Legume

Parkia timoriana

帕尔基亚·提莫里亚纳,又称桑拿树或雨树,是一种在东南亚和非洲部分地区发现的传统植物。传统上,其各种部分未广泛记录用于不同文化中的药用。科学证据表明,帕尔基亚·提莫里亚纳的果壳可以通过超声辅助方法与深共晶溶剂提取,以获得具有抗氧化特性和对抗颗粒物引起的损害保护作用的果胶。种子富含蛋白质和脂肪,而外果皮则富含碳水化合物、粗纤维和灰分。在叶片和根部组织中已鉴定出不同水平的酚类、黄酮类和萜类化合物,表明潜在的生物活性成分。NADES配方改善了树豆种子的热稳定性、乳化活性和流变学特性。尚未记录该植物的重大安全问题或药物相互作用。

速览
最佳证据
D
注意事项

仅供参考。传统用法并不代表已被证实有效。证据与安全性各不相同,请查阅所引来源。

科学怎么说

  • 研究发现,使用深共晶溶剂从Parkia timoriana果壳中超声辅助提取得到的果胶具有抗氧化活性,并能对抗PM2.5引起的损伤。 D PMID
  • 帕尔基亚·提莫里安娜的种子具有最高的蛋白质和脂肪含量,而外果肉则显示出最高的碳水化合物、粗纤维和灰分含量。 D PMID
  • 研究发现帕尔基亚·提莫里安娜叶片和根部组织中黄酮、酚类和萜类的含量存在差异。 D PMID
  • NADES制剂提高了树豆种子蛋白的热稳定性、乳化活性和流变性质,优于其他制剂。 D PMID

Frequently asked questions

What is Legume?

Legume (Parkia timoriana) is a plant documented in FolkKB's traditional-medicine reference, drawn from sourced literature and cross-checked against the evidence.

What does the scientific evidence say about Legume?

4 sourced findings are recorded for Legume; the strongest carries evidence grade D. For example: 研究发现,使用深共晶溶剂从Parkia timoriana果壳中超声辅助提取得到的果胶具有抗氧化活性,并能对抗PM2.5引起的损伤。

How strong is the evidence for Legume?

The strongest finding for Legume carries evidence grade D — preliminary or traditional. Grades run A (strongest) to D (preliminary or traditional).

Is Legume safe? What are the side effects?

No major safety issues are recorded for Legume in our sources, but the data may be incomplete. Consult a qualified professional before use.

Does Legume interact with medications?

No drug interactions are recorded for Legume in our sources. This does not rule them out — check with a pharmacist.

What are the common names of Legume?

Legume is also known as: Магнолиофиты.

Is Legume a proven treatment?

No. FolkKB is informational only. Traditional use and early findings are not proof of efficacy or safety — consult a qualified professional and never self-treat.

来源

  1. T2 Impact of choline choride and sugar natural deep eutectic solvents on structure and functionality of treebean (Parkia timoriana) seed protein. literature abstract metadata
  2. T2 Sustainable pectin extraction from Riang husk using ultrasound-assisted extraction with deep eutectic solvents and its potential in antipollution products. literature abstract metadata
  3. T2 Elucidating the Secondary Metabolite Biosynthesis Networks in Underutilized Tree Bean (Parkia timoriana) Through Integrated Metabolomic and Transcriptomic Approaches. literature abstract metadata
  4. T2 Impact of Different Drying Techniques on Parkia timoriana Pods: Physicochemical, Nutritional, and Bioactive Insights Through In Vitro and In Silico Approaches. literature abstract metadata