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Richard E Hill

Publications and source records attributed to Richard E Hill.

4 recordsLinked to original sources

Regulatory considerations for marker vaccines and diagnostic tests in the U.S.

Marker vaccines and diagnostic tests can prove to be invaluable in disease eradication and control programs, as was found in the pseudorabies (Aujeszky's Disease) virus eradication program in the U.S. During that campaign, numerous gene-deleted vaccines and companion diagnostic test kits were used to differentiate infected animals from vaccinated animals, in a strategy that ultimately led to eradication of the disease in commercial swine herds. The United States Department of Agriculture played a key role in delivery of that success by developing biologics policy, evaluating each product, and ensuring that the conditions of licensure were met. What was most critical in the overall eradication effort, however, was the detailed and dedicated interaction among key players: the biologics regulators, manufacturers, Federal, State, and local regulatory partners, veterinary researchers, industry associations, and animal owners. A good disease control program has to include all of these. The regulatory requirements for licensure of marker vaccines and diagnostic test kits are not different from that for other products. There are several mechanisms for vaccine approval, some more rapid than others, but only a few that could apply to these products. Generally, the platforms that might support marker vaccines and companion diagnostic kits are those based on genetic engineering or protein manipulation. If the product is derived from the application of biotechnology, then additional regulatory considerations are applicable. Most important of these are the considerations found in the National Environmental Policy Act (NEPA), wherein deliberate release of any organism containing recombinant DNA into the environment is subject to review and approval by appropriate federal agencies. Environmental release and NEPA compliance are discussed.

Animal Diseases↗

Expression pattern of mouse homolog of prostate-specific membrane antigen (FOLH1) in the transgenic adenocarcinoma of the mouse prostate model.

BACKGROUND: Prostate specific membrane antigen (PSMA) is expressed on the plasma membrane of normal prostate and in primary and metastatic prostate cancer in humans. Recently, a mouse homolog of PSMA (FOLH1) was identified that shares an 85% sequence homology with human PSMA. The transgenic adenocarcinoma of the mouse prostate (TRAMP) model displays spontaneous tumor development with age and metastasizes to tissues similar to human prostate cancer. This study characterized the expression of Folh1 in the TRAMP model to determine if the TRAMP would be a useful model system to evaluate PSMA-directed targeting strategies. METHODS: A sensitive, real-time quantitative PCR assay was developed to measure Folh1 cRNA copy number in various tissues of 30-32-week-old TRAMP+ and age-matched, nontransgenic controls (TRAMP-). RESULTS: Of the tissues studied, the highest expression of Folh1 was observed in the kidney and brain of both TRAMP+ and TRAMP- mice. Low levels of Folh1 cRNA (1-2 copies/ng total RNA) were detected in the tumor and lymph nodes of TRAMP+ mice and in the seminal vesicles and lung of the TRAMP+ and TRAMP- mice. The expression of Folh1 mRNA was sixfold higher in the prostate of 32-week-old TRAMP- mice compared to the tumor of 32-week-old TRAMP+ mice. The rank order of the Folh1 expression in the tissues studied was kidney > brain > prostate > tumor > lymph nodes > lung > seminal vesicles > liver. Folh1 mRNA was undetectable in the bone marrow of both TRAMP+ and TRAMP- mice. Folate hydrolase activity assayed in the kidney, brain, lung, and liver paralleled the expression of Folh1 mRNA in these tissues. CONCLUSIONS: We demonstrate that Folh1 is expressed at very high levels in some normal mouse tissues including the prostate gland and that the expression is not upregulated in the tumor of 32-week-old TRAMP+ mice.

Adenocarcinoma↗

Immunization against luteinizing hormone-releasing hormone fusion proteins does not decrease prostate cancer in the transgenic adenocarcinoma mouse prostate model.

This study was undertaken to test the effect of immunization against luteinizing hormone-releasing hormone (LHRH) fusion proteins on the development and progression of prostate cancer in the transgenic adenocarcinoma mouse prostate (TRAMP) model. Two LHRH fusion proteins, ovalbumin with seven LHRH peptides (OV-LHRH-7), and thioredoxin with seven LHRH peptides (TH-LHRH-7) were used in a cocktail vaccine. Two groups of male TRAMP mice were immunized with the cocktail. Primary immunizations were at either 4 or 8 weeks of age. LHRH immunized mice (n=19) were compared with castrated (n=19) and intact mice (n=18) for testosterone concentration, tumor weight, and lifespan. Immunization against LHRH in the TRAMP mice resulted in significant production of antibodies to LHRH compared with surgically castrated and intact control mice. Testicular weight was significantly reduced in the LHRH immunized groups compared with intact control mice. Serum testosterone was reduced (P<0.05) in the immunized mice compared with intact control mice and was not different from that of castrated mice (P>0.05). Tumor weight was variable and inconsistent throughout all treatment groups. Lifespan was not increased by immunization against LHRH or castration. Intact control mice (lived the longest (227+/-11 days), whereas immunized mice lived 206+/-11 days and castrated mice lived 213+/-13 days. Tumors from immunized TRAMP mice appeared more aggressive than tumors of castrated and intact mice, as demonstrated by 35% expression of gross lung tumors in the immunized mice whereas none were observed in the castrated or intact TRAMP mice. Prostate cancer is initially dependent upon androgens for growth and development, but cells have the ability to escape androgen dependence and progress to an androgen independent state, which was evident in this study. The TRAMP mouse model immunized against LHRH may have utility in future studies and treatments of the androgen independent prostate cancer.

Adenocarcinoma↗