Sickle Senna

Botanical Overview

Sickle Senna (Cassia tora) is a flowering plant in the Fabaceae family. Traditional medicine systems have documented several valuable applications for this species, supported by its observed therapeutic effects. The legume family (Fabaceae) includes trees, shrubs, and herbs that produce pods (legumes) and form nitrogen-fixing root nodules through symbiosis with bacteria. The flowers are typically pea-shaped with five petals. This large family provides food staples, timber, and numerous medicinal species.

General Description

Its name is derived from its Sinhala name tora (තෝර). It grows wild in most of the tropics and is considered a weed in many places. Its native range is in Central America. Its most common English name is sickle senna or sickle wild sensitive-plant. Other common names include sickle pod, tora, coffee pod and foetid cassia. It is often confused with Chinese senna or sickle pod, Senna obtusifolia.

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

Family Context

The Fabaceae family is large and globally distributed. Notable medicinal members include:

Geographic Distribution

Sickle Senna has been recorded in 10 countries and territories worldwide, including Burkina Faso, Benin, Brazil, China, Indonesia, and others.

Traditional Uses

Sickle Senna has been traditionally used for digestive health, respiratory conditions, and skin and wound care, among other applications.

Digestive health.

  • 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.

  • Cold
  • Cough

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.

  • Ringworm
  • Skin
  • Itch
  • Sore
  • Ulcer
  • Eruption
  • Leprosy

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.

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
ⓘ 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: Burkina Faso, Benin, Brazil, China, Indonesia, India, Malaysia, Senegal, Taiwan, United States.

Complete Use Records

CategoryCultural Context
RingwormElsewhere, India, Malaya, Mexico
PurgativeChina, Haiti, Mexico
SkinElsewhere, India, Mexico
CoffeeElsewhere, Mexico
ItchMalaya, Mexico
OphthalmiaChina, Malaya
SoreChina, India(Santal)
TumorIndia, Sri Lanka
UlcerElsewhere, Mexico
BactericideElsewhere
Bite(Bug)Mexico
CatharticElsewhere
ColdIndia
ConstipationChina
CoughMalaya
EruptionMexico
EyeChina
FeverVenezuela
FuruncleChina
HepatitisChina
HerpesChina
IntoxicantChina
KidneyChina
LeprosyElsewhere
LiverChina
Ointment-BaseJapan*
OxytoxicElsewhere
ParasiticideIndia
PhotophobiaChina
PiscicideElsewhere

Complete Chemical Inventory

CompoundFormulaMW
ALOE-EMODINC₁₅H₁₀O₅270.24 Da
ANTHRONEC₁₄H₁₀O194.23 Da
ASH
AURANTIOBTUSIN
CALCIUMCa40.08 Da
CARBOHYDRATES
CAROTIN
CHRYSO-OBTUSINC₁₉H₁₈O₇358.3 Da
CHRYSOPHANIC-ACID-9-ANTHRONEC₁₅H₁₂O₃240.25 Da
CHRYSOPHANOLC₁₅H₁₀O₄254.24 Da
CHRYSOPHANOL-1-BETA-GENTIOBIOSIDE
COPPERCu63.55 Da
EMODINC₁₅H₁₀O₅270.24 Da
FATC₁₆H₃₂O₂256.42 Da
FIBER
GLUCOSEC₆H₁₂O₆180.16 Da
IRONFe55.84 Da
KAEMPFEROL-3-0-SOPHOROSIDE
LIGNOCERIC-ACIDC₂₄H₄₈O₂368.6 Da
LINOLENIC-ACIDC₁₈H₃₀O₂278.4 Da
MAGNESIUMMg24.305 Da
MANGANESEMn54.93804 Da
MANNITOLC₆H₁₄O₆182.17 Da
MYRICYL-ALCOHOLC₃₀H₆₂O438.8 Da
NOR-RUBROFUSARINC₁₄H₁₀O₅258.23 Da
OBTUSIFOLINC₁₆H₁₂O₅284.26 Da
OBTUSINC₁₈H₁₆O₇344.3 Da
OLEIC-ACIDC₁₈H₃₄O₂282.5 Da
PALMITIC-ACIDC₁₆H₃₂O₂256.42 Da
PHOSPHORUSP30.97376200 Da

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


References & Further Reading

External Research Links

Data Sources