PubMed Health⌕ Search

Biomedical subjects

R Aiken

Publications and source records attributed to R Aiken.

5 recordsLinked to original sources

Intrathecal treatment of neoplastic meningitis due to breast cancer with a slow-release formulation of cytarabine.

DepoCyte is a slow-release formulation of cytarabine designed for intrathecal administration. The goal of this multi-centre cohort study was to determine the safety and efficacy of DepoCyte for the intrathecal treatment of neoplastic meningitis due to breast cancer. DepoCyte 50 mg was injected once every 2 weeks for one month of induction therapy; responding patients were treated with an additional 3 months of consolidation therapy. All patients had metastatic breast cancer and a positive CSF cytology or neurologic findings characteristic of neoplastic meningitis. The median number of DepoCyte doses was 3, and 85% of patients completed the planned 1 month induction. Median follow up is currently 19 months. The primary endpoint was response, defined as conversion of the CSF cytology from positive to negative at all sites known to be positive, and the absence of neurologic progression at the time the cytologic conversion was documented. The response rate among the 43 evaluable patients was 28% (CI 95%: 14-41%); the intent-to-treat response rate was 21% (CI 95%: 12-34%). Median time to neurologic progression was 49 days (range 1-515(+)); median survival was 88 days (range 1-515(+)), and 1 year survival is projected to be 19%. The major adverse events were headache and arachnoiditis. When drug-related, these were largely of low grade, transient and reversible. Headache occurred on 11% of cycles; 90% were grade 1 or 2. Arachnoiditis occurred on 19% of cycles; 88% were grade 1 or 2. DepoCyte demonstrated activity in neoplastic meningitis due to breast cancer that is comparable to results reported with conventional intrathecal agents. However, this activity was achieved with one fourth as many intrathecal injections as typically required in conventional therapy. The every 2 week dose schedule is a major advantage for both patients and physicians.

Adult↗

Regression of C6 rat brain tumors by cells expressing an antisense insulin-like growth factor I receptor RNA.

We have previously shown that C6 cells expressing an antisense insulin-like growth factor I receptor (IGF-IR) RNA are no longer tumorigenic in syngeneic rats, protecting them from subsequent subcutaneous tumor challenge and causing regression of established subcutaneous tumors. In the present study, we have investigated the efficacy of this strategy on intracerebrally implanted C6 rat glioblastoma cells. We demonstrate that C6 cells expressing an antisense IGF-IR RNA implanted for 24 h in the subcutaneous tissue of the rats are able to elicit an anti-tumor response in the brain, leading to complete brain tumor regression and long-term survival of the rats. These findings suggest the possibility of therapeutic intervention in human gliomas.

Animals↗

An adjustable collimator for stereotactic radiosurgery.

Stereotactic radiosurgery utilizing a linear accelerator is now carried out using small non-coplanar beams to produce a high-dose volume that is approximately spherical in shape. It is desirable to shape the high-dose region so that it is similar to the target volume thereby reducing the amount of healthy tissue irradiated by a high dose. An adjustable collimator has been developed that can be employed to control the target volume height and diameter. Based on film dosimetry and measurements made with a small parallel-plate ionization chamber it was determined that the beams produced by the collimator have properties that make them suitable for radiosurgery. The basic dosimetry parameters (output factors and tissue maximum ratios, TMR) needed for patient treatment were evaluated. It was found that the diameter and length of the high-dose region produced by the patient rotation method are related to the light-field size at 100 cm from the x-ray target. A more favourable dose distribution was found for the adjustable collimator as compared to treating the same volume by use of the two-target method.

Humans↗

Metronidazole in the treatment of metastatic brain tumors. Results of a controlled clinical trial.

We measured the effect of the radiation enhancer metronidazole on patients with metastatic brain tumors undergoing radiation therapy (RT) in a randomized controlled study. Metronidazole was given in a dose of 6 g/m2 4 hr before each of the first 3 doses of RT to the whole-brain. A total of 3000 rad was delivered in 6 doses. Patients were followed by serial neurological examinations and CT scans. The metronidazole group did not differ from the control group when measured in terms of survival, clinical improvement or improvement on CT scan, whether measured 2 months or 6 months following treatment. Nausea and vomiting was a significant side effect, preventing about 10% of patients from completing the treatment. Metronidazole appears to have no substantial radiation enhancing effect on metastatic brain tumors.

Anticonvulsants↗