Skip to main content
  • Home
  • About the Journal
    • Aim and Scope
    • Editorial Board
    • Bibliographic Listings
    • Peer Review Process
    • Journal Metrics
    • Subscriptions
    • RSS Feeds
  • Policies
    • Publication Ethics & Malpractice Statment
    • Editorial Policy
      • Peer Review Process
    • Plagiarism Policy
    • Copyright and OA policy
    • Retraction and Withdrawal Policy
  • For Authors
    • Instruction to Authors
    • Article Processing Charges
    • Frequently Asked Questions
    • Downloads
  • Contacts
Pharmacognosy Research
An Open Access Journal in Pharmacognosy and Natural Products

Submit your article

Pharmacognosy Research
  • Articles in Press
  • Current Issue
  • Past Issues
  • Search Articles
  • Submit Article
  • Microscopical Investigation of Punica granatum L. Flower: A Traditional Drug...
  • FTIR Analysis, Total Phenolic Content, Antioxidant and Antidiabetic Activities...
  • Synergistic Effects of Guan-Xin-Er-Hao and Hydroxysafflor Yellow A on...
  • Isolation, Characterization and Structural Elucidation of a Bioactive Flavonoid...
  • Identification and Quantification of Four Bioactive Markers in Sanjivani Vati...
  • Modulatory Effects of Passiflora edulis on Liver Function, Lipid Profile and...
  • A Comprehensive Review on Medicinal Herbal Plant with Potential Hypolipidemic...
  • Exploring the Male Antifertility Potential of Medicinal Plants: A Comprehensive...
  • The Ocean's Treasure Trove: Bioactive Compounds from Sea Sponges
  • Unveiling the Phytochemical Profile and Therapeutic Benefits of Solanum...
  • Mechanistic Role of Phytophenolic Acids in the Management of Alzheimer’s...
  • Evaluation of Pistachio Extract Standardized to 1% Melatonin on Pentobarbital...
  • Evaluation of in vitro Anti-Inflammatory Activity of Trichosanthes palmata...
  • In vitro Cytotoxicity Evaluation of Hardwickia binata Roxbs against Human...
  • Advancements in Quantitative and Qualitative Methods for Quality Control of...
  • In vitro Assessment of Antioxidant and Cytotoxic Effects of Argemone mexicana...
  • Bovine Milk Proteins and Human Health: Unveiling Interplay, Surmounting...
  • Exploring the Role of Phytoconstituents for Endocrine Disorder: A Review
  • Bioactive Compounds in Inocutis levis and their Cytotoxic Effects on MCF-7 and...
  • Green Synthesis of Silver Nanoparticles from Secamone emetica: Characterization...
  • Bioactive Constituents of Curcuma amada Roxb. Rhizome and its Antimicrobial...
  • Assessment of Quality Control Parameters of Erandamoola Kwatha, Dhanvantari...
  • Recent Advances in Transdermal Drug Delivery System and its Utilization in...
  • Unearthing the Modulatory Operations of Phytochemicals: A Reliable Framework...
  • Cyperus esculentus Ameliorates Cadmium Chloride Induced Testicular Toxicity in...
  • Interaction between Anti Diabetic Drugs and Herbs: A Review
  • Exploring the Therapeutic Potential of Natural Products in Obesity Treatment:...
  • Syringic Acid Ameliorates Bleomycin Induced Pulmonary Inflammation and Fibrosis...
  • A Comprehensive Review of Phytochemical and Pharmacological Appraisal of Cassia...
  • Exploring the Therapeutic Potential of Plectranthus amboinicus: LC-MS Profiling...
  • An Evaluation of the Oral Toxicity of Shwaskas Chintamani Rasa in Wistar Rats...
  • Standardization and GC-MS Analysis of Phytochemicals in Coccinia indica (Wight...
  • Phytopharmacological Insights into Ricinus communis: A Comprehensive Overview
  • Phyto-Analytical Studies and in vitro Wound Healing Activity of Synedrella...
Latest

