Black-fiber palm

Arenga pinnata

Arenga pinnata,通常称为糖棕榈,是一种传统上在东南亚和非洲部分地区发现的植物。尽管它被用于各种文化实践中,但尚未记录其特定的传统用途。科学研究表明,对 Arenga pinnata 淀粉进行的修饰可以改变其物理化学性质和消化性,例如通过与壳聚糖和三甲磷酸钠双重修饰增加交联度。另一项研究证实了将糖棕榈淀粉与寡乳酸共价结合,这略微增加了其取代度。此外,使用柠檬酸和壳聚糖进行的修饰增加了抗性淀粉含量并改变了其他性质。将细菌纤维素纳入其中改善了热塑性淀粉生物复合材料的机械性能但降低了断裂伸长率。尚未报告 Arenga pinnata 存在任何显著的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

  • Arenga pinnata淀粉与壳聚糖和三甲磷酸钠的双重改性增加了交联程度,同时改变了物理化学性质和消化性。 D PMID
  • 来自糖棕榈(Arenga pinnata)的淀粉与两种类型的寡乳酸进行了graftedgraftedgraftedgraftedgrafted连接,并通过光谱和热分析得到了证实,使其取代度略有增加。 D PMID
  • 将棕榈(Arenga pinnata)淀粉与柠檬酸和壳聚糖修饰后,增加了抗性淀粉含量并改变了物理化学性质。 D PMID
  • 细菌纤维素的加入改善了热塑性脂肪酸生物复合材料的机械性能和热稳定性,但降低了断裂伸长率。 D PMID

Frequently asked questions

What is Black-fiber palm?

Black-fiber palm (Arenga pinnata) 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 Black-fiber palm?

4 sourced findings are recorded for Black-fiber palm; the strongest carries evidence grade D. For example: Arenga pinnata淀粉与壳聚糖和三甲磷酸钠的双重改性增加了交联程度,同时改变了物理化学性质和消化性。

How strong is the evidence for Black-fiber palm?

The strongest finding for Black-fiber palm carries evidence grade D — preliminary or traditional. Grades run A (strongest) to D (preliminary or traditional).

Is Black-fiber palm safe? What are the side effects?

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

Does Black-fiber palm interact with medications?

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

What are the common names of Black-fiber palm?

Black-fiber palm is also known as: Сахарная пальма, Crin végétal.

Is Black-fiber palm 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 Preparation and characterization of Arenga pinnata thermoplastic starch/bacterial cellulose nanofiber biocomposites via in-situ twin screw extrusion. literature abstract metadata
  2. T2 Cross-linking Arenga pinnata starch and chitosan by citric acid: Structure and properties. literature abstract metadata
  3. T2 Cross-linked Arenga pinnata (Wurmb.) Merr. starch and chitosan with sodium trimetaphosphate: Structure, physicochemical properties and in vitro digestibility. literature abstract metadata
  4. T2 Preparation and characterization of sugar palm (Arenga pinnata) starch grafted with oligo(lactic acid) via ex situ oligomerization. literature abstract metadata