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D. Leszczynska

Researcher at Florida A&M University – Florida State University College of Engineering

Publications -  16
Citations -  331

D. Leszczynska is an academic researcher from Florida A&M University – Florida State University College of Engineering. The author has contributed to research in topics: Magnetic field & Liposome. The author has an hindex of 8, co-authored 16 publications receiving 322 citations.

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Superparamagnetic gel as a novel material for electromagnetically induced hyperthermia

TL;DR: In this article, superparamagnetic ferrite nanocrystals of approximately 10 nm were formed within the gel network by bridging anionic bis(ethylhexyl) sodium sulfosuccinate reverse micelles.
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Selective treatment of neoplastic cells using ferritin-mediated electromagnetic hyperthermia.

TL;DR: A new method of cancer treatment is proposed, based on the unique magnetic properties of ferritin iron core which is easily heated to temperatures sufficiently high to destroy neoplastic cells containing an excess of this protein, without damaging the normal cells.
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Blood-specific whole-body electromagnetic hyperthermia.

TL;DR: Subdomain dextran stabilized magnetite particles injected into the blood-stream can be efficiently heated using an external high-frequency magnetic field, which allows rapid and controllable delivery of heat to the patient's blood, which may be useful for the treatment of cancer and AIDS.
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Principles of magnetodynamic chemotherapy.

TL;DR: Using this method drug may be applied very selectively in the particular site of organism and this procedure may be repeated several times using e.g. stealth magnetoliposomes which are circulating in a blood-stream for several days.
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Efficient treatment of pigmented B16 melanoma using photosensitized long-circulating magnetofullerenosomes

TL;DR: Magnetic targeting was used for melanoma treatment with magnetofullerenosomes as discussed by the authors for 24 hours in C57 mice, followed by irradiation with an infrared laser pulse and subsequent illumination with a 776-nm diode laser for conventional photodynamic treatment.