Nalinanon, Sitthipong
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Preferred name
Nalinanon, Sitthipong
Alternative Name
Nalinanon, S.
Nalinanon, Sittipong
Main Affiliation
Email
sitthipong.na@kmitl.ac.th
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Item type:Publication, Production of fiber hydrolysate from bamboo shoot with antioxidative properties by enzymatic hydrolysis(2019-06-04) ;Karnjanapratum, Supatra ;Kaewthong, Pensiri; ;Sae-Leaw, ThanasakHong, Jeong HwaBamboo shoots possess a rich source of dietary fiber for Asian countries as well as Thailand, which give various beneficial physiological effects for human beings. Dietary fibers in soluble form could provide better texture and would be easier to apply in food products. This study aimed to prepare fiber hydrolysate with high solubility and antioxidant activity from bamboo (Bambusa vulgaris) shoot. The fiber hydrolysate from bamboo shoot (FHBS) was prepared by stepwise enzymatic hydrolysis including amylase (1%, w/w), cellulase (1, 2, 3%, w/w) and papain (1%, w/w). The released fiber yield of FHBS increased with increasing cellulose levels in dose dependent manner (P≤0.05). It was found that the process with 1% (w/w) amylase for 1 h and 3% (w/w) cellulase for 3 h followed by 1% (w/w) papain for 1 h at 50 ºC, rendered the highest released fiber yield (92.10±1.10%). The resultant FHBS contained 5.76±0.21 % of total dietary fiber with total sugar and reducing sugar contents of 1431.22±46.01 and 918.91±10.57 mg/g solid, respectively. The FHBS exhibited antioxidant activities including ABTS radical scavenging activities (ABTS), DPPH radical scavenging activities (DPPH), ferric reducing antioxidant power (FRAP) and oxygen radical absorbance capacity (ORAC). Therefore, FHBS with antioxidant activities could be effectively prepared by using enzymatic hydrolysis and suitable to apply in the fiber fortified products. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Impact of extraction condition on the yield and molecular characteristics of collagen from Asian bullfrog (Rana tigerina) skin(2022-06-01) ;Indriani, Sylvia ;Benjakul, Soottawat ;Kishimura, Hideki ;Karnjanapratum, SupatraThe present study is the first report on collagen extraction as acid-soluble collagen (ASC) and pepsin-soluble collagen (PSC), which could maximize the exploitation of Asian bullfrog (Rana tigerina) skin as an alternative collagen material in food and pharmaceutical fields. Extraction methods for ASC and PSC from Asian bullfrog skin were developed using different concentrations of acetic acid (0.50, 0.75, and 1.00 M) and pepsin (1.00, 2.00, and 3.00% [w/w]). PSCs exhibited a higher extraction yield (22.59%–28.30%) and recovery (22.48%–31.12%) than ASCs. An electrophoretic study revealed that collagens possessed type I collagen. ASC with 0.75 M acetic acid (ASC-0.75) and PSC with 3.00% (w/w) pepsin (PSC-3.00) were selected and analysed on their solubility, molecular characteristics, and amino acid composition. A better solubility with a higher isoelectric point was observed for PSC-3.00 than ASC-0.75. Fourier transform infrared- and circular dichroism-spectra revealed a high-interacted compact structure with a triple helical-structure of the collagen peptides, respectively. A similar amino acid profile with a high imino acid content was observed. Therefore, collagens from Asian bullfrog skin were successfully extracted, where the optimized conditions provided a high yield with less adverse effects on collagen properties and molecular characteristics. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Modulating Fish Gelatin Gelling Properties Through Furcellaran Addition: A Structural and Physicochemical Analysis(2025-06-01) ;Petcharat, Tanyamon ;Chaijan, Manat ;Indriani, Sylvia ;Pongsetkul, JaksumaKarnjanapratum, SupatraFish gelatin (FG) is a promising alternative to mammalian gelatin but is limited by poor gelling ability, low gel strength, and inability to set at room temperature. This study evaluated the effects of furcellaran (FUR), a gelling agent, on the structural and physicochemical properties of FG gels at different substitution levels (25–100%). The addition of 25% FUR improved gel strength and hardness. However, higher FUR levels (>50%) led to reduced springiness and increased syneresis. Intermolecular force measurements revealed that ionic and hydrogen bonds were crucial in the FG/FUR gel system, with higher levels of FUR promoting stronger ionic and hydrogen bonding. Color changes were observed with decreased L* and increased b* and ∆E* values as FUR levels rose. Gelling and melting points also increased proportionally with FUR content. Microstructural analysis showed denser gel networks with smaller gaps upon FUR incorporation. SAXS analysis confirmed enhanced structural conformation with higher FUR levels. An appropriate level of FUR added (25%) could therefore improve gelling properties via increasing gel strength and gelling temperature without negative effects on springiness and syneresis of resulting gel. