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Jose Tapia Ramirez

Researcher at CINVESTAV

Publications -  16
Citations -  6005

Jose Tapia Ramirez is an academic researcher from CINVESTAV. The author has contributed to research in topics: Nanoparticle & Superparamagnetism. The author has an hindex of 9, co-authored 16 publications receiving 5269 citations. Previous affiliations of Jose Tapia Ramirez include Instituto Politécnico Nacional.

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The bactericidal effect of silver nanoparticles

TL;DR: The results indicate that the bactericidal properties of the nanoparticles are size dependent, since the only nanoparticles that present a direct interaction with the bacteria preferentially have a diameter of approximately 1-10 nm.
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Triple-Negative Breast Cancer: A Review of Conventional and Advanced Therapeutic Strategies

TL;DR: The resistance of TNBC to conventional therapeutic agents has helped in the advancement of advanced TNBC therapeutic approaches including hyperthermia, photodynamic therapy, as well as nanomedicine-based targeted therapeutics of drugs, miRNA, siRNA, and aptamers, which will also be discussed.
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Camphor-mediated synthesis of carbon nanoparticles, graphitic shell encapsulated carbon nanocubes and carbon dots for bioimaging.

TL;DR: A competent molecular fusion and fission route for step-wise synthesis of CDs, which possess excellent photostability, higher quantum yield, increased absorption, decreased cytotoxicity and hence can be utilized as a proficient bio imaging agent.
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Synthesis of adenosine triphosphate in intact cells of Rhodospirillum rubrum and Rhodopseudomonas spheroides on oxygenation or illumination.

TL;DR: The data tend to favor the existence of two separate electron-transport chains in these photosynthetic bacteria, which are blocked by substances which inhibit light-induced formation of ATP.
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Plasmonic/Magnetic Multifunctional nanoplatform for Cancer Theranostics

TL;DR: A multifunctional magneto-plasmonic CoFe2O4@Au core-shell nanoparticle developed by iterative-seeding based method can deliver 3-pronged theranostic applications viz., targeted drug-delivery, T2 MR imaging and hyperthermia.