Eucommia (Eucommia ulmoides Oliv.)
1. Identity: Botanical Description, Nomenclature, and Natural Source
Eucommia ulmoides, also called the Chinese or hardy rubber tree, is a deciduous tree belonging to the Eucommiaceae family. E. ulmoides is the sole living species of the genus Eucommia. Eucommia is the only genus of the family Eucommiaceae, and was formerly considered to be a separate order, the Eucommiales. The genus name derives from the Greek: eu meaning "good" and kommis meaning "gum," in reference to the sap. The specific epithet ulmoides refers to the similarity of the leaves to those of the elms.
It is one of the 50 fundamental herbs used in Chinese herbology, where it is called dùzhòng (Chinese: 杜仲). It is also known by the Chinese names Mumian, Sizhong, Silk Cotton Skin, and Silk Pulled Skin. In Japan it is commonly called Tochu.
EU is an ancient tree species that existed more than 2 million years ago and is considered a living fossil in the plant kingdom. Due to the invasion of glaciers, many EU plants in Europe, Asia, and North America became extinct. Only a small amount was preserved in central and western China due to the complex terrain, and it became a unique tree species in China. Today, E. ulmoides is native to forest areas on hills and mountains of the provinces in central and eastern China, though it has been suggested that the species may be extinct in the wild. It is widely cultivated due to its use in Chinese herbal medicine. It is a national second-class precious protected tree, known as "plant gold."
It is a broadleaf deciduous tree, 40–60 ft (12–18 m) high and 30–50 ft wide (9–15 m), rounded to broad spreading at maturity. The alternate leaves are lightly toothed and glossy. A dioecious species, clusters of male flowers with brown stamens are borne on one tree, and the usually solitary females on another, producing ash-like fruits.
One of the most distinctive characteristics of the plant is its rubber content. The bark, leaves, seeds, and peels contain a kind of white colloidal substance called Eucommia ulmoides rubber (EUR). It is a natural polymer resource, and its molecular structure is trans-1,4-polyisoprene — an isomer with natural rubber, and is considered an ideal candidate to replace natural rubber. It is commonly known as gutta-percha internationally. The rubber content of EU leaves is 1–3%, that of EU bark and root is 6–10%, and the rubber content of EU fruit is 13–17%. Latex does not flow from wounded tissue, so it cannot be harvested by tapping.
Medicinal Parts and Common Preparations
The bark, leaves, seed, and even male flowers are commonly utilized as medical remedies and investigated in pharmacy. As documented in the Chinese Pharmacopoeia, the main functions of E. ulmoides bark are to nourish the liver and kidneys, strengthen the tendons and bones, and calm the fetus; the leaves are used to nourish the liver and kidneys and strengthen the tendons and bones, and are sometimes used as an alternative medicine to the bark.
E. ulmoides is commercially available as a combination product or alone as a capsule, tablet, powder, or tea, primarily for treating hypertension. A tea made from Eucommia ulmoides leaves and bark is also part of the Japanese diet. With the deepening of research, EU has gradually developed from a single bark preparation to an all-round development of leaves, flowers, and fruits.
2. Traditional and Historical Use
China: The Primary Tradition
Eucommia ulmoides was first recorded in the Sheng Nong's Herbal Classic (Shen Nong Ben Cao Jing) of the Han Dynasty in China, which details the alias, origin, properties, flavour and functions of E. ulmoides. Two thousand years ago, the bark was listed in this classic and was considered a "Middle grade" drug. In 1590, it was reported to enhance kidney, bones, and tendons in the most famous Chinese medical document, Ben Cao Gang Mu.
Known as "Du Zhong" in Chinese, Eucommia ulmoides contains lignans, iridoids, phenolics, steroids, flavonoids, and other compounds. These constituents have been used in Chinese Traditional Medicine (TCM) as a folk drink and functional food for several thousand years.
