[5]
Chiellini F, Morelli A. Ulvan: A versatile platform of biomaterials from renewable resources. Biomaterials 2017; 75-100.
[12]
Seedevi PS, Sudharsan S, Vasanth KA, Srinivasan SV, Shanmugam A. Isolation and characterization of sulphated polysaccharides from Codium. Adv Appl Sci Res 2013; 4(5): 72-8.
[22]
Ensminger ME, Ensminger AH. CarrageenanFoods Nutrition Encyclopedia. Washington: Two Volume Set CRC Press 1994; p. 349.
[26]
Se-Kwon K, Yong-Xin L. Medicinal Benefits of Sulfated Polysaccharides
from Sea Vegetables. In Toldra' F, Ed. Advances in Food
and Nutrition Research. Academic Press. 2011. 64: pp. 391-402.
[29]
Thanh-Sang V, Se-Kwon K. Chapter One - Marine-Derived Polysaccharides
for Regulation of Allergic Response. In F. Toldra'. Ed,
Advance in Food Nutrition and Research. Academic Publisher.
2014; 73: pp. 1-13.
[33]
Lee KY, Mooney DJ. Alginate: properties and biomedical applications. Prog Polym Sci 2012; 37(1): 106-26.
[36]
Thanh TTT, Quach TMT, Nguyen TN, Vu Luong D, Bui ML, Tran TTV. Structure and cytotoxic activity of ulvan extracted from green seaweed Ulva lactuca. Int J Biol Macromol 2016; 93(Pt A): 695- 702. [http://dx.doi.org/10.1016/j.ijbiomac.2016.09.040] [PMID: 27637450]
[38]
Jiménez-Escrig A, Sánchez-Muniz FJ. Chemical structure, physicochemical properties and effects on cholesterol metabolism Dietary fibre from edible seaweeds 2000. 585-98.
[41]
Strong CH. Process or extracting carrageenan from seaweed United States Patent 3907770, 1975.
[44]
Manuhara GJ, Praseptiangga D, Riyanto RA. Originated from Karimun Jawa Islands. Aqua Proc 1996; 2016: 106-11.
[47]
Król Z, Malik M, Marycz K, Jarmoluk A. Physicochemical Properties of Biopolymer Hydrogels. Polym 2016; pp. 1-17.
[48]
Tan NAH, Muhamad II. Optimisation of Omega 3 Rich Oil extraction from elateriospermum tapos seed by microwave assisted aqueous enzymatic extraction. Chem Eng Trans 2017; 56: 1783-8.
[52]
Lahaya M, Robic A. Structure and functional properties of ulvan, a polysaccharide from green seaweeds. Biomacromol 2007; 8(6): 1765-74.
[54]
Robic A, Sassi J, Dion P, Lerat Y, Lahaye M. Ultrastructure of ulvan: a polysaccharide from green seaweeds. Biopolym 2009; 91(8): 652-64.
[56]
Alves A, Caridade SG, Mano JF, Sousa RA, Reis RL. Extraction and physico-chemical characterization of a versatile biodegradable polysaccharide obtained from green algae. Carbohydr Res 2010; 345(15): 2194-200.
[59]
Radhouani H, Gonçalves C, Bacelar AH, Gertrudes A, Correia C, Oliveira JM, et al. Ulvan, a marine-inspired biomaterial with superior therapeutic properties?. TermStem 2014; pp. 1-2.
[60]
Costa C, Alves A, Pinto PR, et al. Characterization of ulvan extracts to assess the effect of different steps in the extraction procedure. Carbohydr Polym 2012; 88(2): 537-46.
[62]
Hay ID, Rehman ZU, Moradali MF, Wang Y, Rehm BHA. Microbial alginate production, modification andits applications. Microbial Technology Palmerstan North: John Wiley Sons Ltd and Society for Applied Microbiology 2013; 2013: 637-47.
[68]
Pereira L, Gheda SF, Ribeiro-Claro PJA. Analysis by vibrational spectroscopy of seaweed polysachharides with potential use in food, pharmaceutical, and cosmetic industries. Int J Carbohydr Chem 2013; 2013537202
[71]
Hsu CS, Block LH. Anionic gels as vehicles for electrically-modulated drug delivery.I. Solvent and drug transport phenomena. Pharm Res 1996; 13(12): 1865-70.
[72]
Mushollaeni W. The physicochemical characteristics of sodium alginate. Afr J Food Sci 2011; 5: 349-52.
[73]
FCC. 1993. Food Chemical Codex. National Academy Press, 434.
[79]
Wang FF, Yao Z, Hai GW, Sheng XZ, Nan NZ, Gai X. Antibacterial Activities of Kappa-Carrageenan Oligosaccharides. Appl Mech Mater 2012; 108: 194-9.
[81]
Ahmed ABA. Mohaddeseh Adel, Pegah Karimi, Mahvash Peidayesh Chapter Ten - Pharmaceutical, Cosmeceutical, and Traditional Applications of Marine CarbohydratesAdvances in Food and Nutrition Research. