1.In-vitro ACE-1 inhibitory activity of Coleus scutellarioides Benth (Mayana) crude ethanolic dehydrated leaf extract.
Elen Mae D. Parlocha ; Julito L. Matuco Jr. ; Jofeah S. Argana ; Cherrie G. Muañ ; a ; Von Jay Maico G. Gabucan
Acta Medica Philippina 2026;60(4):44-50
OBJECTIVES
Herbal plants can be an alternative source of therapy especially against hypertension, which is a prevalent burden in the Philippines. This study investigates the phytochemical composition and angiotensin-converting enzyme 1 (ACE-1) inhibitory activity of Mayana (Coleus scutellarioides Benth.) leaf extract, a plant ethnobotanically reported to be used for its potential antihypertensive properties and yet still lacking in in-vitro investigations.
METHODSEmploying a laboratory experimental research design and standard procedures for phytochemical screening and ACE-1 inhibitory assay, the study compares a crude ethanolic dehydrated leaf extract of Mayana with the positive control, Captopril.
RESULTSPhytochemical screening revealed the presence of flavonoids and phenolic compounds. ACE-1 inhibitory activity of Mayana at 10 μg/mL, 25 μg/mL, 50μg/mL, 100 μg/mL, 500 μg/mL, 1000 μg/mL were 0.00% ± 0.0000, 12.40% ± 2.7094, 18.76% ± 0.7232, 27.31% ± 2.2159, 30.44% ± 1.6022, 40.12% ± 2.4385, respectively. Mayana exhibited an IC50 value of 55.9154 μg/mL compared to Captopril which was 7.7232 μg/mL, indicating potency disparities.
CONCLUSIONMayana has been shown to contain flavonoids and phenolic compounds that exhibit preliminary anti- hypertensive potential through the inhibition of ACE-1. However, the bioactivity of Mayana is lower when compared with a positive control. As such, more research is needed. Despite that, this research contributes to our under- standing of Mayana as a medicinal plant and its potential contribution to complementary and alternative healthcare, with implications for patient care, community awareness, farmer livelihood, education, and future research.
Plants ; Antihypertensive Agents ; Antihypertensive ; Coleus ; Phytochemicals ; Philippines
2.Evaluation of anti-angiogenic activity of the acetone leaf extract of Annona squamosa Linn. (Annonaceae).
Katrina D. Loretizo ; Daisy-mae O. Alegado-Bagaoisan ; Paola Cyra M. Acosta ; Francis Gabriel D. Chua ; Gwyneth Beatrice B. Delaganar ; Rogie Royce Z. Carandang ; Kevin Jace A. Miranda
Acta Medica Philippina 2026;60(4):71-78
OBJECTIVE
The study aimed to investigate the potential anti-angiogenic effects of acetone extracts from Annona squamosa leaves in vivo.
METHODSCrude acetone extract of A. squamosa leaves was prepared via simple maceration. Physicochemical and phytochemical screening of the extract were also performed. The anti-angiogenic effect of A. squamosa was assessed using in vivo chorioallantoic membrane (CAM) assay, with quantitative analysis performed using ImageJ software (U. S. National Institutes of Health, Bethesda, Maryland, USA). The eggs were treated with 1000 ppm, 500 ppm, and 250 ppm doses of the extract. Quercetin was utilized as the positive control while distilled water was used as the negative control.
RESULTSThe results of the study showed the presence of alkaloids, flavonoids, tannins, and phenolic compounds in the leaves of A. squamosa. CAM assay revealed a significant (PCONCLUSION
The acetone extract of A. squamosa leaves possesses anti-angiogenic properties in vivo, suggesting its potential for developing anti-angiogenic agents. Further research to identify and isolate the specific bioactive compounds responsible for this activity is recommended.
Plants ; Alkaloids ; Flavonoids ; Phytochemicals
3.Efficacy and safety of Gliricidia sepium, Senna alata, and Tinospora rumphii in the treatment of Filipino patients with scabies: A systematic Review and meta-analysis
Genmar Cyrus S. Pasion ; Leandro P. Montilla ; Rowena F. Genuino
Acta Medica Philippina 2025;59(Early Access 2025):1-22
BACKGROUND
Scabies is a highly contagious neglected tropical disease and a persistent challenge globally, particularly in regions like the Philippines, where it remains endemic. With conventional treatments facing limitations such as resistance and adverse effects, exploring the potential of traditional medicinal plants offers a promising avenue for novel therapeutics. However, evidence of their comparative efficacy and safety is still lacking.
OBJECTIVESTo determine the efficacy and safety of Gliricidia sepium (kakawati), Senna alata (akapulko), and Tinospora rumphii (makabuhay) compared to topical scabicides or placebo in the treatment of Filipino patients with scabies using a systematic review.