In China, extracts of the aerial parts of this plant have been widely used in famous botanical tonics and antirheumatic supplements for more than 2,000 years, and the plant is believed to "nourish the kidney and reinforce the Yang." It has been used alone or mixed with other compounds in TCM prescriptions to treat impotence, spermatorrhoea, prospermia, forgetfulness, osteoporosis, menopause syndrome, hypertension, rheumatoid arthritis, lumbago, ischialgia, aching knees, kidney deficiency pain, weak bones, bone fractures and joint diseases, and lower back pain.
As recorded in ancient medical textbooks, E. ulmoides was recommended for the treatment of lumbar pain, knee pain, osteoporosis, improving learning and memory, hepatoprotection, paralysis, intestinal haemorrhoids, vaginal bleeding, itching in the vaginal or scrotal region, dampness and residual draining of urine, abortion, pregnancy bleeding, spermatorrhoea, soreness and pain in the feet, foot fungus, and anti-aging.
In China, the stem and bark of Eucommia ulmoides have been recorded in the Pharmacopoeia of the People's Republic of China for the treatment of hypertension, impotence, lumbago, and ischialgia.
Korea and Japan
In East Asia, especially in China, Korea, and Japan, Eucommia ulmoides is widely used as traditional medicine with a long history of safety for its kidney-tonifying function. It is used to cure lumbago associated with kidney deficiency and to promote human longevity. In Japan, where the tree is called Tochu, the bark has historically been used as herbal medicine, while the leaves have been used as food materials.
Ethnic Minority Traditions in China
Several ethnic groups in China use Eucommia in medicine, and the application of using it to treat hypertension, nourish the liver and kidneys, and strengthen the muscles and bones is consistent with the record in the Chinese Pharmacopoeia. Records from different historical periods highlight E. ulmoides and its officinal botanical parts, its usefulness in adaptation to disease, and its central role in Chinese medicine theory. There are also historical collection documents for ethnic minorities in China.
Preparation Methods
In folk medicine, the dried and heated outer portion of the stem has been used for supporting muscle and lung function, lowering blood pressure, preventing miscarriages, improving tone of the liver and kidneys, and increasing longevity. In traditional Chinese medicine, the seed oil is commonly used to treat hypertension, rheumatoid arthritis, back pain in the lumbar region, and hip pain.
3. Key Constituents and Active Compounds
To date, 205 compounds have been identified from different medicinal parts of Eucommia ulmoides, including lignans, iridoid terpenoids, phenols, flavonoids, terpenoids and steroids, polysaccharides, and others. Among these compounds, lignans and iridoids are the two major constituents and are important chemotaxonomic markers.
Lignans
The main lignan components — liriodendrin, (+)-pinoresinol di-O-β-d-glucopyranoside, and (+)-syringaresinol — have been shown to have anti-hypertensive effects. Pinoresinol diglucoside (also written as pinoresinol di-beta-D-glucoside, or PG) is one of the most studied individual compounds. It was identified as early as the 1970s as a principal anti-hypertensive constituent. Other key quantified metabolite markers include aucubin, geniposidic acid, chlorogenic acid, geniposide, rutin, hyperoside, and astragalin.
Iridoids
Aucubin and geniposide isolated from E. ulmoides, both belonging to the iridoid class, have been extensively studied for their biological activities involving anti-hypertension, anti-diabetes, neuroprotection, anti-cancer, anti-inflammatory, anti-osteoporotic, hepatoprotection, and kidney protection. Geniposidic acid (GEA), an iridoid glycoside, has been identified as one of Tochu's important components of pharmacological relevance.
Aucubin is a highly active compound possessing extensive biological effects including antioxidant, anti-aging, anti-inflammatory, anti-fibrotic, anti-cancer, hepatoprotective, neuroprotective, and osteoprotective properties. Although aucubin has been shown to have poor oral bioavailability in rats, it is widely distributed in multiple organs including kidney, liver, heart, spleen, and lung, and there is a sex difference in the absorption of aucubin.
Phenolics and Flavonoids
Key phenolic acids and flavonoids identified in E. ulmoides bark water extract by HPLC-MS include aucubin, chlorogenic acid, geniposidic acid, quercetin, protocatechuic acid, betulin, and pinoresinol diglucoside. Quercetin, kaempferol, β-sitosterol, chlorogenic acid, and pinoresinol diglucoside are considered putative quality markers of Eucommia ulmoides.
