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Updated: May 30, 2026

Method for Novel Anti-Cancer Drug Development using Tumor Explants of Surgical Specimens
Published on: July 29, 2011
Method for novel anti-cancer drug development using tumor explants of surgical specimens
Kaushal Joshi1, Habibe Demir, Ryosuke Yamada
1Department of Neurological Surgery, The Ohio State University Medical Center.
Abstract:
The current therapies for malignant glioma have only palliative effect. For therapeutic development, one hurdle is the discrepancy of efficacy determined by current drug efficacy tests and the efficacy on patients. Thus, novel and reliable methods for evaluating drug efficacy are warranted in pre-clinical phase. In vitro culture of tumor tissues, including cell lines, has substantial phenotypic, genetic, and epigenetic alterations of cancer cells caused by artificial environment of cell culture, which may not reflect the biology of original tumors in situ. Xenograft models with the immunodeficient mice also have limitations, i.e., the lack of immune system and interspecies genetic and epigenetic discrepancies in microenvironment. Here, we demonstrate a novel method using the surgical specimens of malignant glioma as undissociated tumor blocks to evaluate treatment effects. To validate this method, data with the current first-line chemotherapeutic agent, temozolomide (TMZ), are described. We used the freshly-removed surgical specimen of malignant glioma for our experiments. We performed intratumoral injection of TMZ or other drug candidates, followed by incubation and analysis on surgical specimens. Here, we sought to establish a tumor tissue explant method as a platform to determine the efficacy of novel anti-cancer therapies so that we may be able to overcome, at least, some of the current limitations and fill the existing gap between the current experimental data and the efficacy on an actual patient's tumor. This method may have the potential to accelerate identifying novel chemotherapeutic agents for solid cancer treatment.
Insights
This study introduces a new method using patient tumor samples to test cancer drug effectiveness. This approach aims to better predict how treatments will work in patients, improving drug development for malignant glioma.
Area of Science:
- Oncology
- Translational Medicine
- Drug Discovery
Background:
- Current malignant glioma therapies offer limited palliative effects.
- Existing pre-clinical drug efficacy tests show discrepancies with patient outcomes.
- Limitations of current models include cell line alterations and xenograft model deficiencies.
Purpose of the Study:
- To develop a novel, reliable method for evaluating drug efficacy in pre-clinical malignant glioma research.
- To address the gap between experimental drug efficacy data and actual patient tumor response.
- To establish a tumor tissue explant platform for accelerated identification of novel anti-cancer therapies.
Main Methods:
- Utilized freshly-removed surgical specimens of malignant glioma as undissociated tumor blocks.
- Performed intratumoral injection of temozolomide (TMZ) and other drug candidates into tumor explants.
- Incubated and analyzed treatment effects on the surgical specimens.
Main Results:
- Demonstrated a novel method for evaluating treatment effects on malignant glioma surgical specimens.
- Validated the method using data from the first-line chemotherapeutic agent, temozolomide (TMZ).
Conclusions:
- The developed tumor tissue explant method offers a promising platform for determining novel anti-cancer therapy efficacy.
- This approach has the potential to overcome limitations of current pre-clinical models.
- The method may accelerate the identification of effective chemotherapeutic agents for solid cancers.