METHODSWe searched the following databases from inception to March 2024: MEDLINE via PubMed, CENTRAL, EMBASE, EBSCO, HERDIN, ClinicalTrials.gov, WHO-ICRTP, and PHRR. We included all randomized controlled trials involving Filipino patients diagnosed with scabies where preparations containing one of three plants (G. sepium, S. alata, or T. rumphii) were compared with a topical scabicide or placebo for treatment. Two review authors independently applied eligibility criteria, assessed risk of bias (using Risk of Bias 2.0), and extracted data from the included studies. Primary outcomes were complete clearance of skin lesions, reduction of pruritus, and the presence of serious adverse events. Secondary outcomes were recurrence, any adverse events, adverse events requiring withdrawal, and patientreported outcomes. We used RevMan 5.4 to pool dichotomous outcomes using risk ratios and continuous outcomes using mean difference and applied random-effects meta-analysis. We tested for statistical heterogeneity using both the Chi2 test and the I2 statistic. We presented the results using forest plots with 95% confidence intervals. We intended to conduct a funnel plot analysis to check for reporting bias but were unable to because of the limited number of studies. Quality of evidence was assessed using the GRADE approach, and a Summary of Findings table was created using GRADEpro GDT for the primary outcomes.
RESULTSWe included nine RCTs (N=607 participants) that compared various dosage forms (ointments, lotions, poultice, soap, aqueous extract) containing one of the three plants (G. sepium, three studies; S. alata, two studies; T. rumphii, four studies) versus placebo or existing topical scabicides (permethrin, sulfur, crotamiton). Pooled analyses showed that there is probably no difference in complete clearance of lesions between G. sepium and 5% sulfur (RR 0.92 [0.79, 1.07], 2 RCTs, N=85, moderate certainty of evidence). We are uncertain about the difference in complete clearance of lesions between S. alata lotion and placebo (RR 4.94 [1.67, 14.62], 2 RCTs, N=157, very low certainty of evidence), T. rumphii and crotamiton (RR 1.02 [0.76, 1.37], 2 RCTs, N=131, very low certainty of evidence), and T. rumphii lotion and placebo (RR 5.28 [0.76, 36.43], 2 RCTs, N=71, very low certainty of evidence). Data could not be pooled for reduction in pruritus scores due to limited studies for each intervention. No serious adverse events were reported across all studies.
CONCLUSIONGliricidia sepium (kakawati) is probably as effective and safe as 5% sulfur in the management of patients with scabies and may be a promising alternative herbal treatment. Future RCTs should compare it with scabicides recommended by the Philippine Department of Health and World Health Organization, such as permethrin, benzyl benzoate or oral ivermectin. T. rumphii and S. alata may also be investigated using RCTs that should be adequately powered and with good methodologic quality.
Human ; Plants ; Scabies ; Herbal Medicine
4.Cross-reactive IgE-binding proteins from Philippine allergenic weeds and trees pollen extracts
Maria Katrina Diana M. Cruz ; Mary Anne R. Castor ; Krystal M. Hate ; Gregg Austine M. Balanag ; Roche Dana C. Reyes ; Maria Socorro Agcaoili-de jesus ; Cherie C. Ocampo-cervantes ; Leslie Michelle M. Dalmacio
Acta Medica Philippina 2025;59(Early Access 2025):1-6
BACKGROUND
The Philippines has a wide variety of plant species with potential to produce allergenic pollen grains. Most of the study subjects which are residents in Manila tested positive to Fabaceae and Amaranthaceae. Weeds, especially the Amaranthaceae and Fabaceae families, are relevant triggers of allergy as they are highly adaptive and can grow despite adverse weather conditions. However, only a few allergens have been identified among these families and listed in the International Union of Immunological Societies allergen nomenclature database. Currently, local pollen grains are being processed at the Medical Research Laboratory of our institution to produce crude pollen extracts for use in specific diagnostic skin tests and in subcutaneous immunotherapy of patients with respiratory allergies all over the country. However, these extracts have not been characterized and data of cross-reactivity is limited.
OBJECTIVESThis study aimed to evaluate the IgE binding activity of allergen extracts from Philippine weeds and trees, and determine their cross-reactive components.
METHODSPollen extracts from Amaranthus spinosus (pigweed), Mimosa pudica (makahiya), Tridax procumbens (wild daisy), Albizia saman (acacia), Leucaena leucocephala (ipil-ipil), Mangifera indica (mango), and Cocos nucifera (coconut) were extracted and analyzed for crossreactivity using ELISA and Western blot.