Polysaccharides
Polysaccharides represent an additional class of compounds isolated from E. ulmoides. Research has shown that eucommia polysaccharides significantly promoted osteoblast differentiation and increased the level of phosphorylated extracellular signal-regulated kinase 1/2 (ERK1/2) and SMAD1/5/8 in cellular models, illustrating a mechanistic role in bone metabolism distinct from the lignan and iridoid fractions.
Gutta-Percha (EUR)
Unlike most medicinal plants, E. ulmoides also contains a structurally distinct non-pharmacological biopolymer. The bark, leaves, seeds, and peels contain Eucommia ulmoides rubber (EUR), a natural polymer whose molecular structure is trans-1,4-polyisoprene. This rubber polymer is not considered to be a pharmacologically active constituent but is of significant industrial interest.
4. Mechanisms of Action
Blood Pressure and Vascular Function
Eucommia is an herbal medicine that, by increasing nitric oxide, reduced blood pressure in rats and humans in an uncontrolled clinical trial. A controlled clinical trial was conducted to evaluate an aqueous bark extract of Eucommia standardized to eight percent pinoresinol di-beta-D-glucoside (PG) for blood pressure (BP) reduction in humans. Tochu leaf glycoside, which contains geniposidic acid (GEA), has a blood pressure-lowering effect as demonstrated by preclinical studies in spontaneously hypertensive rats (SHRs).
Bone Metabolism
The evidence demonstrates that Eucommia ulmoides and its bioactive compounds — most notably aucubin, geniposide, rutin, and pinoresinol diglucoside — consistently promote osteoblastogenesis and inhibit osteoclastogenesis. These effects are mediated through the modulation of key signaling pathways, including BMP/SMAD, Wnt/β-catenin, OPG/RANKL, and MAPK/NF-κB.
Eucommia cortex extract can be used in the control of osteoporosis because it is actively involved in mechanisms which initiate osteoblast activity, enhance osteogenesis, decrease osteoclast activity, and thus prevent osteolysis.
Neuroprotection
The bark extract of E. ulmoides has been shown to prevent neurodegenerative disease processes such as those in Alzheimer's disease (AD) by modulating cleaved poly (ADP ribose) polymerase (PARP), cleaved caspase 3, Bcl-2, and Bcl-xL via inhibition of JNK, p38 MAPK, ERK1/2, and PI3K/AKT signaling in H2O2-treated human SH-SY5Y neuroblastoma cells. In ischemic stroke models, E. ulmoides could inhibit neuroinflammation by alleviating microglia activation and inhibiting the activity of the TLR4/p38 MAPK and NF-κB pathways.
In the context of Parkinson's disease, Duzhong antagonized the loss of striatal neurotransmitters and relieved associated anomaly in ambulatory locomotor activity in PD mice after a 3-day pre-treatment of crude extract. Five Duzhong compounds attenuated MPP⁺-induced dysfunction of protease activity and reduced MG132-induced cytotoxicity. The mechanism involves amelioration of the ubiquitin-proteasome system.
Anti-Obesity
Administration over 3 months of eucommia leaf extract or green leaf powder stimulated several anti-obesity and anti-metabolic effects, including decreased ATP production in white adipose tissue, accelerated fatty acid beta-oxidation in the liver, and increased use of ketone bodies and glucose in skeletal muscle. Plasma levels of resistin, which induces insulin resistance, were decreased, and plasma levels of adipocytokines, which have an anti-arteriosclerotic effect and improve insulin sensitivity, were increased.
Diabetic Bone Protection
Administration of E. ulmoides aqueous leaf extract in diabetic osteoporosis mice eliminates oxidative stress in the body by regulating the Nrf2/HO-1 pathway. This promoted TRPV5/CaBP-D9k/PMCA-1b signaling in the intestine and kidney, which maintained calcium homeostasis and ultimately ameliorated diabetic osteoporosis.
