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J H Hilgers

Publications and source records attributed to J H Hilgers.

4 recordsLinked to original sources

Clinical applications of monoclonal antibodies against ovarian cancer-associated antigens.

Monoclonal antibodies (McAbs), reactive with tumour-associated antigens (TAAs) present on tumour cells, appear to offer new possibilities in the diagnosis and treatment of cancer (Table I). In addition to these prospects for clinical application, monoclonal antibodies also serve as useful instruments in basic cancer research. The hybridoma technology initiated by Köhler and Milstein in 1975, underwent a very rapid development and has now shown its potential in the field of oncology. This technique made it possible to produce very large quantities of homogeneous antibodies of a stable quality. These McAbs often recognize only one antigenic determinant, or epitope, of cell surface and other molecules. This high specificity is essential for in vivo applications, especially in therapeutic immunotargeting. A central question is whether the antibodies can reach and identify those antigens on ovarian tumour cells that are not shared with normal tissues. Various antibodies have been described in the field of gynaecological oncology, which are assumed to be capable of recognizing such ovarian tumour-related antigens. These McAbs, single or in combination, are capable of showing, unambiguously, the presence of various tumour-associated antigens on ovarian carcinoma cells either in tissue or, when antigen shedding occurs, in blood. However, these McAbs may also react with tumour-associated antigens present on endometrial, cervical, colorectal, breast or other carcinoma cells. The original immunogens used to generate these McAbs differ as to their origin: ovarian cancer cells, breast cancer cells, human milk-fat preparations, trophoblastic cells, endometrial cancer cells have been used as well as osteogenic sarcoma cells, epidermoid carcinoma cells and small-cell lung cancer, colorectal, pancreatic and laryngeal carcinoma cells. The histological distribution patterns of the antigens recognized by these McAbs vary widely: cross-reactions with normal tissue and with carcinomas different from those used as immunogen are frequently seen.

Antibodies, Monoclonal

A new iris retractor.

I successfully used the iris-lasso, a new iris retractor in the form of a stainlless steel wire. The iris-lasso is simple to maneuver, suitable for microsurgery, and particularly useful in patients with small pupils.

Cataract Extraction

Rapid separation of cells at unit gravity.

An apparatus is described for the rapid separation of cells at unit gravity. The apparatus is filled with a discontinuous density gradient, followed by the sample and then an overlay. The sedimentation chamber is turned from a vertical to a horizontal position before sedimentation takes place in order, (a) to form a continuous gradient out of the discontinuous gradient and, (b) to reduce the time required for the separation. After the sedimentation is completed the chamber is returned to a vertical position and the gradient fractionated by hydrostatic pressure using a newly developed floating device. The usefulness of the method is illustrated by the separation of leukemia cells in different phases of the life cycle.

Animals

Murine leukaemia virus group-specific antigen in tumor-resistant tetraparental AKR reversible CBA/H-T6 chimaeras.

Various facts are now known about the relative lymphoma resistance of a group of tetraparental AKR reversible CBA/H-T6 chimaeras derived by early embryo aggregation. Firstly, their tumour resistance is not due to the lack of the lymphomaprone AKR cells. Secondly, results showing titres of MuLV-gs antigen comparable with, and occasionally in excess of, those in the AKR suggest that the tumour resistance of the chimaeras is unlikely to be due to a lack of oncogenic leukaemia virus. However, in marked contrast to the AKR, antibody-viral antigen renal complexes in the chimaeras were minimal. Lack of viral antigens could not explain the relative lack of renal complexes. Absence of the corresponding anti-viral antibody is the most likely explanation and this has to be attributed to the CBA component of the tetraparental AKR reversible CBA/H-T6 chimaeras. We suggest that with tolerance to the leukaemia virus being maintained and in the absence of anti-viral antigenic complexes, tumour-specific sites can be recognized and thus tumours are eliminated. This hypothesis remains to be proven.

AKR murine leukemia virus