Publication Cover
Natural Product Research
Formerly Natural Product Letters
Volume 23, 2009 - Issue 2
412
Views
31
CrossRef citations to date
0
Altmetric
Original Articles

New principles from seeds of Nigella sativa

, &
Pages 138-148 | Received 21 Aug 2007, Accepted 27 Aug 2008, Published online: 29 Oct 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Z.M. Babar, Wan Mohd Azizi, Solachuddin JA Ichwan, Qamar Uddin Ahmed, Abul Kalam Azad & Imranul Mawa. (2019) A simple method for extracting both active oily and water soluble extract (WSE) from Nigella sativa (L.) seeds using a single solvent system. Natural Product Research 33:15, pages 2266-2270.
Read now
Xixi Liu, Haji Akber Aisa & Xuelei Xin. (2019) A new fatty acid ester from Nigella sativa var. hispidula Boiss showing potent anti-protein tyrosine phosphatase 1B activity. Natural Product Research 33:4, pages 472-476.
Read now
Rachid Mosbah, Zouhir Djerrou & Alberto Mantovani. (2018) Protective effect of Nigella sativa oil against acetamiprid induced reproductive toxicity in male rats. Drug and Chemical Toxicology 41:2, pages 206-212.
Read now
Ambreena Riyaz, Shahid Nazir, Mohammad Khushtar, Anuradha Mishra, Yasmeen Jahan & Asad Ahmad. (2017) Effect of Nigella sativa L. seed extract on cisplatin-induced delay in gastric emptying in Sprague-Dawley rats. Natural Product Research 31:5, pages 588-592.
Read now
Seyyed Mohammad Seyyedi, Parviz Rezvani Moghaddam, Mohammad Khajeh-Hossieni & Hamid Shahandeh. (2017) Improving of seed quality of black seed (Nigella sativa L.) by increasing seed phosphorus content in a calcareous soil. Journal of Plant Nutrition 40:2, pages 197-206.
Read now
Neelam Gurnani, Madhu Gupta, Darshana Mehta & Bhupendra Kumar Mehta. (2016) Chemical composition, total phenolic and flavonoid contents, and in vitro antimicrobial and antioxidant activities of crude extracts from red chilli seeds (Capsicum frutescens L.). Journal of Taibah University for Science 10:4, pages 462-470.
Read now

Articles from other publishers (25)