5. Scientific Evidence by Area of Use
5.1 Cardiovascular Health and Hypertension
Hypertension is the most extensively studied clinical application of E. ulmoides. The stem and bark of Eucommia ulmoides have been recorded in the Pharmacopoeia of the People's Republic of China for the treatment of hypertension.
Human/Clinical Evidence: A controlled clinical trial was conducted to evaluate an aqueous bark extract of Eucommia standardized to eight percent pinoresinol di-beta-D-glucoside (PG) for BP reduction in humans. Study 1 enrolled twenty-four healthy adult subjects with a BP between 120–160/80–100 mmHg who were randomized to Eucommia extract 500 mg three times daily for eight weeks, with 24-hour ambulatory blood pressure monitoring at baseline and after eight weeks. Study 2 evaluated whether Eucommia was a beta-adrenergic blocker using a human fat cell assay.
A more recent clinical study examined leaf extract. This exploratory single-arm clinical study was conducted on a total of 17 participants including those with mild chronic kidney disease (CKD) (n=9), who were administered a tablet product containing Tochu leaf extract for a short period (median: 33 days). Mean systolic blood pressure (SBP) of all the participants significantly decreased from 128.3 ± 12.3 mmHg at the start to 123.8 ± 10.2 mmHg at the end of the administration (p < 0.05). Analysis of CKD patients alone revealed that SBP decreased more substantially from 130.7 ± 12.9 mmHg to 121.2 ± 10.7 mmHg (p < 0.01), while the change in non-CKD patients was not significant.
A randomized placebo-controlled trial examining endothelial function was also reported: In a randomized and placebo-controlled clinical study, a drink containing 85 mg of geniposidic acid (GEA) per bottle was administered once a day to people with "high normal" blood pressure (SBP 130–139 mmHg or DBP 85–89 mmHg). Vascular endothelial function according to flow-mediated dilatation (FMD) was improved by this treatment in 4–8 weeks, accompanied by a decrease in blood pressure.
Although an uncontrolled Russian trial with Eucommia ulmoides demonstrated a 25/14 mmHg drop in blood pressure in human subjects with hypertension, no early placebo-controlled human clinical trials had been conducted to test its safety and efficacy prior to Greenway et al. (2011).
Evidence strength: The available clinical evidence is preliminary. Existing controlled trials are small in sample size (n=17 to 24) and of short duration. Larger, well-designed randomized controlled trials (RCTs) are lacking.
5.2 Bone Health and Osteoporosis
This is among the best-studied areas in preclinical research. A 2025 scoping review identified ninety studies meeting the inclusion criteria. The evidence demonstrates that Eucommia ulmoides and its bioactive compounds, most notably aucubin, geniposide, rutin, and pinoresinol diglucoside, consistently promote osteoblastogenesis and inhibit osteoclastogenesis. In animal models, treatment improved bone mineral density (BMD), enhanced trabecular microarchitecture (increased bone volume fraction, trabecular number and thickness), and increased bone biomechanical strength.
Clinical studies, while preliminary, reported that Eucommia ulmoides-based formulations (e.g., Quanduzhong capsules, Eucommia granules) were associated with improved BMD, reduced bone resorption markers, and alleviated clinical symptoms in osteoporotic patients.
Daily oral administration of an Eucommia ulmoides cortex extract (100, 300, and 500 mg/kg/day started on week 4 after ovariectomy for 16 weeks) significantly inhibited ovariectomy-induced decreases in biomechanical quality of the femur and improved bone microarchitecture in an animal model.
Total glycosides from Eucommia ulmoides seed (TGEUS) have been shown to improve bone density and femur strength in rats. Daily administration of TGEUS at 400 mg/kg body weight/day to rats was reported to significantly increase bone mineral density and showed improvements in microarchitecture structure of the femur bone.
In vitro studies showed that crude water extract of Eucommia ulmoides enhanced proliferation of osteoblast-like cells by 45% when used at a concentration of 0.4 mg/ml in 48-hour co-cultures of UMR106 cells.
Evidence strength: Substantial preclinical evidence (in vitro and animal) supports bone-protective effects. Clinical human data are preliminary and limited to small trials using multi-herb formulations, making it impossible to attribute outcomes exclusively to E. ulmoides.
