Literature DB >> 2653650

Photoactivation and photocontrolled release of bioactive materials.

D Lohmann1, K Petrak.   

Abstract

Photoresponsive systems are widespread in nature, and life processes such as photosynthesis, vision, phototropism, and phototaxis are linked with structural changes of molecules caused by sunlight. Similar photochemical transformations can be employed to render synthetic agrochemicals and drugs active or to govern their bioavailability at the site of action. Related fundamental physical and chemical processes are discussed as part of the introductory paragraph. In agrochemical applications mainly three different ways have been reported as to how light can be utilized to optimize pesticidal effects in crop protection. The hypersensitization of certain pests to sunlight by chemical compounds represents an effective approach and exists also as a natural mechanism of defense. Photo-removable protective groups and various photoreactive structural moieties have successfully been applied for the rational design of light-activated propesticides. Finally, daylight can function as a triggering and governing factor in controlled-release systems based on photoresponsive polymers. Among the major advantages of light-regulated pesticides, the target-directed activation and the inherent detoxification predominate. In biomedical applications, light has also been used to activate compounds to time their action. Although radiation of various types (microwave, X-ray, and gamma radiation) has been used extensively for both treatment and diagnostics, the limited access of UV and visible light to most tissues of the body prevents its general use as the activating trigger. We review here three areas only: cutaneous photobiology-related applications; photoaffinity labeling; and porphyrins as therapeutic agents.

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Year:  1989        PMID: 2653650

Source DB:  PubMed          Journal:  Crit Rev Ther Drug Carrier Syst        ISSN: 0743-4863            Impact factor:   4.889


  1 in total

1.  Utilizing HaloTag Technology to Track the Fate of PCSK9 from Intracellular vs. Extracellular Sources.

Authors:  Xi Ai; Paul Fischer; Oksana C Palyha; Douglas Wisniewski; Brian Hubbard; Karen Akinsanya; Alison M Strack; Anka G Ehrhardt
Journal:  Curr Chem Genomics       Date:  2012-09-20
  1 in total

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