Latest Contents : Vol 17, Issue 2, Apr-Jun, 2025

Plant Habitat and close view of Punica granatum L.
Microscopical Investigation of Punica granatum L. Flower: A Traditional Drug with Vivid Therapeutic Promise
Apr 14, 2025 - 14:15
FTIR analysis of aqueous leaf extract of Hildegardia populifolia
FTIR Analysis, Total Phenolic Content, Antioxidant and Antidiabetic Activities of Hildegardia populifolia (Roxb.) Schott and Endl. (Malvaceae)
Apr 11, 2025 - 14:29
Mechanism of action of Guan-Xin-Er-Hao (GXII) and hydroxysafflor yellow A (HSYA) in ameliorating atherosclerosis in ApoE−/− mice involves antioxidant and anti-inflammatory effects. The figure illustrates the antioxidant and anti-inflammatory mechanisms of Guan-Xin-Er-Hao and Hydroxysafflor Yellow A. By balancing antioxidant enzymes and MDA production; they reduce Reactive Oxygen Species (ROS); thereby alleviating endothelial dysfunction and oxidative stress. ROS-induced inflammation increases VCAM-1 express
Synergistic Effects of Guan-Xin-Er-Hao and Hydroxysafflor Yellow A on Atherosclerosis in ApoE-/- Mice: Unveiling Antioxidant and Anti-Inflammatory Mechanisms
Apr 9, 2025 - 17:11
Isolation of components by column chromatography.
Isolation, Characterization and Structural Elucidation of a Bioactive Flavonoid from Schinus polygama Leaves Using Chromatographic and Spectroscopic Techniques
Apr 9, 2025 - 16:49
Developed HPTLC plates for all marker compounds. A. Gallic acid, B. Piperine, C. β-asarone, D. Aconitine).
Identification and Quantification of Four Bioactive Markers in Sanjivani Vati Using High-Performance Thin Layer Chromatography
Apr 9, 2025 - 16:40
Impact of EPE on (A) TC (B) TG (C) HDL and (D) LDL in fructose-induced MetS. Values are stated as mean±SEM; n=6 ####p<0.0001 relative to normal control; *p<0.05, **p<0.01, ***p<0.001, ****p<0.0001 relative to fructose control.
Modulatory Effects of Passiflora edulis on Liver Function, Lipid Profile and Adipokines in Fructose-Induced Metabolic Syndrome in Rats
Apr 9, 2025 - 16:23
simplified overview of the Mevalonate pathway involved in cholesterol synthesis. Potential therapeutic interventions, including both conventional drugs and Traditional Chinese Medicines (TCMs), are highlighted. Dotted arrows represent pathways that are bypassed or not shown in this diagram.
A Comprehensive Review on Medicinal Herbal Plant with Potential Hypolipidemic Activity
Apr 9, 2025 - 16:02
Various methods of Male Contraception.
Exploring the Male Antifertility Potential of Medicinal Plants: A Comprehensive Review
Apr 9, 2025 - 15:54
More

Browse Article in images

Plant Habitat and close view of Punica granatum L.
FTIR analysis of aqueous leaf extract of Hildegardia populifolia
Mechanism of action of Guan-Xin-Er-Hao (GXII) and hydroxysafflor yellow A (HSYA) in ameliorating atherosclerosis in ApoE−/− mice involves antioxidant and anti-inflammatory effects. The figure illustrates the antioxidant and anti-inflammatory mechanisms of Guan-Xin-Er-Hao and Hydroxysafflor Yellow A. By balancing antioxidant enzymes and MDA production; they reduce Reactive Oxygen Species (ROS); thereby alleviating endothelial dysfunction and oxidative stress. ROS-induced inflammation increases VCAM-1 express
Isolation of components by column chromatography.
Developed HPTLC plates for all marker compounds. A. Gallic acid, B. Piperine, C. β-asarone, D. Aconitine).
Impact of EPE on (A) TC (B) TG (C) HDL and (D) LDL in fructose-induced MetS. Values are stated as mean±SEM; n=6 ####p<0.0001 relative to normal control; *p<0.05, **p<0.01, ***p<0.001, ****p<0.0001 relative to fructose control.
simplified overview of the Mevalonate pathway involved in cholesterol synthesis. Potential therapeutic interventions, including both conventional drugs and Traditional Chinese Medicines (TCMs), are highlighted. Dotted arrows represent pathways that are bypassed or not shown in this diagram.
Various methods of Male Contraception.
The Ocean's Treasure Trove: Bioactive Compounds from Sea Sponges
Morphology of Flower.
Different types of activities of phenolic acids.
Effect of Pistachio extract 1% Melatonin on Onset time of Sleep (Minutes).
More
  • Latest
  • Popular
Plant Habitat and close view of Punica granatum L.
Microscopical Investigation of Punica granatum L. Flower: A Traditional Drug with Vivid Therapeutic Promise
Apr 14, 2025 - 14:15
FTIR analysis of aqueous leaf extract of Hildegardia populifolia
FTIR Analysis, Total Phenolic Content, Antioxidant and Antidiabetic Activities of Hildegardia populifolia (Roxb.) Schott and Endl. (Malvaceae)
Apr 11, 2025 - 14:29
Mechanism of action of Guan-Xin-Er-Hao (GXII) and hydroxysafflor yellow A (HSYA) in ameliorating atherosclerosis in ApoE−/− mice involves antioxidant and anti-inflammatory effects. The figure illustrates the antioxidant and anti-inflammatory mechanisms of Guan-Xin-Er-Hao and Hydroxysafflor Yellow A. By balancing antioxidant enzymes and MDA production; they reduce Reactive Oxygen Species (ROS); thereby alleviating endothelial dysfunction and oxidative stress. ROS-induced inflammation increases VCAM-1 express
Synergistic Effects of Guan-Xin-Er-Hao and Hydroxysafflor Yellow A on Atherosclerosis in ApoE-/- Mice: Unveiling Antioxidant and Anti-Inflammatory Mechanisms
Apr 9, 2025 - 17:11
Isolation of components by column chromatography.
Isolation, Characterization and Structural Elucidation of a Bioactive Flavonoid from Schinus polygama Leaves Using Chromatographic and Spectroscopic Techniques
Apr 9, 2025 - 16:49
More
Percentage of secondary metabolites profile from each extract.
Evaluation of Selectivity Index and Phytoconstituents Profile of Various Extracts from the Stem of Strychnos lucida R. Br. as Anti-malarial
In vitro Sun Protection Factor Determination of Herbal Oils used in Cosmetics
In vitro Sun Protection Factor Determination of Herbal Oils used in Cosmetics
Kapikacchu: The Brain Medicine
Kapikacchu: The Brain Medicine

