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In vitro effects and clinical evaluation of a human chorionic gonadotrophin preparation in acute leukemia
E J Feldman1, K Seiter, J W Chiao
1Zalmen A Arlin Cancer Research Institute, Westchester County Medical Center, New York Medical College, Valhalla 10595, USA.
Abstract:
Commercial human chorionic gonadotrophin (HCG) preparations decrease the tumorigenicity of human tumors in immunodeficient mice and induce apoptotic cell death in animal tumor models. Preliminary studies in humans have demonstrated tumor regression in patients with Kaposi's sarcoma given intralesional injections of HCG. To further evaluate HCG's antitumor activity we conducted in vitro and clinical evaluations of HCG in acute myeloid leukemia (AML). In HL-60 leukemic cell lines, a 20-40% inhibition of cell density was demonstrated by trypan blue exclusion method at low concentrations of an HCG preparation (2 x 10(-3)-2 x 10(-2)). Similar concentrations also resulted in a reduction in the proportion of cells in G2M phase of the cell cycle, as well as enhanced differentiation compared to control cells. Fifteen patients with advanced AML with marrow blast counts >30%, and five with marrow blast counts between 10 and 26% were given daily subcutaneous injections of HCG 2-4 IU and oral levamisole 50 mg weekly. Five patients with absolute blast counts in the blood ranging from 0 to 3500/microl and percent blasts in the marrow ranging from 16 to 81% were observed to have no progressive increase in either marrow or peripheral blast counts for 70-121 days. One patient with a pretreatment blast count of 10% in the marrow, no circulating blasts and minor cytopenias had a decrease in marrow blasts to less than 5% which has persisted at 550 days. No significant improvement from baseline levels of neutrophils, hemoglobin or platelets were observed in any nl the patients treated. Increases in apoptotic cell death were observed in over 50% of patients' cells with some demonstrating peak levels similar to experiences in patients treated with DNA-damaging chemotherapy. A decreased expression of bcl-2 was seen in the majority of patients ranging from 6 to 62%. These new observations suggest that HCG preparations may inhibit leukemic cell growth through enhancement of cell death mechanisms and could be used in judicious combinations with other approaches. The results confirm the pro-apoptotic effects of HCG preparations reported in patients with Kaposi's sarcoma. Identification of the active component of HCG preparations and further understanding of its growth modulatory action will be important in its development as a clinically useful agent.
Insights
Human chorionic gonadotrophin (HCG) demonstrated antitumor effects in acute myeloid leukemia (AML) cell lines and patients. HCG induced leukemic cell death and differentiation, suggesting potential as a novel AML therapy.
Area of Science:
- Oncology
- Immunology
Background:
- Commercial human chorionic gonadotrophin (HCG) preparations exhibit antitumorigenic properties in animal models.
- Preliminary human studies showed tumor regression in Kaposi's sarcoma patients treated with HCG injections.
Purpose of the Study:
- To evaluate the in vitro and clinical antitumor activity of HCG in acute myeloid leukemia (AML).
Main Methods:
- In vitro studies used HL-60 leukemic cell lines to assess HCG's effect on cell density, cell cycle, and differentiation.
- Clinical evaluation involved daily subcutaneous injections of HCG (2-4 IU) and weekly oral levamisole (50 mg) in AML patients with advanced disease.
Main Results:
- In vitro, low HCG concentrations inhibited leukemic cell density, reduced G2M phase cells, and enhanced differentiation.
- Clinically, five patients showed no progressive increase in blast counts for 70-121 days; one patient achieved sustained remission (>550 days).
- Over 50% of patients exhibited increased apoptotic cell death, with decreased bcl-2 expression observed in the majority.
Conclusions:
- HCG preparations show promise in inhibiting leukemic cell growth by enhancing cell death mechanisms.
- HCG's pro-apoptotic effects in AML align with previous findings in Kaposi's sarcoma.
- Further research into HCG's active component and growth modulatory actions is crucial for clinical development.