Search ResultsElectronic Resources 
by
Shadrick, Melanie, author.
Format:
Excerpt:
, as well as pathogens attacks, and overexpression in cancer cells.
by
Youssef, Sarah, author.
Format:
Excerpt:
cells regardless of the cancer type have lower sound speed comparing to healthy skin cells. The melanoma
by
Hernandez Rodriguez, Omar, author.
Format:
Excerpt:
Proton beam therapy for cancer treatment uses high-energy protons to destroy cancer cells, a
by
Badar, Jumana, author.
Format:
Excerpt:
cellular fitness; characteristics of cancer cells. Even though, a basic causal relationship between
by
Xu, Yuanming, author.
Format:
Excerpt:
, production of IL-2, and differentiation into T helper (Th)1 and Th17 cells, and consequently protected mice
by
Giridharan, Thejaswini, author. (orcid)0000-0003-0512-577X
Format:
Excerpt:
whole body heating, has been developed as cancer therapy to target and kill cancer cells. This approach
by
Venkatesh, Hrishi, author.
Format:
Excerpt:
-immune cells when pathogenic or self-nucleic acid is recognized by cytosolic sensors such as STING. In the
by
Wang, Siwen, author.
Format:
Excerpt:
limits the replication capacity of cells. Telomerase is over-expressed in 85--90% of cancer cells
by
Pulliam, Nicholas, author.
Format:
Excerpt:
-dependent manner, ovarian and breast cancer cells to PARPi. In addition, DNMTi enhanced PARP 'trapping' by
by
Ramirez, Mireya Nael, author.
Format:
Excerpt:
-induced ferroptosis in cancer cells and glutamate-induced cell death in neurons can be inhibited by Ferrostatin-1 (Fer
by
Solitro, Abigail Rae, author.
Format:
Excerpt:
damaged organelles and macromolecules from the cell and supply metabolic processes. Cancer cells exploit
by
MacLeod, Haley, author.
Format:
Excerpt:
-drug conjugates (ADCs) against NB in vitro. This present study validates the potential for AgNPs as an anti-cancer

Select an Action





