A Screening Study of the Spray Drying Process for the Microencapsulation of Phenolic Compounds from Sarcocephalus latifolius (Sm.) Bruce Root Extracts Using a Two-level Factorial Design
Stive Martial Sikandi Chendjou, Roli Karole Tsague Tsatsop, Touoze Annie Stella Zome, Noel Amba, Sidonie Beatrice Kenmogne
International Research Journal of Pure and Applied Chemistry · pp. 82–94 · Published 22 May 2025
10.9734/irjpac/2025/v26i3919Abstract
The stability of bioactive molecules is improved with microencapsulation by spray drying, providing protection against oxygen, water, or any agent. Sarcocephalus latifolius (sm.) Bruce is a medicinal plant widely used in traditional herbal medicine to treat several diseases such as fever, pains, dental caries and malaria. In this research, various spray drying process operational parameters such as encapsulating agent to extract ratio (5 – 20 g/ g of extracts), feed suspension flow rate (200–800 mL/h), inlet air temperature (110 – 180°C), and inlet air flow rate (50 - 90 m3/h) were evaluated by screening process using two level factorial design (TLFD). Design-Expert software has been used to find out the significant variables in terms of obtaining high spray drying process yield, Encapsulation efficiency (EE) of polyphenols from S. latifolius roots and least moisture content of spray dried powders. The screening process indicated that encapsulating agent to extract ratio was the most significant and contributing factor affecting the results of spray drying process yield together with encapsulation efficiency of polyphenolic compounds (p < 0.05), while feed suspension flow rate exhibited the least significance and contribution (p > 0.05). Most interactions between the studied parameters were insignificant. The Process yield of 78.44%, Moisture content of 2.21% and EE of polyphenols of 72.93% have been obtained at encapsulating agent to extract ratio (20 g/ g of extracts), feed suspension flow rate (200 mL/h), inlet air temperature (180°C), and inlet air flow rate of 90 m3/h and 50 m3/h (for moisture content).
Cited by 1
Roli Karole Tsague Tsatsop, Stive Martial Sikandi Chendjou, Touoze Annie Stella Zome · Discover Chemistry · 2025
Related research
- Evaluation of Phytochemical Constituents and Antimicrobial Activity of Leaves and Stem Bark Extracts of Sarcocephalus latifolius — shares topic coverage
- Effect of Ethanolic Leaf Extract of Sarcocephalus latifolius on Some Biochemical Parameters in Alloxan Induced Diabetic Rats — shares topic coverage
- The Use of Plant Dyes for Microbial Staining and Identification: An Eco-friendly and Non-Toxic Alternative Method — shares topic coverage
- Antimicrobial Activity and Elemental Composition of Sarcocephalus latifolius Fruits: An Ethnopharmacological Based Evaluation — shares topic coverage
- Evaluation of Antitoxoplasmic Potential of Selected Antimalarial Medicinal Plants from Togo: Artemisia annua L., Jatropha curcas L., Moringa oleifera Lam., and Sarcocephalus latifolius (Smith) Bruce — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
1
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.