5.3 Neuroprotection: Alzheimer's Disease and Parkinson's Disease
Modern pharmacological studies reveal therapeutic effects of E. ulmoides in Parkinson's disease and Alzheimer's disease, among other conditions. Aucubin (50 mg/kg) has been reported to exert neuroprotective effects against MPTP-induced Parkinsonian mice in part by reducing inflammation and preserving dopaminergic neurons. Aucubin (50 and 100 mg/kg) has also been revealed to inhibit seizure activity in pilocarpine-induced mice, with its action possibly related to the reduction of neuroinflammation and the regulation of neurotransmission.
A study involving mice with scopolamine-induced memory impairments found that E. ulmoides bark effectively improved the latency time in the Morris water maze test, increased BDNF expression, and inhibited AChE activity by enhancing cholinergic signaling. Other components of E. ulmoides including geniposidic acid, pinoresinol diglucoside, and macranthoin G have been documented with neuroprotective activities.
Evidence strength: Evidence for neuroprotection is entirely preclinical (in vitro cell cultures and animal models). No human clinical trials have been conducted for these neurological indications.
5.4 Metabolic Syndrome: Obesity, Diabetes, and Hyperlipidemia
Eucommia ulmoides (Tochu) has been shown to possess a variety of beneficial effects on profiles affecting the onset of lifestyle- or aging-related diseases, such as hypertension, diabetes, dyslipidemia, or obesity — primarily in preclinical models.
Sufficient in vivo or in vitro studies have confirmed the ameliorative effect of the aqueous extract of E. ulmoides leaves or the ethanol extract of E. ulmoides on hyperlipidemia in non-alcoholic fatty liver disease (NAFLD) or acute liver injury, involving type 2 diabetic, obese and hepatotoxic hyperlipidemia.
The leaf of this tree has also been studied as a functional food with anti-obesity properties.
Evidence strength: Research in this area is predominantly animal and in vitro. There are no large, well-controlled human trials specifically examining E. ulmoides for diabetes or obesity management.
5.5 Sexual Dysfunction and Reproductive Health
In TCM prescriptions, E. ulmoides has traditionally been used to treat impotence, spermatorrhoea, and related conditions. Preclinical results have been reported to confirm aspects of this traditional use, but a wider range of doses should be studied to support the use of Eucommia ulmoides for curing erectile dysfunction and other impotence conditions.
Evidence strength: Evidence is preclinical only; clinical trials in human populations are lacking for this indication.
5.6 Anti-Inflammatory and Antioxidant Activity
EU has several pharmacological properties including antioxidant, anti-inflammatory, antiallergic, antimicrobial, anticancer, antiaging, cardioprotective, and neuroprotective properties demonstrated across a range of cell and animal studies. Iridoid glycosides and a flavonoid glycoside showed potent suppressive effects on nitric oxide (NO) production in RAW 264.7 cells, with IC50 values ranging from 17.11 to 22.26 μM in in vitro anti-inflammatory assays.
Evidence strength: Predominantly in vitro and animal data; translation to human outcomes remains unestablished by clinical trials.
5.7 Anti-Cancer Activity
In vitro and in vivo studies indicate that monomer compounds and extracts from Eucommia ulmoides possess pharmacological actions in treating various conditions, and anti-cancer effects have been noted in laboratory models. Their pharmacological effects include blood pressure-lowering, blood sugar-lowering, blood lipid regulation, prevention of osteoporosis, anti-inflammation, liver protection, and anti-cancer activities.
Evidence strength: Anti-cancer claims are supported only by laboratory (in vitro and animal) studies. No clinical trials in human cancer patients have been conducted.
6. Dosage Forms and Dosages Reported in Studies
E. ulmoides is commercially available as a combination product or alone as a capsule, tablet, powder, or tea.
The following dosages have been reported in specific studies:
- A controlled clinical trial used an aqueous bark extract standardized to 8% pinoresinol di-beta-D-glucoside (PG) at a dose of 500 mg three times daily (total 1,500 mg/day) for eight weeks in 24 adult subjects with borderline-to-stage 1 elevated blood pressure.
