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Updated: Jun 13, 2026

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
The chemotherapy of malignant melanoma
1Departments of Medicine, New England Deaconess Hospital and Sidney Farber Cancer Institute, and Department of Dermatology, Harvard Medical School, Boston, Massachusetts, U.S.A.
Abstract:
Advanced human malignant melanoma continues to be an intractable tumor unresponsive to most forms of therapy. We have been engaged in the design of selective agents for the chemotherapy of malignant melanoma based on the unique biochemical features within this tumor. Several analogues have been prepared with significant antitumor activity against experimental melanoma models, and these include levodopa, dopamine, and the nonneurotoxic analogue 3,4-dihydroxybenzy-lamine. Pending the clinical availability of the improved analogues, we have investigated the effects of levodopa and dopamine on advanced human malignant melanoma. Dopamine has been shown to cause a significant biochemical inhibition of tumor in 4 patients treated, but cardiovascular effects have precluded its repetitive use. The combination of levodopa/carbidopa has been used in an attempt to circumvent these toxicities as well as deliver drug to the central nervous system (CNS). Of 12 patients treated to date, 8 are evaluable, and there have been 4 significant clinical responses. Importantly, the plasma levels achievable with levodopa are in tumorici-dal range as predicted by in vivo assays (10(-5) M). One patient had a complete resolution of a CNS lesion as measured by CAT scan and a corresponding improvement in symptoms. Pending the availability of improved analogues, further study of the use of levodopa/carbidopa as therapy for malignant melanoma in humans appears warranted, and different methods of delivery, cither alone or in combination with conventional agents, will be explored.
Insights
Levodopa and dopamine show promise in treating advanced malignant melanoma. Levodopa/carbidopa combination therapy resulted in significant clinical responses, including CNS lesion resolution, warranting further investigation.
Area of Science:
- Oncology
- Pharmacology
- Biochemistry
Background:
- Advanced malignant melanoma is a challenging cancer with limited treatment options.
- Research focuses on developing targeted therapies based on unique tumor biochemistry.
- Levodopa, dopamine, and 3,4-dihydroxybenzy-lamine analogues show antitumor activity in preclinical models.
Purpose of the Study:
- To investigate the therapeutic effects of levodopa and dopamine in advanced human malignant melanoma.
- To evaluate the efficacy and safety of levodopa/carbidopa combination therapy.
- To explore novel treatment strategies for intractable melanoma.
Main Methods:
- Clinical investigation of dopamine treatment in 4 patients.
- Administration of levodopa/carbidopa combination therapy to 12 patients.
- Assessment of tumor response through clinical evaluation and CAT scans.
Main Results:
- Dopamine demonstrated significant tumor inhibition but was limited by cardiovascular side effects.
- Levodopa/carbidopa therapy in 8 evaluable patients yielded 4 significant clinical responses.
- One patient achieved complete resolution of a central nervous system lesion with levodopa/carbidopa.
Conclusions:
- Levodopa/carbidopa demonstrates therapeutic potential for advanced malignant melanoma.
- Achievable plasma levels of levodopa are within the predicted tumoricidal range.
- Further research into levodopa/carbidopa delivery methods, alone or in combination, is warranted.
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