite synthesized in this research increased the sensitivity in the process in comparison with other methods reported in the references due to its increase in the surface. The other advantage in the designing and production of immunosensors is that it does not need surface blocking materials such as bull albumin serum. The reduction in incubation time between antibody and antigen, and selectivity are among other characteristics of this immunosensor. 

Results of the research have been published in 2013 in Biosensors and Bioelectronics, vol. 42. For more information about the details of the research, visit the full paper on pages 439-446 on the same journal. 

Copyright © Fars News Agency
Image credit: www.wikipedia.org

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