Date Palm

Botanical Overview

Date Palm (Phoenix dactylifera) is a flowering plant in the Arecaceae family. This plant has earned a place in traditional medicine through its consistent therapeutic benefits, recorded across multiple cultures. The palm family (Arecaceae) includes trees, shrubs, and climbers with unbranched stems topped by a crown of large, compound, evergreen leaves. The flowers are small and clustered on branched inflorescences, and the fruits are typically drupes. Palms provide oils, waxes, and other useful products.

General Description

It is cultivated for its edible sweet fruit called dates. The species is widely cultivated across northern Africa, the Middle East, Australia, South and Southeast Asia, Portugal, Spain, coastal Mediterranean basin, and the desert regions of Southern California. It is naturalised in many tropical and subtropical regions worldwide. P. dactylifera is the type species of genus Phoenix, which contains 12–19 species of wild date palms.

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

Family Context

The Arecaceae family is primarily tropical and subtropical. Notable medicinal members include:

Geographic Distribution

Date Palm has been recorded in 10 countries and territories worldwide, including Australia, Algeria, Egypt, Spain, Israel, and others.

Traditional Uses

Date Palm has been traditionally used for digestive health, respiratory conditions, and urinary tract health, among other applications.

Digestive health.

  • Diarrhea
  • Ache(Stomach)
  • Laxative
  • Purgative

For digestive complaints, the herb is typically prepared as a tea or decoction taken before meals. The bitter compounds stimulate digestive secretions and improve nutrient absorption. Some traditions use the powdered root or leaves in small doses as a stomachic tonic.

Respiratory conditions.

  • Cough
  • Pectoral
  • Asthma
  • Bronchitis
  • Catarrh
  • Expectorant

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.

Urinary tract health.

  • Diuretic

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:

  • 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 Purgative. 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: Australia, Algeria, Egypt, Spain, Israel, Morocco, Pakistan, Saudi Arabia, Tunisia, United States.

Complete Use Records

CategoryCultural Context
IntoxicantEgypt, Elsewhere, Iraq
CoffeeElsewhere, Turkey
CoughHaiti, Iraq
DiarrheaIraq, Sudan
EmollientHaiti, Spain
FeverEgypt, Kurdistan
PectoralDominican Republic, Haiti
Ache(Stomach)Babylonia
AgueElsewhere
AnalepticHaiti
AphrodisiacTurkey
AsthmaIraq
BronchitisHaiti
CancerLithuania
Cancer(Uterus)Egypt
CatarrhHaiti
ChestIraq
ContraceptiveEgypt
DemulcentIraq
DiureticTurkey
EnergyChina
ExpectorantIraq
EyeElsewhere
LaxativeIraq
PilesBabylonia
PurgativeBabylonia
RefrigerantIraq
RespiratoryChina
SpleenChina
SterilityEgypt

Complete Chemical Inventory

CompoundFormulaMW
2,3,4-TRI-O-METHYLXYLOSEC₈H₁₆O₅192.21 Da
2,3-DI-O-METHYLXYLOSEC₇H₁₄O₅178.18 Da
2-O-METHYLXYLOSEC₆H₁₂O₅164.16 Da
3,5,4'-TRIHYDROXYSTILBENEC₁₄H₁₂O₃228.24 Da
3,5-DIHYDROXY-4-METHOXY-BENZOIC-ACID
3,5-DIHYDROXY-4-METHOXYBENZALDEHYDEC₈H₈O₄168.15 Da
3-CAFFEOYLSHIKIMIC-ACIDC₁₆H₁₆O₈336.29 Da
4-HYDROXY-3-METHOXY-CINNAMIC-ACID
4-HYDROXY-3-METHOXYBENZALDEHYDEC₈H₈O₃152.15 Da
5-ALPHA-STIGMAST-22-ENE-3,6-DIONE
5-ALPHA-STIGMASTAN-3,6-DIONE
5-O-CAFFEOYLSHIKIMIC-ACIDC₁₆H₁₆O₈336.29 Da
5-OXYPIPECOLIC-ACID
5ALPHA-CAMPESTERAN-3,6-DIONE
6-BETA-HYDROXY-STIGMAST-4-EN-3-ONE
6BETA-HYDROXYCAMPEST-4-ENE-3-ONEC₂₈H₄₆O₂414.7 Da
6BETA-HYDROXYSTIGMASTA-4,22-DIEN-3-ONEC₂₉H₄₆O₂426.7 Da
7BETA-GLUCOSYL-CHRYSOERIOL
ACETALDEHYDEC₂H₄O44.05 Da
ALANINEC₃H₇NO₂89.09 Da
ALUMINUMAl26.981538 Da
APIGENINC₁₅H₁₀O₅270.24 Da
ARABINOSEC₅H₁₀O₅150.13 Da
ARACHIDIC-ACIDC₂₀H₄₀O₂312.5 Da
ARGININEC₆H₁₄N₄O₂174.20 Da
ASCORBIC-ACIDC₆H₈O₆176.12 Da
ASH
ASPARAGINEC₄H₈N₂O₃132.12 Da
ASPARTIC-ACIDC₄H₇NO₄133.10 Da
BAIKIAINC₆H₉NO₂127.14 Da

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


References & Further Reading

External Research Links

Data Sources