About

Pharmacognosy Research (Pharmacogn Res.)

[ISSN: Print -0976-4836, Online - 0974-8490] [http://www.phcogres.com], It provides peer-reviewed original research articles from the field of Natural Products. The journal serves an international audience of scientists and researchers in a variety of research and academia by quickly disseminating research findings related to Medicinal Plants and Natural Products.

It is a peer reviewed journal aiming to publish high quality original research articles, methods, techniques and evaluation reports, critical reviews, short communications, commentaries and editorials of all aspects of medicinal plant research. The journal is aimed at a broad readership, publishing articles on all aspects of pharmacognosy, and related fields. The journal aims to increase understanding of pharmacognosy as well as to direct and foster further research through the dissemination of scientific information by the publication of manuscripts. The submissions of original contributions in all areas of pharmacognosy are welcome.

Abstracting and Indexing Information

The journal is registered with the following abstracting partners:
Baidu Scholar, CNKI (China National Knowledge Infrastructure), EBSCO Publishing's Electronic Databases, Ex Libris – Primo Central, Google Scholar, Hinari, Infotrieve, National Science Library, ProQuest, TDNet, Wanfang Data

The journal is indexed with, or included in, the following:
EMBASE/ Excerpta Medica, Emerging Sources Citation Index, Index Copernicus, Web of Science

For any other information, write to editor.phcogres@phcog.net

Announcement

ESCI

We are pleased to inform you that the Pharmacognosy Research is now covered by Clarivate Analytics (formerly Thomson Reuters) products and services. The journal is indexed and abstracted in Emerging Sources Citation Index (ESCI) since 2017. The ESCI is a new index in the Web of Science Core Collection.

Tags

(+)-Catechin
(-)-Epicatechin
1
1- diphenyl-2-picrylhydrazyl
1-diphenyl-2-picryl-hydrazil); Ferric Reducing Antioxidant Power
1-diphenyl-2-picrylhydrazyl-radical scavenging assay
10‑di‑epi‑Cubenol
12-didehydroandrographolide
12‑epilycodoline N‑oxide
14-deoxy-11
14-deoxyandrographolide
15-lipoxygenase inhibitory activity
16S ribosomal RNA
16S rRNA
18S Ribosomal ribonucleic acid
1H‑NMR
1‑chloro‑2
1‑Diphenyl‑1‑picrylhydrazyl
1‑diphenyl‑2‑picrylhydrazyl
1‑Diphenyl‑2‑picrylhydrazyl
1‑diphenyl‑2‑trinitrophenylhydrazine scavenger
2
2-Benzenedicarboxylic acid diisooctyl ester
2-diphenyl-1-picrylhydrazyl
2-diphenyl-1-picrylhydrazylDPPH
25‑dien‑3‑ol.
2‑diphenyl‑1‑picrylhydrazyl
2‑diphenyl‑1‑picrylhydrazyl radical
2’ azino bis (ethylbenzthiazolene‑6‑sulfonic acid) radical cation assay
2’‑azino‑bis (3‑ethylbenzothiazoline‑6‑sulfonic acid)
2’‑Diphenyl‑1‑picrylhydrazyl
3
3 (4
3 β-taraxerol.
3(4
3-(4
3-dimethyl
3CLPRO
3T3-L1
3T3‑L1
3T3‑L1 cell lines
3‑(4
3‑(S)‑hexahydroxydiphenoyl‑D‑glucose
3’
3’‑hydroxy‑5
4
4-caffeoylquinic acid
4NQO
4‑dinitrobenzene
4‑hydroxyacetophenone
More

Copyright © 2024 Phcog.Net. All rights reserved. | Powered by Manuscript TechnoMedia LLP.

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. Last updated: 01/06/2021