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Radiation therapy kills cancer cells in two ways depending on the effective energy of the radiative source. The amount of energy deposited as the particles traverse a section of tissue is referred to as the linear energy transfer (LET). X-rays produce low LET radiation, and protons and neutrons produce high LET radiation.
Lung cancer Photodynamic therapy: Nanoparticles can be used as carriers for photosensitizing agents. When exposed to light of a specific wavelength, these agents generate reactive oxygen species, which can kill cancer cells or damage their structural components. [4]
The resulting decay reaction yields high-energy alpha particles that kill the cancer cells that have taken up enough 10 B. All clinical experience with NCT to date is with boron-10; hence this method is known as boron neutron capture therapy (BNCT). [1]
A professor with the University of Texas at San Antonio has created a new method to kill cancer cells that are traditionally difficult to eradicate.
Despite the promises of early in vivo lab work, these viruses do not specifically infect cancer cells, but they still kill cancer cells preferentially. [38] While overall survival rates are not known, short-term response rates are approximately doubled for H101 plus chemotherapy when compared to chemotherapy alone. [38]
By selectively targeting caPCNA, it may be possible to kill cancer cells without affecting healthy tissues. [5] In vitro testing demonstrated that AOH1996 inhibited the growth and induced cell cycle arrest and apoptotic cell death in a wide variety of cancer cell lines, but had no effect on several normal, nonmalignant cell types.
Cancer cells can also cause defects in the cellular pathways of apoptosis (programmed cell death). As most chemotherapy drugs kill cancer cells in this manner, defective apoptosis allows survival of these cells, making them resistant. Many chemotherapy drugs also cause DNA damage, which can be repaired by enzymes in the cell that carry out DNA ...
An alkylating antineoplastic agent is an alkylating agent used in cancer treatment that attaches an alkyl group (C n H 2n+1) to DNA. [1] Since cancer cells, in general, proliferate faster and with less error-correcting than healthy cells, cancer cells are more sensitive to DNA damage—such as being alkylated. Alkylating agents are used to ...
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