- A randomized, placebo-controlled trial used a drink product containing 85 mg of geniposidic acid (GEA) per bottle, administered once a day for 4–8 weeks to individuals with high-normal blood pressure.
- In a diabetic osteoporosis mouse study, the EUL aqueous extract was orally administered at 2.5 g/kg/day for 6 weeks.
- Daily administration of total glycosides from Eucommia ulmoides seed (TGEUS) at 400 mg/kg body weight/day to rats significantly increased bone mineral density and improved femur microarchitecture.
- Animal experiments with a cortex extract used doses of 100, 300, and 500 mg/kg/day for 16 weeks after ovariectomy, resulting in significant improvements in femur biomechanical quality and microarchitecture.
- In neuroprotection experiments, aucubin was tested at 50 mg/kg in MPTP-induced Parkinsonian mice.
- Clinical trial data are lacking to provide definitive human dosing recommendations.
7. Body Systems and Health Areas Associated with Eucommia ulmoides
- Cardiovascular system: Blood pressure reduction, endothelial function, vascular tone (via nitric oxide and lignan-mediated mechanisms)
- Musculoskeletal system: Bone mineral density, osteoporosis prevention, tendon and ligament support, articular cartilage protection
- Nervous system: Neuroprotection against Alzheimer's and Parkinson's disease pathology, cognitive support, anti-seizure activity in animal models
- Endocrine/metabolic system: Blood glucose regulation, lipid modulation, anti-obesity effects, insulin sensitivity
- Hepatic and renal system: Hepatoprotection, kidney protection
- Reproductive system: Uterine stabilization, prevention of miscarriage, treatment of sexual dysfunction
- Immune system: Anti-inflammatory and immunomodulatory activities
The main active ingredients are lignans, phenylpropanoids, flavonoids, iridoids, steroids, and terpenoids, which have pharmacological effects including lowering blood pressure, enhancing immunity, regulating bone metabolism, protecting nerve cells, protecting the liver and gallbladder, and regulating blood lipids.
8. Safety Considerations
General Toxicology
Eucommia ulmoides Oliver is native to China and frequently used in traditional Chinese medicine formulations. While some studies show that extracts are potentially genotoxic and nephrotoxic, formal evaluation using the Ames test, bone marrow micronucleus assay, and chromosomal aberration assay found EUE to be non-genotoxic within the dose ranges of 0.0352–22 mg/plate, 22–88 g/kg body weight, and 2–20 mg/mL. The maximum tolerated dose of EUE was not less than 168 g/kg, which is 1,260 times that of clinical doses in human adults.
Long-term (13-week) administration led to a dose-dependent increase in nephrotoxicity-related indices and pathological changes in renal tissues. These changes were alleviated 5 weeks after ceasing the low dosage of 11.2 g/kg but persisted at the high dosage of 56 g/kg. These doses are substantially above any reported human clinical doses, but the nephrotoxic signal at high doses in animals warrants note.
One study found no acute toxic symptoms in mice treated with 6.68 g/kg of Eucommia lignans after 14 days.
Estrogenic Activity
Further studies indicate that Eucommia ulmoides is a rich source of new selective estrogen receptor modulators; evaluations of its health benefits and safety as a food additive should take into account the diverse phytoestrogen activities of the individual components. In a biological screening assay, some E. ulmoides estrogenic compounds exerted high potency on transactivating estrogen receptor-alpha but lacked selectivity for estrogen receptor-beta signaling. Selective estrogen receptor-alpha activity may increase the risk of estrogen receptor-alpha breast cancers, uterotrophic activities, and thromboembolic disorders.
Accordingly, the herb may be contraindicated in patients diagnosed with estrogen-dependent cancers.
Aucubin Tolerability
Although aucubin has been shown to have poor oral bioavailability in rats, it is widely distributed in multiple organs. Tolerance of aucubin is good and no serious adverse reactions have been observed to date.
Reported Adverse Events in Clinical Settings
One clinical study of E. ulmoides documented moderately severe headache, dizziness, edema, and onset of a cold.
