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Gutta-percha is a tree of the genus in the family , which is primarily used to create a high-quality of the same name. The material is rigid, naturally biologically , resilient, electrically , and , most commonly sourced from ; it is a polymer of which forms a rubber-like .

The word "gutta-percha" comes from the plant's name in : getah translates as 'sticky gum' and pertja (perca) is the name of a less-sought-after gutta tree. The western term therefore is likely a derivative amalgamation of the original native names.


Description
Palaquium gutta trees are tall and up to in trunk diameter. The leaves are , alternate or spirally arranged, simple, entire, long, glossy green above, and often yellow or below. The flowers are produced in small clusters along the stems, each flower with a white corolla with four to seven (mostly six) acute lobes. The fruit is an ovoid berry, containing one to four seeds; in many species, the fruit is edible.

In Australia, gutta-percha is a common name specifically used for the tree parvifolia, which yields an aromatic, heavy, dark-brown timber.


Chemistry
Chemically, gutta-percha is a , a of , or , specifically ( trans-1,4-polyisoprene).
(2018). 9783319923871, Springer. .
The cis structure of polyisoprene is the common . While latex rubbers are in molecular structure, gutta-percha (the trans structure) , leading to a more rigid material. It exists in alpha and beta forms, with the alpha form being brittle at room temperature.
(2025). 9788131221815, Elsevier India. .


Uses

Historic
Long before gutta-percha was introduced into the Western world, it was used in a less-processed form by the natives of the Malaysian archipelago for making knife handles, walking sticks, and other purposes. The first European to study this material was John Tradescant, who collected it in the far east in 1656. He named this material "Mazer wood". William Montgomerie, a medical officer in imperial service, introduced gutta-percha into practical use in the West. He was the first to appreciate the potential of this material in medicine, and he was awarded the gold medal by the Royal Society of Arts, London in 1843.Harvey Wickes Felter and John Uri Lloyd. "Gutta-Percha-: An Untold Story. Prakesh et al. ~2001 Endodontology". King's American Dispensatory.

Scientifically classified in 1843, it was found to be a useful natural . In 1851, of gutta-percha was imported into Britain. During the second half of the 19th century, gutta-percha was used for many domestic and industrial purposes, and it became a household word. Gutta-percha was particularly important for the manufacture of underwater telegraph cables.Bill Burns, The Gutta Percha Company, atlantic-cable.com, accessed 6 October 2010. Compared to rubber, it does not degrade in seawater, is not damaged by marine life, and maintains good electrical insulation. These properties, along with its mouldability and flexibility made it ideal for the purpose, with no other material to match it in the 19th century.

(2025). 9781786303745, ISTE-WILEY. .
The use in electrical cables generated a huge demand which led to harvesting and collapse of supply.


Electrical
Gutta-percha latex is biologically , resilient, and is a good electrical insulator with a high dielectric strength.
(2015). 9789352500482, JP Medical Ltd. .

discovered its value as an insulator soon after the introduction of the material to Britain in 1843. Allowing this fluid to evaporate and coagulate in the sun produced a latex which could be made flexible again with hot water, but which did not become brittle, unlike prior to the discovery of .

By 1845, telegraph wires insulated with gutta-percha were being manufactured in the UK. It served as the insulating material for early undersea telegraph cables, including the first transatlantic telegraph cable.

(2025). 9780061985294, HarperCollins e-books.
The material was a major constituent of Chatterton's compound used as an insulating sealant for telegraph and other electrical cables.

The dielectric constant of dried gutta-percha ranges from 2.56 to 3.01. Resistivity of dried gutta-percha ranges from to .

Since about 1940, has supplanted gutta-percha as an electrical insulator.

(2019). 9781786303745, John Wiley & Sons. .


Other
In the mid-19th century, gutta-percha was used to make furniture, notably by the Gutta Percha Company, established in 1847. Several of these ornate, revival-style pieces were shown at the 1851 in Hyde Park, London. The company also made a range of utensils.

The "" golf ball (which had a solid gutta-percha core) revolutionized the game.

(2003). 9780743249768, Simon and Schuster. .
Gutta-percha was used to make "mourning" jewelry, because it was dark in color and could be easily molded into beads or other shapes.
(2012). 9781734627619, Gettysburg Publishing. .
Pistol hand grips and rifle shoulder pads were also made from gutta-percha, since it was hard and durable, though it fell into disuse when synthetic such as became available.

Gutta-percha was used in canes and walking sticks. In 1856, United States Representative used a cane made of gutta-percha as a weapon in his attack on Senator .

(2025). 9780313081743, ABC-CLIO. .

In the 1860s, gutta-percha was used to reinforce the soles of football players' boots before it was banned by The Football Association in the first codified set of rules in 1863.

Gutta-percha was briefly used in until the advent of .

(2025). 9781567927221, .


Today

Art
Gutta-percha is used as a in silk painting, including some newer forms of .


Dentistry
The same bioinertness that made it suitable for marine cables also means it does not readily react within the human body. It is used in a variety of surgical devices and during therapy. It is the predominant material used to , or fill, the empty space inside the root of a tooth after it has undergone endodontic therapy. Its physical and chemical properties, including its inertness and , , , and , make it important in , e.g., as gutta-percha points. is added to reduce brittleness and improve plasticity. is added to provide so that its presence and location can be verified in dental X-ray images.


Substitutes
Gutta-percha remained an industrial staple well into the 20th century, when it was gradually replaced with superior synthetic materials, such as .

A similar and cheaper natural material called balatá was often used in gutta-percha's place. The two materials are almost identical, and balatá is often called gutta-balatá.


See also


External links

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