Antimicrobial principles
Read the topic background here, then explore the labeled visual and structured learning explanations on this page.
Read explanation on this page ↓ See diagram ↓Antimicrobial — on-site reading
This reference extract addresses Antimicrobial, a related subject. It does not cover every part of Antimicrobial principles.. The article introduction is reproduced here, so you do not need to leave MedAtlas to read it. It may not match the latest official medical guidance.
An antimicrobial is an agent that kills microorganisms (microbicide) or stops their growth (bacteriostatic agent). Antimicrobial medicines can be grouped according to the microorganisms they are used to treat. For example, antibiotics are used against bacteria, and antifungals are used against fungi. They can also be classified according to their function. Antimicrobial medicines to treat infection are known as antimicrobial chemotherapy, while antimicrobial drugs are used to prevent infection, which known as antimicrobial prophylaxis.
The main classes of antimicrobial agents are disinfectants (non-selective agents, such as bleach), which kill a wide range of microbes on surfaces to prevent the spread of illness, antiseptics which are applied to living tissue and help reduce infection during surgery, and antibiotics which destroy microorganisms within the body. The term antibiotic originally described only those formulations derived from living microorganisms but is now also applied to synthetic agents, such as sulfonamides or fluoroquinolones. Though the term used to be restricted to antibacterials, its context has broadened to include all antimicrobials. In response, further advancements in antimicrobial technologies have resulted in solutions that can go beyond simply inhibiting microbial growth. Instead, certain types of porous media have been developed to kill microbes on contact. The misuse and overuse of antimicrobials in humans, animals and plants are the main drivers in the development of drug-resistant pathogens. It is estimated that bacterial antimicrobial resistance (AMR) was directly responsible for 1.27 million global deaths in 2019 and contributed to 4.95 million deaths.
How this connects to Pharmacology
Infectious-disease biology depends on organism properties, entry route, replication, tissue tropism and host response. Infection must be distinguished from colonization or contamination. Laboratory test timing, specimen quality and local epidemiology affect interpretation; antimicrobial choice requires current susceptibility and professional guidance.
Text credit: Wikipedia contributors, “Antimicrobial”, original article · authors & revision history · CC BY-SA 4.0. Unmodified opening extract, accessed 24 September 2026. This Wikipedia-derived section is provided under CC BY-SA 4.0; the independent MedAtlas notes and design are separate works.
Antimicrobial principles · visual study map
Scalable vector illustration. Labeled conceptual map, not a precise anatomical, histological or diagnostic image.The wording in this learning map is adapted from the attributed Wikipedia background section below (CC BY-SA 4.0).
What the underlying subject studies
Pharmacology links a substance’s mechanism to the concentration reaching its target and the resulting physiological effect. Distinguish pharmacokinetics—how exposure changes—from pharmacodynamics—how a target responds.
How mechanisms and evidence connect
Benefits and harms depend on indication, route, dose, patient characteristics, organ function and interactions. A mechanism chart groups medicines for study but does not establish equivalence, superiority or an individual prescription.
How to develop a sound explanation
For each drug or drug class, identify the molecular target, intended effect, major limitations, common classes of adverse effects and how evidence and guidelines inform use. This library intentionally does not provide patient-specific doses or prescribing orders.
References and verification (optional)
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