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Science · Bacteriology & Medicine
Alexander Fleming

Alexander Fleming

Discovered penicillin in 1928 — saved an estimated 200 million lives

In September 1928, a Scottish bacteriologist returned from his summer holiday to a cluttered laboratory at St Mary's Hospital in London, and noticed something unusual on a petri dish he had left behind. A mould had contaminated one of his cultures of Staphylococcus bacteria — and around the mould, the bacteria were dead. Alexander Fleming did not immediately grasp that he had just made the most important medical discovery of the twentieth century. But he was curious enough to look more carefully, and careful enough not to throw the dish away. That decision would eventually save hundreds of millions of lives.

Alexander Fleming was born on August 6, 1881, at Lochfield Farm in Ayrshire, Scotland, the seventh of eight children. His father died when he was seven. At thirteen he moved to London to live with an elder brother, worked briefly in a shipping office, and then, having received a small inheritance and a nudge from his brother (also a physician), enrolled at St Mary's Hospital Medical School in 1901. He qualified as a doctor in 1906 and joined the Inoculation Department under Almroth Wright, one of the leading bacteriologists of the age. He would remain at St Mary's for virtually his entire career — nearly fifty years.

Fleming's early research was shaped by his experience as a medical officer in World War One, during which he witnessed vast numbers of soldiers dying not from their wounds but from bacterial infections — streptococcal and staphylococcal infections that modern antibiotics would now cure in days. He became preoccupied with the problem of bacterial killing. In 1922, he discovered lysozyme, an enzyme present in tears, saliva, and mucus that has mild antibacterial properties. It was an important finding — the first evidence that the body produced natural antibacterial substances — but lysozyme was not potent enough to treat serious infections.

The contaminated petri dish in 1928 was something different. Fleming observed that the mould — later identified as Penicillium notatum — appeared to produce a substance that killed bacteria in a wide radius around it. He isolated the mould, grew it in cultures, and tested the broth it produced against a range of bacterial species. The results were remarkable: the substance he called "penicillin" was powerfully effective against Staphylococcus, Streptococcus, and several other dangerous pathogens, while appearing harmless to human white blood cells. He published his findings in the British Journal of Experimental Pathology in 1929.

"One sometimes finds what one is not looking for. When I woke up just after dawn on September 28, 1928, I certainly didn't plan to revolutionize all medicine by discovering the world's first antibiotic." — Alexander Fleming

Fleming lacked the chemistry expertise to purify and concentrate penicillin, and his early attempts to produce it in therapeutic quantities failed. For more than a decade, his discovery remained a laboratory curiosity — known but unused. The critical step came in the early 1940s, when Howard Florey and Ernst Boris Chain at Oxford University took Fleming's published results seriously, developed methods to purify and concentrate the drug, and conducted the first clinical trials. Their results were extraordinary: patients dying from infections that had been untreatable were recovering within days. With wartime urgency, the United States and Britain mobilized mass production. By the D-Day landings in June 1944, penicillin was available in sufficient quantities to treat Allied casualties.

In 1945, Fleming, Florey, and Chain shared the Nobel Prize in Physiology or Medicine — a rare instance of a Nobel being awarded so rapidly, and so justified by the scale of human benefit involved. Fleming became a global celebrity, feted by heads of state, given honorary degrees, and mobbed by admirers wherever he traveled. He used his fame to issue a warning: the misuse of penicillin would breed resistant bacteria. He was right. Antibiotic resistance is now one of the gravest threats facing global health — a problem that Fleming predicted in his Nobel Prize acceptance speech.

Fleming died of a heart attack on March 11, 1955, at his home in London, and was buried in St Paul's Cathedral. The petri dish that launched his discovery — preserved and displayed — has become one of the most iconic objects in the history of science. His name appears on hospitals, research institutes, and medical schools across the world. The number of people alive today because of penicillin and its descendants is incalculable.

Fast Facts

BornAugust 6, 1881, Lochfield, Ayrshire, Scotland
DiedMarch 11, 1955 (aged 73), London, England
FieldBacteriology, immunology, pharmacology
Key DiscoveryPenicillin, 1928
Earlier DiscoveryLysozyme, 1922
Nobel PrizePhysiology or Medicine, 1945 (with Florey and Chain)
InstitutionSt Mary's Hospital Medical School, London
BuriedSt Paul's Cathedral, London

Key Milestones

1881Born in Lochfield, Ayrshire, Scotland; grows up on a farm and moves to London at age 13.
1906Qualifies as a doctor; joins Almroth Wright's Inoculation Department at St Mary's Hospital.
1914Serves as medical officer in World War One; witnesses soldiers dying of bacterial infections that doctors cannot treat.
1922Discovers lysozyme — the body's own antibacterial enzyme — in tears and mucus.
1928Returns from holiday to find a mould killing bacteria in a contaminated petri dish; identifies penicillin.
1929Publishes penicillin findings in the British Journal of Experimental Pathology; unable to concentrate it for clinical use.
1940Florey and Chain at Oxford purify penicillin and demonstrate dramatic clinical results.
1944Mass-produced penicillin available in time for D-Day; transforms treatment of war wounds.
1945Shares Nobel Prize with Florey and Chain; warns publicly about the danger of antibiotic resistance.
1955Dies of a heart attack; buried in St Paul's Cathedral.
"The unprepared mind cannot see the outstretched hand of opportunity." — Alexander Fleming

Fleming Among the Giants of Medical Science

ScientistFieldCore ContributionEra
Alexander FlemingBacteriologyDiscovery of penicillin20th century
Louis PasteurMicrobiologyGerm theory, pasteurization, vaccines19th century
Edward JennerMedicineFirst vaccine — smallpox18th century
Robert KochBacteriologyIdentified tuberculosis & cholera bacteria19th century

Why Fleming Still Matters

Before penicillin, a scratch from a rose thorn could kill. Pneumonia was a death sentence. Strep throat killed children. Soldiers died of infected wounds more often than of the wounds themselves. Fleming's accidental observation — and his disciplined curiosity to follow it — unlocked a class of medicines that transformed what it means to be ill. Antibiotics have saved more lives than any other class of pharmaceutical in history.

His warning about resistance is equally important. Fleming foresaw, in 1945, exactly the crisis now facing global health: bacteria evolving to defeat the drugs that once killed them. Every call for responsible antibiotic use echoes the Nobel lecture of the man who started it all. He did not just give humanity a weapon; he told us how to keep it sharp.

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