RESULTSCross-reaction was observed between ipil-ipil and coconut, and between makahiya and wild daisy. IgE bound to protein components at ~20, 18, and 15 kDa of the weeds, while for the trees, IgE bound to protein components at ~35 and ~15 kDa which may be responsible for the cross-inhibitions observed.
CONCLUSIONData may contribute to the development of immunotherapeutic strategies and diagnostic applications for respiratory allergies, comprising the production of standardized panel of allergens thus eliminating unwanted side effects and providing patients with safer diagnosis and therapy.
Plants ; Pollen ; Allergens ; Amaranthus ; Arecaceae
5.Harnessing chemical communication in plant-microbiome and intra-microbiome interactions.
Hongfu LI ; Yaxin HU ; Siqi CHEN ; Yusufjon GAFFOROV ; Mengcen WANG ; Xiaoyu LIU
Journal of Zhejiang University. Science. B 2025;26(10):923-934
Chemical communication in plant-microbiome and intra-microbiome interactions weaves a complex network, critically shaping ecosystem stability and agricultural productivity. This non-contact interaction is driven by small-molecule signals that orchestrate crosstalk dynamics and beneficial association. Plants leverage these signals to distinguish between pathogens and beneficial microbes, dynamically modulate immune responses, and secrete exudates to recruit a beneficial microbiome, while microbes in turn influence plant nutrient acquisition and stress resilience. Such bidirectional chemical dialogues underpin nutrient cycling, co-evolution, microbiome assembly, and plant resistance. However, knowledge gaps persist regarding validating the key molecules involved in plant-microbe interactions. Interpreting chemical communication requires multi-omics integration to predict key information, genome editing and click chemistry to verify the function of biomolecules, and artificial intelligence (AI) models to improve resolution and accuracy. This review helps advance the understanding of chemical communication and provides theoretical support for agriculture to cope with food insecurity and climate challenges.
Microbiota/physiology*
;
Plants/microbiology*
;
Artificial Intelligence
;
Ecosystem
6.Balancing tradition and conservation: Exploring plant part substitution in traditional medicine.
Bhavana SRIVASTAVA ; Himanshu SHARMA ; Ajay Kumar MEENA ; Vandana BHARTHI
Journal of Integrative Medicine 2025;23(3):209-217
Traditional medicine, deeply rooted in cultural practices and historical wisdom, has faced surging challenges due to the escalating demand for plant-based remedies. This comprehensive review critically emphasizes the urgent need for sustainable practices within traditional medicine, with a special focus on the potential of plant part substitution. Case studies that illuminate successful instances of substituting plant parts and providing a deep insight into viable alternatives to conventional practices are presented. Opportunities and challenges inherent in plant part substitution are discussed by addressing key considerations such as phytochemical and pharmacological aspects, safety and toxicity profiles, cultural insights, standardization, clinical validation, and regulatory compliance. This review serves as a guide for navigating the delicate balance between tradition and conservation within indigenous medicine practices. It underscores the importance of embracing sustainable approaches through plant part substitution, ensuring the preservation of cultural heritage while meeting the evolving healthcare needs of society. Please cite this article as: Srivastava B, Sharma H, Meena AK, Bharthi V. Balancing tradition and conservation: exploring plant part substitution in traditional medicine. J Integr Med. 2025; 23(3): 209-217.
Medicine, Traditional/methods*
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Humans
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Plants, Medicinal/chemistry*
;
Phytotherapy/methods*
;
Conservation of Natural Resources
7.Lirispirolides A-L, a new class of sesquiterpene-monoterpene heterodimers with anti-neuroinflammatory activity from the rare medicinal plant Liriodendron chinense.
Yuhang HE ; Kexin LI ; Yufei WU ; Zexin JIN ; Jinfeng HU ; Yicheng MAO ; Juan XIONG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(8):938-950
Lirispirolides A-L (1-12), twelve novel sesquiterpene-monoterpene heterodimers featuring distinctive carbon skeletons, were isolated from the branches and leaves of Chinese tulip tree [Liriodendron chinense (L. chinense)], a rare medicinal and ornamental plant endemic to China. The structural elucidation was accomplished through comprehensive spectroscopic analyses, quantum-chemical calculations, and X-ray crystallography. These heterodimers exhibit a characteristic 2-oxaspiro[4.5]decan-1-one structural motif, biosynthetically formed through intermolecular [4 + 2]-cycloaddition between a germacrane-type sesquiterpene and an ocimene-type monoterpene. The majority of the isolated compounds demonstrated significant anti-neuroinflammatory effects in lipopolysaccharide (LPS)-induced BV-2 microglial cells by reducing the production of pro-inflammatory mediators, specifically tumor necrosis factor-α (TNF-α) and nitric oxide (NO). Further investigation revealed that the lirispirolides' inhibition of NO release correlated with decreased messenger ribonucleic acid (mRNA) expression of inducible NO synthase (iNOS).
