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Biomedical subjects

M Ackerman

Publications and source records attributed to M Ackerman.

32 records · Page 2Linked to original sources

Risk factors and occult breast cancer in young women.

The National Cancer Institute guidelines for mammography in women 35--49 years old are challenged. Forty-nine occult breast cancer patients under 50 years of age were analyzed regarding risk factors and compared with an age-matched control group. Of the cancers, 86% would have been missed had NCI recommendations been followed. Results refuted the NCI guidelines and showed that late parity (over 28 years) and history of breast cancer in the extended family are statistically significant risk factors. Negative mode low-dose xeromammographic examinations permitted detection of 49 occult breast cancers, usually without axillary node metastases. Patients were screened because of risk factors enumerated in the article.

Adult↗

Xeromammography: five years and 559 carcinomas.

This study encompasses five years and includes 559 cancers, diagnosed at the Kaiser-Permanente Medical Center, Los Angeles, California. With current low-dose techniques, we have shown the efficacy of xeromammography, even in younger women. One third of the breast cancers, one third of the occult breast cancers, occurred in women under 50 years of age. Most important are the 161 occult cancers which were detected radiographically in these five years.

Adult↗

Indium-111-labeled antibody heavy metal chelate conjugates: a potential alternative to radioiodination.

An alternative method to radioiodination is outlined for labeling antibodies with a radioactive marker. The method requires the conjugation of the antibody molecule to chelating agents that contain a free amino group and are capable of binding heavy metal ions. Glutaraldehyde is the coupling agent used to bridge the free amino groups on both the chelate and the antibody molecules. 111In is then added to the antibody-chelate conjugate and is bound instantaneously by the chelating portion. Electrophoretic, autoradiographic, immunodiffusion, and hemagglutination techniques were used to confirm the integrity of the 111In-labeled antibodies.

Antigen-Antibody Reactions↗

Total patient recall.

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Appointments and Schedules↗

Insurance blues.

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Insurance, Dental↗

Murine retroviral vector producer cells survival and toxicity in the peritoneal cavity of dogs.

Retroviral vector producer cells (VPC) can effectively transfer genes in vivo. To develop a safe method to target gene delivery into intraperitoneal tumors, we have examined the toxicity of intraperitoneal (i.p.) infusion of retroviral VPC in a xenogeneic canine model. Mongrel dogs were injected intraperitoneally (i.p.) with 2 x 10(9) murine LTKOSN.2 VPC. The animals did not demonstrate acute toxicity and tolerated the i.p. infusion of the cells without difficulty. Starting 7 days after i.p. injection, the dogs received intravenous injections of ganciclovir (GCV) twice daily (5 mg/kg) for 7 days. The treatment dogs underwent peritoneal washings on days 3, 7 and 14 after their initial infusion of cells to study the persistence of the VPC. GCV treatment did not cause significant toxicities. Dogs underwent serial blood tests to evaluate bone marrow, renal, liver and immunological function. Complete blood counts, electrolytes and renal function remained normal throughout the study. Although, transient mild elevations occurred of serum alkaline phosphate, the remaining hepatic enzymes remained normal. Histologic examination of tissues from animals sacrificed after the i.p. administration of the VPC revealed no tissue destruction of the normal peritoneal lining. The dogs mounted an antibody response to the murine VPC that was first observed 7 days post injection. PCR analysis of selected tissues after GCV administration did not reveal persistent vector sequences. These results demonstrated that the injection of xenogeneic VPC is not accompanied by significant adverse effects over a 1 month period following administration into the canine peritoneal cavity. These data support the potential clinical application of the VPC in Phase I clinical trials in humans.

Alkaline Phosphatase↗