Cassia

Also known as: Cassia Bark, Cassia Lignea, Chinese Cassia, Chinese Cinnamon, China Junk Cassia, Saigon Cinnamon, Zimtcassie (Ger.)

Botanical Overview

Cassia (Cinnamomum aromaticum) belongs to the Lauraceae family. Limited but reliable traditional records indicate this plant has recognized medicinal applications in one or more healing traditions. The laurel family (Lauraceae) includes trees and shrubs with aromatic, leathery leaves that are typically alternate. The flowers are small and greenish, and the fruits are drupes or berries. Many species produce essential oils rich in aromatic compounds like camphor and eucalyptol.

General Description

It is one of several species of Cinnamomum used primarily for its aromatic bark, which is used as a spice. The buds are also used as a spice, especially in India, and were used by the ancient Romans.

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

Family Context

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

Geographic Distribution

Cassia has been recorded in 10 countries and territories worldwide, including Afghanistan, China, Cuba, Indonesia, India, and others.

Traditional Uses

Cassia has been traditionally used for digestive health and nervous system disorders.

Digestive health.

  • Colic

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.

Nervous system disorders.

  • Sedative

Nervous system support involves taking the herb as a warm tea, often in the evening or before bed. The calming compounds interact with neurotransmitter systems to promote relaxation and restful sleep.

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:

  • Flavonoid: antioxidant compounds that protect cells from oxidative damage
  • Phenolic: antioxidant compounds that neutralize free radicals
  • 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.

Distribution and Conservation

Reported distribution: Afghanistan, China, Cuba, Indonesia, India, Singapore, Thailand, United States, Vietnam, Unknown.

Complete Use Records

CategoryCultural Context
Bite(Snake)China
PerspirationChina
Post-PartumChina
Antidote(Rhus)China
ColicChina
ComplexionChina
SedativeChina

Complete Chemical Inventory

CompoundFormulaMW
(+)-CATECHINC₁₅H₁₄O₆290.27 Da
(-)-EPICATECHINC₁₅H₁₄O₆290.27 Da
1,8-CINEOLEC₁₀H₁₈O154.25 Da
19-MONOACETYL-CINCASSIOL-AC₂₁H₃₀O₈410.5 Da
2-HYDRO-ACETOPHENONE
2-METHYL-BENZALDEHYDEC₈H₈O120.15 Da
2-METHYL-BUTYRIC-ACID
2-VINYLPHENOLC₈H₈O120.15 Da
3,4,5-TRIMETHOXYPHENOL-BETA-D-APIOFURANOSYL(1->6)BETA-D-GLUCOPYRANOSIDE
3-METHYL-BUTYRIC-ACID
3-PHENYL-PROPYL-ACETATEC₁₁H₁₄O₂178.23 Da
3-PHENYLPROPANALC₉H₁₀O134.17 Da
4-ALLYL-PHENOLC₉H₁₀O134.17 Da
4-ETHYL-GUAIACOLC₉H₁₂O₂152.19 Da
5,7,3-TRIMETHYL-(-)-EPICATECHIN
5,7-DIMETHYL-3',4'-DI-O-METHYLENE-(+)-EPICATECHIN
ACETOEUGENOL
ALCOHOLS
ALDEHYDESC₂₀H₃₀O₅350.4 Da
ALPHA-PINENEC₁₀H₁₆136.23 Da
ALPHA-TERPINENEC₁₀H₁₆136.23 Da
ALPHA-TERPINEOLC₁₀H₁₈O154.25 Da
ANHYDROCINNZEYLANINEC₂₂H₃₂O₇408.5 Da
ANHYDROCINNZEYLANOLC₂₀H₃₀O₆366.4 Da
ASCORBIC-ACIDC₆H₈O₆176.12 Da
BARIUMBa137.33 Da
BENZALDEHYDEC₇H₆O106.12 Da
BENZOIC-ACIDC₇H₆O₂122.12 Da
BENZYL-BENZOATEC₁₄H₁₂O₂212.24 Da
BETA-CAROTENEC₄₀H₅₆536.9 Da

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


References & Further Reading

External Research Links

Data Sources