Sesquiterpenes/isolation & purification*
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Anti-Inflammatory Agents/isolation & purification*
;
Animals
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Mice
;
Tumor Necrosis Factor-alpha/genetics*
;
Nitric Oxide/immunology*
;
Microglia/immunology*
;
Molecular Structure
;
Liriodendron/chemistry*
;
Monoterpenes/isolation & purification*
;
Plants, Medicinal/chemistry*
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Cell Line
;
Lipopolysaccharides
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Nitric Oxide Synthase Type II/immunology*
;
Plant Extracts/pharmacology*
;
China
8.Functions and mechanisms of Zn2+-dependent histone deacetylase in plant responses to abiotic stress.
Ming WEI ; Meng ZHAO ; Xinrui WU ; Guoqiang WU
Chinese Journal of Biotechnology 2025;41(2):491-509
The HDAs (a subfamily of histone deacetylases), a class of Zn2+-dependent histone deacetylases, are highly homologous to the reduced potassium dependency 3 (RPD3) in yeast. HDAs extensively regulate chromosome stability, gene transcription, and protein activity by catalyzing the removal of acetyl group from histone and non-histone lysine residues. HDA-mediated deacetylation is essential for plant growth, development, and responses to abiotic stress. We review the research progress in HDAs regarding the discovery, structures, classification, deacetylation process, and roles in regulating plant responses to abiotic stress. Furthermore, this paper prospects the future research on HDAs, aiming to provide theoretical support for the research on epigenetic regulation mediated by HDAs.
Histone Deacetylases/classification*
;
Zinc/metabolism*
;
Stress, Physiological/physiology*
;
Plants/genetics*
9.Functions and mechanisms of autophagy-related genes in plant responses to adversity stresses.
Yun'er REN ; Guoqiang WU ; Ming WEI
Chinese Journal of Biotechnology 2025;41(2):510-529
Autophagy is an evolutionarily conserved self-degradation process in eukaryotes. It not only plays a role in plant growth and development but also is involved in plant responses to biotic and abiotic stresses. Plants can initiate autophagy to degrade the surplus or damaged cytoplasmic materials and organelles, thus coping with abiotic and biotic stresses. The initiation of autophagy depends on autophagy-related genes (ATGs). The transcription factors can directly bind to the promoters of ATGs to activate autophagy and regulate their transcriptional levels and post-translational modifications. Furthermore, ATGs can directly or indirectly interact with plant hormones to regulate plant responses to stresses. When plants are exposed to salinity, drought, extreme temperatures, nutrient deficiencies, and pathogen stress, ATGs are significantly induced, which enhances the autophagy activity to facilitate the degradation of the denatured and misfolded proteins, thereby enhancing plant tolerance to adversity stresses. This article summarizes the discovery, structures, and classification of plant ATGs, reviews the research progress in the mechanisms of ATGs in plant responses to abiotic and biotic stresses, and prospects the future research directions. This review is expected to provide the genetic resources and a theoretical foundation for the genetic improvement of crops in responses to stress tolerance.
Autophagy/physiology*
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Stress, Physiological/genetics*
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Gene Expression Regulation, Plant
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Plants/metabolism*
;
Transcription Factors/metabolism*
;
Plant Proteins/genetics*
;
Genes, Plant
;
Plant Physiological Phenomena
;
Droughts
10.Regulatory roles of JAZ in the growth and development of horticultural plants.
Xinxin ZHANG ; Tao TAO ; Hangchun LI ; Zhi QIAO ; Qinglin TANG ; Dayong WEI ; Yang YANG ; Zhimin WANG
Chinese Journal of Biotechnology 2025;41(2):530-545
Jasmonic acid (JA) is a common plant hormone with regulatory effects on plant growth and development. The jasmonate ZIM-domain (JAZ) proteins (JAZs), as key regulators in the JA signaling pathway, are involved in multiple biological processes such as anthocyanin accumulation, flowering time modulation, and secondary metabolite synthesis in plants. JAZs are essential components of many regulatory signaling networks. The JAZ genes, members of the plant-specific TIFY family, have been identified in the genomes of a variety of horticultural plants. Here, we summarized the research progress in the roles of JAZs in horticultural plants, aiming to give insights into the further study of the biological functions and regulatory networks of JAZ genes in plants.
Horticulture
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Repressor Proteins/metabolism*
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Plant Proteins/metabolism*
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Cyclopentanes/metabolism*
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Oxylipins/metabolism*
;
Plants/metabolism*
;
Plant Development


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