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Impact of different ultrasound-assisted processes for preparation of collagen hydrolysates from Asian bullfrog skin on characteristics and antioxidative properties(2022-09-01) ;Indriani, Sylvia ;Sae-leaw, Thanasak ;Benjakul, Soottawat ;Hong Quan, TranKarnjanapratum, SupatraThis study focused on impact of ultrasound-assisted process (UAP) at pre-treatment (UP) and simultaneous treatment (US) during papain hydrolysis for preparing collagen hydrolysate (CH) from Asian bullfrog skin. Ultrasonication times were varied (10, 20, 30 min), and CH prepared using papain hydrolysis without UAP was used as control. Different UAPs provided CH with various hydroxyproline contents, α-amino group contents, surface hydrophobicities, and antioxidative activities. UP at 20 min (UP-20) and US at 30 min (US-30) provided highly antioxidative CHs, which were selected for further studies on their Oxygen reactive absorbance capacity (ORAC) and molecular characteristics. CHs from UP-20 and US-30 had higher ORAC than that of control group (p ≤ 0.05). Slight difference in amino acid composition was detected between samples. Based on these results, molecular characteristic styles, molecular weight profile, antioxidative peptide content, and secondary structure of each sample were obtained. These results indicate that UP and US used varied enzymatic hydrolysis patterns and modified molecular conformation of CH, resulting in enhanced antioxidative activity. Therefore, different UAPs as UP and US could be effectively used in preparation of CH using papain hydrolysis from Asian bullfrog skin, which could improve production process efficiency by enhancing their bioactivity, particularly antioxidative activity. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Amphibian Skin and Skin Secretion: An Exotic Source of Bioactive Peptides and Its Application(2023-03-01) ;Indriani, Sylvia ;Karnjanapratum, Supatra ;Nirmal, Nilesh PrakashAmphibians have been consumed as an alternative protein source all around the world due to their delicacy. The skin of edible amphibians, particularly frogs and giant salamanders, always goes to waste without further utilization. However, these wastes can be utilized to extract protein and bioactive peptides (BPs). Various BPs have been extracted and reported for numerous biological activities such as antioxidant, antimicrobial, anticancer, antidiabetic, etc. The main BPs identified were brevinins, bombesins, dermaseptins, esculentins, magainin, temporins, tigerinins, and salamandrins. This review provides a comprehensive discussion on various BPs isolated and identified from different amphibian skins or skin secretion and their biological activities. The general nutritional composition and production statues of amphibians were described. Additionally, multiple constraints against the utilization of amphibian skin and secretions are reported. Finally, the prospective applications of BPs in food and biomedical industries are presented such as multifunctional food additives and/or supplements as well as drug delivery agents. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Ultrasound-assisted extraction of collagen from clown featherback (Chitala ornata) skin: yield and molecular characteristics(2021-01-30) ;Petcharat, Tanyamon ;Benjakul, Soottawat ;Karnjanapratum, SupatraBACKGROUND: Clown featherback (Chitala ornata) skin, a by-product from the filleting process line, could serve as a good aquatic collagenous source. Nevertheless, the typical collagen extraction method is a time-consuming process providing a relatively low yield. Ultrasound had been reported to be an alternative technique for enhancing the extraction efficiency of several compounds, although the harsh conditions of ultrasound could affect their physicochemical and molecular characteristics. Thus, the application of ultrasonication under appropriate conditions could comprise a promising means for improving the extraction efficiency of collagen from clown featherback skin. RESULTS: Ultrasonication using different amplitudes (20–80%) and times (10–30 min) was implemented during extraction. An ultrasound-assisted process (UAP) was able to increase the yield of collagen (P ˂ 0.05) and could also result in a collagen purity decrease as evaluated by hydroxyproline content. There was no dramatic change in the solubility of resulting collagens. UAP induced protein degradation, particularly with an increasing amplitude and time, where slight changes in the isoelectric point value of collagen were observed. UAP had no adverse effect on molecular structure, where a triple-helical structure was still retained when an 80% amplitude was employed for 10 min (UAP-80/10-C). The amino acid composition of UAP-80/10-C reconfirmed the unique characteristic of collagen containing imino acid. CONCLUSION: An UAP under appropriate conditions could be used to improve the extraction yield with minimal effects on the molecular integrity of the resulting collagen. In addition, fish skin waste from the cutting process line, particularly clown featherback skin, could be exploited as a value-added product, comprising fish skin collagen. © 2020 Society of Chemical Industry. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Alpha-amylase inhibitory activity of collagen hydrolysate from Asian bullfrog skin and its application in dark chocolate(2024-01-01) ;Indriani, Sylvia ;Benjakul, Soottawat ;Sitanggang, Azis Boing ;Karnjanapratum, SupatraThe present study aimed to investigate the in-vitro antidiabetic activity of collagen hydrolysate (CH) from Asian bullfrog skin and its application as a bioactive compound in dark chocolate bars. Papain (3% [w/w]) was used to obtain CH with a simultaneous conjunction of ultrasound. CH possessed α-amylase inhibitory activity with an IC<inf>50</inf> value of 3.60 mg/mL, while results from inhibition reaction kinetics revealed that CH inhibited α-amylase in a non-competitive mode. Different concentrations (0.5, 1.0, and 2.0% [w/w]) of CH were then fortified into dark chocolate bars, and the physicochemical characteristics, breaking strength, and rheological behaviour of the resulting chocolate were investigated and compared with a control (without CH addition). A higher level of CH significantly enhanced antidiabetic activity against α-amylase (p ≤ 0.05) in chocolate bar. Chocolate bar with 2% CH complied with the nutritional claim requirement for ‘source of protein’ with lower fat content and energy value, while sensory evaluation revealed good organoleptic properties. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Physicochemical, Sensorial and Calcium Bioavailability of Jelly Prepared Using Fish Gelatin in Combination with Furcellaran and Calcium L-Threonate(2026-01-01) ;Petcharat, Tanyamon ;Chaijan, Manat ;Indriani, Sylvia ;Karnjanapratum, SupatraNirmal, NileshConfectionery products, specifically jelly and gummy, require optimized structural, thermal, and nutritional properties for functionality and consumer acceptance. This study investigated the impact of furcellaran (FUR) and calcium L-threonate (Ca) on the physicochemical and the sensory properties of fish gelatin-based jelly (JFG). Furcellaran modestly enhanced gel strength and hardness, while its combination with calcium L-threonate produced synergistic improvements, with JFG-FUR-Ca achieving the highest gel strength (947.63 g) and hardness (78.14 N). Microstructural and intermolecular force analyses indicated that Ca<sup>2+</sup> bridging between gelatin and furcellaran promoted ionic and hydrogen bonding, forming a dense and thermostable network. The combined incorporation of furcellaran and calcium L-threonate enhanced the rheological properties while preserving low syneresis. Sensory evaluation revealed minor reductions; however, overall acceptability was higher than 7. Calcium bioavailability after digestion through the gastrointestinal tract model remained high (70–80%), confirming effective calcium fortification. The synergistic incorporation of furcellaran and calcium L-threonate effectively improved the structural integrity, thermal stability, and calcium bioavailability of fish gelatin-based jelly, while maintaining acceptable sensory qualities, highlighting its potential as a functional calcium-fortified confectionery product. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Quality characteristics of protein-enriched brown rice flour and cake affected by Bombay locust (Patanga succincta L.) powder fortification(2020-02-01) ;Indriani, Sylvia ;Bin Ab Karim, Muhammad Shahrim; Karnjanapratum, SupatraProtein-enriched brown rice flours were developed by fortification of defatted Bombay locust powder (BL) at different levels (10, 20, 30%). The physicochemical characteristics of the mixed flours were then investigated. The application of resulting mixed flour on preparing protein-enriched cake was also studied. The chemical composition, water activity, color as well as rheological property of the resulting mixed flours were varied at different levels of BL added. The protein content of resulting mixed flours was effectively improved, especially at 30% replacement provided almost 4-fold increased (11–42%), compared with control (BRF without BL fortification) (p ≤ 0.05). Protein-enriched cakes prepared using the mixed flours, showed the differences in their physicochemical properties, texture profiles, chemical composition and sensory characteristics, which were influenced by BL fortification level. The 20% replacement of brown rice flour by BL (20-MF) provided a protein-enriched cake (20.8% of protein) with liking score ranged from 7.0 to 7.4 for all attributes tested, indicating the good acceptability. Scanning electron microscopy (SEM) of the 20-MF cake revealed that it had a denser structure with the less porosity than the control. Therefore, BL might be a promising alternative protein source for developing protein-enriched flour and baked product, particularly cakes. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Extraction techniques, structural features, and functional properties of collagenous derivatives from unconventional animal sources: a review(2026-12-01) ;Indriani, Sylvia ;Petcharat, Tanyamon ;Andriani, Cynthia ;Benjakul, SoottawatCollagenous derivatives (collagen, gelatin, and collagenous hydrolysate (CH)) are extensively used across the food, biomedical, and pharmaceutical industries. Traditionally, these have been sourced from porcine, bovine, and fish due to their ready availability and biocompatibility. However, conventional collagenous derivatives face ongoing challenges regarding sustainability, resource intensity, and socio-cultural perceptions. This has led to the exploration of alternative collagenous derivatives from unconventional sources, with a primary focus on evaluating their potential for yields, extractability, and functional properties, all of which are fundamental for future scale-up and alternative applications. This review summarizes alternative collagenous derivatives from unconventional animals, including amphibians, mollusks, echinoderms, insects, unconventional fish and byproducts, and reptiles. Their structures, extraction techniques, functional properties, and potential applications are comprehensively summarized, showcasing their ability to complement or even surpass conventional sources in specific uses. Additionally, the challenges and prospects for industrial application, emphasizing the sustainability of meeting growing collagen demand and encouraging further research into these promising alternative sources, were discussed. Unconventional collagenous derivatives demonstrate excellent and unique characteristics as alternatives to conventional ones. Type I collagen from amphibians, reptiles, and mollusks had superior thermal stability. Unconventional gelatin and CH also possess various bio-functionalities that can enhance their potential applications. The relatively low extraction yield could be addressed by increasing the concentration of chemicals or extraction time and incorporating green technology without causing an adverse impact on the quality. These findings indicate the potential applications of unconventional collagenous derivatives as food ingredients and supplements.