Pregnancy and Lactation
Information regarding safety and efficacy in pregnancy and lactation is lacking. Notably, the herb has traditionally been used in TCM to prevent miscarriage and stabilize pregnancy, but this historical use has not been evaluated in modern controlled trials.
Conservation Status
E. ulmoides is the only living species in the genus and is considered threatened in the wild, which has implications for the sustainability of wild-harvested bark. Cultivated sources are the standard for commercial use. Eucommia ulmoides leaves can be harvested in summer and autumn each year; with abundant resources, the annual production can reach tens of millions of tons, making it a renewable medicinal resource of good quality and low price.
References
- Ong, S.P. et al. "Health-Promoting Properties of Eucommia ulmoides: A Review." Evidence-Based Complementary and Alternative Medicine, 2016. PMC4793136.
- Huang, L. et al. "Traditional application and modern pharmacological research of Eucommia ulmoides Oliv." Chinese Medicine, 2021. PMC8349065.
- Greenway, F. et al. "A clinical trial testing the safety and efficacy of a standardized Eucommia ulmoides Oliver bark extract to treat hypertension." Alternative Medicine Review, 2011. PubMed 22214253.
- Satonaka, H. et al. "An Exploratory Single-Arm Clinical Trial on Eucommia Ulmoides Leaf Extract Effects on Blood Pressure, Oxidative Stress, and Atrial Natriuretic Peptide (ANP) in Individuals With and Without Chronic Kidney Disease." International Journal of Nephrology, 2025. PMC12202076.
- Wang et al. "Eucommia ulmoides Oliv. and its bioactive compounds: therapeutic potential in bone diseases." Frontiers in Pharmacology, 2025. PMC12234569.
- Scoping Review. "Traditional medicine in a modern light: a scoping review on the osteoprotective potential of Eucommia ulmoides." PMC12868233, 2025.
- Study on EUL aqueous extract in diabetic osteoporosis mice. "Eucommia ulmoides extract regulates oxidative stress to maintain calcium homeostasis and improve diabetic osteoporosis." PMC11521638.
- Zhang et al. "Eucommia ulmoides Oliver polysaccharide alleviates glucocorticoid-induced osteoporosis by stimulating bone formation via ERK/BMP-2/SMAD signaling." PMC11604974.
- Study on WEU bark extract and neuroprotection. "Eucommia ulmoides Oliv. Bark Extracts Alleviate MCAO/Reperfusion-Induced Neurological Dysfunction by Suppressing Microglial Inflammation." PMC11855810.
- Zhao, Y. et al. "Neuroendocrine–Immune Regulatory Network of Eucommia ulmoides Oliver." Molecules, 2022. PMC9229650.
- Neuroprotection study. "Neuroprotective effects of Eucommia ulmoides Oliv. and its bioactive constituent work via ameliorating the ubiquitin-proteasome system." PMC4438574.
- Research advances in chemical constituents and pharmacological activities of different parts of Eucommia ulmoides. PubMed 32237506.
- Safety evaluation of Eucommia ulmoides extract. PubMed 33122045.
- Review article. "A review of 'plant gold' Eucommia ulmoides Oliv.: A medicinal and food homologous plant with economic value and prospect." PMC10834829.
- ScienceDirect Topics. "Eucommia ulmoides — an overview." Pharmacology, Toxicology and Pharmaceutical Science.
- Drugs.com Natural Products Database. "Eucommia Uses, Benefits & Dosage."
- Metabolite Profiles, Bioactivity, and HPLC Fingerprint of Different Varieties of Eucommia ulmoides Oliv. PMC6222369.
- Testosterone promotion effect of Eucommia ulmoides staminate flower via the steroidogenic pathway. PMC9637168.
- Research Progress of Eucommia ulmoides Oliv. and Predictive Analysis of Quality Markers. PubMed 38902931.
- Wikipedia. "Eucommia ulmoides."
- Cambridge University Botanic Garden. "Eucommia ulmoides."
- Estrogenic properties of six compounds derived from Eucommia ulmoides Oliv. ScienceDirect.