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Milhan Telatar

Publications and source records attributed to Milhan Telatar.

3 recordsLinked to original sources

A novel method for creating artificial mutant samples for performance evaluation and quality control in clinical molecular genetics.

The lack of readily available, patient-derived materials for molecular genetic testing of many heterozygous or rare disorders creates a major impediment for laboratory proficiency and quality control procedures. The paucity of clinically derived mutation-positive samples could be surmounted if it were possible to construct artificial samples containing mutations of interest that would sufficiently resemble natural human samples. Such samples could then function as acceptable and realistic performance evaluation challenges and quality control reagents for recipient laboratories. Using the cystic fibrosis gene (CFTR) as a prototype, we have devised and executed experiments designed to generate unique DNA samples that could be used for these purposes. We used site-directed mutagenesis to generate mutations of interest in plasmid DNA derived from common bacterial artificial chromosome sources containing the cystic fibrosis transmembrane conductance receptor gene. CFTR mutations G85E and 1078delT were chosen to represent mutations in the original American College of Medical Genetics-recommended population-screening panel of 25 mutations. DNA samples containing predetermined concentrations and ratios of wild-type and mutated plasmids, bacterial artificial chromosomes of interest, and nonhuman genomic carrier DNA were characterized and tested in-house and in a group of nine pilot testing laboratories using a variety of technical platforms. The results indicate that these constructs, containing CFTR mutations in heterozygous and homozygous states, can serve as valid and accessible materials for quality assurance, including performance evaluation, proficiency testing, and assay quality control.

Cystic Fibrosis Transmembrane Conductance Regulato↗

Mitoxantrone/ifosfamide/etoposide salvage regimen with rituximab for in vivo purging in patients with relapsed lymphoma.

Treatment with the anti-CD20 antibody rituximab prior to stem cell collection may lead to tumor-free stem cell collections in patients with B-cell lymphoma undergoing autologous stem cell transplantation. To test the feasibility of obtaining polymerase chain reaction (PCR)-negative stem cell collection, 30 patients with a variety of B-cell lymphomas were enrolled in a protocol employing a common MINE (mitoxantrone/ifosfamide/etoposide) salvage regimen with rituximab (in vivo purging). Rituximab 400 mg/m2 was administered weekly for 3 weeks on days 1, 6, and 8 in relation to the last MINE cycle, which was followed by growth factor-stimulated peripheral stem cell collection. The median number of CD34(+) cells/kg was 2.5 million cells/kg collected over a median of 5 days. Polymerase chain reaction amplification for the t (14;18) or the heavy-chain gene rearrangement was performed prior to treatment and on the leukapheresis sample. Out of 15 patients who had a positive PCR signal prior to treatment, 10 had PCR-negative stem cell collections, whereas 5 had PCR-positive stem cell collections. After high-dose chemotherapy and stem cell transplant, all patients with a PCR-positive signal pretreatment became PCR negative. We conclude that rituximab may increase the yield of tumor-free stem cells. Higher rates of PCR negativity have been reported when more intense and protracted chemoimmunotherapy regimens have been employed. The magnitude of clinical benefit and the significance of the PCR analysis in stem cells after rituximab requires larger studies.

Adult↗