Coffee

Botanical Overview

Coffee (Coffea arabica) is a flowering plant in the Rubiaceae family. Traditional medicine systems have documented several valuable applications for this species, supported by its observed therapeutic effects. The coffee family (Rubiaceae) includes trees, shrubs, and herbs with opposite leaves and interpetiolar stipules. The flowers are typically tubular with four or five petals. The family includes coffee (Coffea), quinine-producing Cinchona, and numerous other medicinal species with alkaloid constituents.

General Description

It is believed to be the first species of coffee to have been cultivated and is the dominant cultivar, representing about 60% of global production. Coffee produced from the less acidic, more bitter, and more highly caffeinated robusta bean (C. canephora) makes up most of the remaining coffee production. The natural populations of Coffea arabica are restricted to the forests of South Ethiopia, South Sudan, and Yemen.

ⓘ Information
Description adapted from Wikipedia (CC BY-SA 4.0).

Family Context

The Rubiaceae family is large and primarily tropical. Notable medicinal members include:

Geographic Distribution

Coffee has been recorded in 10 countries and territories worldwide, including Afghanistan, Brazil, Colombia, Costa Rica, Ecuador, and others.

Traditional Uses

Coffee has been traditionally used for respiratory conditions, skin and wound care, and urinary tract health, among other applications.

Respiratory conditions.

  • Asthma

Respiratory conditions are addressed through steam inhalation of the herb’s vapors or internal use as a warm tea. The hot infusion acts as an expectorant, helping to loosen phlegm and clear congestion. Some traditions combine it with honey for coughs.

Skin and wound care.

  • Sore

For skin conditions, the fresh or dried plant is applied topically as a poultice, wash, or compress. A strong decoction can be used to clean wounds and sores. The antimicrobial properties help prevent infection while promoting tissue repair.

Urinary tract health.

  • Diuretic
  • Kidney

Urinary tract applications typically involve drinking the herb as a mild tea, which increases urine production and helps flush the urinary system. It may be combined with other demulcent herbs to soothe irritated tissues.

Active Compounds

Phytochemical research has identified 30 compounds in this species, including a diverse array of phytochemical classes (see the Complete Chemical Inventory below for the full list).

The identified compounds include the following categories:

  • Phenolic: antioxidant compounds that neutralize free radicals
  • Sterol: cholesterol-like compounds with anti-inflammatory properties
  • Alkaloid: nitrogenous compounds with diverse pharmacological activities
ⓘ Information
Information on this page is compiled from Dr. Duke’s Phytochemical and Ethnobotanical Databases (USDA ARS), a public domain resource. Consult a healthcare professional before using any herbal preparation.
⚠ Caution
Traditional records: This plant has documented uses including Poison. Self-medication with herbs carries risks including allergic reactions, drug interactions, and toxicity. Only use under the supervision of a qualified healthcare professional.

Distribution and Conservation

Reported distribution: Afghanistan, Brazil, Colombia, Costa Rica, Ecuador, Ethiopia, India, Kenya, Mexico, United States.

Complete Use Records

CategoryCultural Context
StimulantDominican Republic, Elsewhere, Haiti, Trinidad
FeverElsewhere, Haiti, Trinidad
Ache(Head)Curacao, Haiti
AsthmaElsewhere, Trinidad
CardiotonicChina, Haiti
DiureticElsewhere, Turkey
AnalgesicElsewhere
AnaphrodisiacElsewhere
AnorexicElsewhere
AntidoteElsewhere
Antidote(Atropine)Dominican Republic
Antidote(Opium)Haiti
CNS stimulantTurkey
CoffeeTurkey
FluTrinidad
HypnoticDominican Republic
IntellectTurkey
JaundiceTrinidad
KidneyElsewhere
NauseaTurkey
NervineElsewhere
PoisonLatin America
ScorpionTrinidad
SoreTrinidad
VertigoCuracao
Antidote(Narcotic)Turkey
CounterirritantElsewhere
MalariaElsewhere

Complete Chemical Inventory

CompoundFormulaMW
10-O-METHYLCAFESTOL
2,3,5-TRIMETHYLPHENOLC₉H₁₂O136.19 Da
2-ETHYLPHENOLC₈H₁₀O122.16 Da
2-METHOXY-4-ETHYLPHENOLC₉H₁₂O₂152.19 Da
24-METHYLENE-CYCLOARTENOL
24-METHYLENEPHENOL
3,4-DICAFFEOYL-QUINIC-ACIDC₂₅H₂₄O₁₂516.4 Da
3,5-DICAFFEOYL-QUINIC-ACIDC₂₅H₂₄O₁₂516.4 Da
4,5-DICAFFEOYL-QUINIC-ACIDC₂₅H₂₄O₁₂516.4 Da
4-ETHYLPHENOLC₈H₁₀O122.16 Da
4-METHOXY-4-VINYLPHENOLC₉H₁₂O₂152.19 Da
5-AVENASTEROLC₂₉H₄₈O412.7 Da
7-STIGMASTEROLC₂₉H₄₈O412.7 Da
ACETALDEHYDEC₂H₄O44.05 Da
ADENINEC₅H₅N₅135.13 Da
ALLANTOIC-ACIDC₄H₈N₄O₄176.13 Da
ALLANTOINC₄H₆N₄O₃158.12 Da
ALPHA-TOCOPHEROLC₂₉H₅₀O₂430.7 Da
ARABINOGALACTOSEC₁₁H₂₀O₁₀312.27 Da
ARABINOSEC₅H₁₀O₅150.13 Da
ARACHIDIC-ACIDC₂₀H₄₀O₂312.5 Da
ASH
ASPARAGINEC₄H₈N₂O₃132.12 Da
ASPARTIC-ACIDC₄H₇NO₄133.10 Da
ATRACTYLIGENINC₁₉H₂₈O₄320.4 Da
BETA-CAROTENEC₄₀H₅₆536.9 Da
BETA-SITOSTEROLC₂₉H₅₀O414.7 Da
BETA-TOCOPHEROLC₂₈H₄₈O₂416.7 Da
CAFESTEROLC₂₀H₂₈O₃316.4 Da
CAFESTOLC₂₀H₂₈O₃316.4 Da

Data from PubChem (NIH/NLM, public domain).


References & Further Reading

External Research Links

Data Sources