Abdalsalam Kmail, Omar Said & Bashar Saad. (2023) How Thymoquinone from Nigella sativa Accelerates Wound Healing through Multiple Mechanisms and Targets. Current Issues in Molecular Biology 45:11, pages 9039-9059.
Crossref
Afreen Usmani & Rania I.M. Almoselhy. (2023) Novel Positioning of Nigella sativa L. (Black Seed) from Farm to Pharma Indexed in Pharmacopeia. SSRN Electronic Journal.
Crossref
Zeliha Ustun Argon, Zinar Pinar Gumus, Veysel Umut Celenk & Mohamed Fawzy Ramadan Hassanien. 2023. Bioactive Phytochemicals from Vegetable Oil and Oilseed Processing By-products. Bioactive Phytochemicals from Vegetable Oil and Oilseed Processing By-products 621 641 .
Rana A. Alamoudi, Soha A. Alamoudi & Ruaa A. Alamoudi. (2022) Biological Potential of the Main Component, Thymoquinone, of Nigella sativa in Pulp Therapy—In Vitro Study. Life 12:9, pages 1434.
Crossref
Dharmendra Nath Bhatt, Sekhu Ansari, Wesley Fernandes Fonseca, Kumar Vaibhav & Meenakshi Ahluwalia. 2022. Black Seeds (Nigella Sativa). Black Seeds (Nigella Sativa) 197 216 .
Shagufta Khan, M. Ali, Mohammed M.A. Albratty, Asim Y. Najmi, Uzma Azeem, Shah A. Khan & Mashoque Ahmad Rather. 2022. Black Seeds (Nigella Sativa). Black Seeds (Nigella Sativa) 29 62 .
Muhammad Atif, Farrah Naz, Junaid Akhtar, Muhammad Imran, Sidrah Saleem, Javed Akram, Muhammad Imran & Muhammad Ikram Ullah. (2021) From Molecular Pathology of COVID 19 to Nigella Sativum as a Treatment Option: Scientific Based Evidence of Its Myth or Reality. Chinese Journal of Integrative Medicine 28:1, pages 88-95.
Crossref
Zeliha Ustun-Argon, Zinar Pinar Gumus, Veysel Umut Celenk & Mohamed Fawzy Ramadan. 2020. Bioactive Phytochemicals from Vegetable Oil and Oilseed Processing By-products. Bioactive Phytochemicals from Vegetable Oil and Oilseed Processing By-products 1 21 .
Garima Gupta, Mohammed Shariq Iqbal, Brijesh Pandey & Janmejay Kumar Srivastava. (2020) Differential Expression of Thymoquinone and Its Localization in Different Parts of Nigella sativa L.. Proceedings of the National Academy of Sciences, India Section B: Biological Sciences 91:1, pages 13-19.
Crossref
Paras Sharma & T. Longvah. 2021. Oilseeds: Health Attributes and Food Applications. Oilseeds: Health Attributes and Food Applications 331 350 .
Ranga Rao Ambati & Mohamed Fawzy Ramadan. 2021. Black cumin (Nigella sativa) seeds: Chemistry, Technology, Functionality, and Applications. Black cumin (Nigella sativa) seeds: Chemistry, Technology, Functionality, and Applications 501 520 .
Omar Bashir, Nusrat Jan, Gousia Gani, H. R. Naik, Syed Zameer Hussain, Monika Reshi & Tawheed Amin. 2021. Black cumin (Nigella sativa) seeds: Chemistry, Technology, Functionality, and Applications. Black cumin (Nigella sativa) seeds: Chemistry, Technology, Functionality, and Applications 191 207 .
Ebru Aydin & Arzu Kart. 2021. Black cumin (Nigella sativa) seeds: Chemistry, Technology, Functionality, and Applications. Black cumin (Nigella sativa) seeds: Chemistry, Technology, Functionality, and Applications 153 177 .
Bharat Singh & Ram Avtar Sharma. 2020. Secondary Metabolites of Medicinal Plants. Secondary Metabolites of Medicinal Plants 736 746 .
Shahid AkbarShahid Akbar. 2020. Handbook of 200 Medicinal Plants. Handbook of 200 Medicinal Plants 1287 1312 .
Ebrahim M. Yimer, Kald Beshir Tuem, Aman Karim, Najeeb Ur-Rehman & Farooq Anwar. (2019) Nigella sativa L. (Black Cumin): A Promising Natural Remedy for Wide Range of Illnesses . Evidence-Based Complementary and Alternative Medicine 2019, pages 1-16.
Crossref
Bushra Uzair, Abdul Hameed, Sidrah Nazir, Barkat Ali Khan, Fehmida Fasim, Samiullah Khan & Farid Menaa. (2017) Synergism Between Nigella sativa Seeds Extract and Synthetic Antibiotics Against Mec A Gene Positive Human Strains of Staphylococcus aureus. International Journal of Pharmacology 13:8, pages 958-968.
Crossref
Bassem Y. Sheikh, Md. Moklesur Rahman Sarker, Muhamad Noor Alfarizal Kamarudin & Amin Ismail. (2017) Prophetic medicine as potential functional food elements in the intervention of cancer: A review. Biomedicine & Pharmacotherapy 95, pages 614-648.
Crossref
Seyyed Mohammad Seyyedi, Parviz Rezvani Moghaddam & Mehdi Nassiri Mahallati. (2016) Weed Competition Periods Affect Grain Yield and Nutrient Uptake of Black Seed ( Nigella Sativa L.). Horticultural Plant Journal 2:3, pages 172-180.
Crossref
Ahmad Ghorbani. (2013) Best herbs for managing diabetes: a review of clinical studies. Brazilian Journal of Pharmaceutical Sciences 49:3, pages 413-422.
Crossref
Aftab Ahmad, Asif Husain, Mohd Mujeeb, Shah Alam Khan, Abul Kalam Najmi, Nasir Ali Siddique, Zoheir A. Damanhouri & Firoz Anwar. (2013) A review on therapeutic potential of Nigella sativa: A miracle herb. Asian Pacific Journal of Tropical Biomedicine 3:5, pages 337-352.
Crossref
T. K. LimT. K. Lim. 2013. Edible Medicinal And Non-Medicinal Plants. Edible Medicinal And Non-Medicinal Plants 506 567 .
Yong-Li Li, Yan-Xia Gao, Xian-Wen Yang, Hui-Zi Jin, Ji Ye, Luke Simmons, Ning Wang, Andre Steinmetz & Wei-Dong Zhang. (2012) Cytotoxic triterpenoids from Abies recurvata. Phytochemistry 81, pages 159-164.
Crossref
Denys J. CharlesDenys J. Charles. 2013. Antioxidant Properties of Spices, Herbs and Other Sources. Antioxidant Properties of Spices, Herbs and Other Sources 415 426 .
Robert A. Hill & Joseph D. Connolly. (2011) Triterpenoids. Natural Product Reports 28:6, pages 1087.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.