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  2. Beta-lactam antibiotics - Wikipedia

    en.wikipedia.org/wiki/Beta-lactam_antibiotics

    β-lactam antibiotics (beta-lactam antibiotics) are antibiotics that contain a beta-lactam ring in their chemical structure. This includes penicillin derivatives ( penams ), cephalosporins and cephamycins ( cephems ), monobactams , carbapenems [1] and carbacephems . [2]

  3. Penicillin-binding proteins - Wikipedia

    en.wikipedia.org/wiki/Penicillin-binding_proteins

    Penicillin-binding proteins. PBPs normally catalyze the cross-linking of the bacterial cell wall, but they can be permanently inhibited by penicillin and other β-lactam antibiotics. (NAM = N-acetylmuramic acid; NAG = N-acetylglucosamine) [2] Penicillin-binding proteins ( PBP s) are a group of proteins that are characterized by their affinity ...

  4. Prebiotic (nutrition) - Wikipedia

    en.wikipedia.org/wiki/Prebiotic_(nutrition)

    Research. Preliminary research has demonstrated potential effects on calcium and other mineral absorption, immune system effectiveness, bowel acidity, reduction of colorectal cancer risk, inflammatory bowel disease (Crohn's disease or ulcerative colitis), hypertension and defecation frequency.

  5. Cefalexin - Wikipedia

    en.wikipedia.org/wiki/Cefalexin

    Cefalexin, also spelled cephalexin, is an antibiotic that can treat a number of bacterial infections. [4] It kills gram-positive and some gram-negative bacteria by disrupting the growth of the bacterial cell wall. [4] Cefalexin is a β-lactam antibiotic within the class of first-generation cephalosporins. [4]

  6. Beta decay - Wikipedia

    en.wikipedia.org/wiki/Beta_decay

    The two types of beta decay are known as beta minus and beta plus. In beta minus (β − ) decay, a neutron is converted to a proton, and the process creates an electron and an electron antineutrino ; while in beta plus (β + ) decay, a proton is converted to a neutron and the process creates a positron and an electron neutrino. β + decay is ...

  7. β-Lactamase inhibitor - Wikipedia

    en.wikipedia.org/wiki/Β-Lactamase_inhibitor

    The most important use of beta-lactamase inhibitors is in the treatment of infections known or believed to be caused by gram-negative bacteria, as beta-lactamase production is an important contributor to beta-lactam resistance in these pathogens.

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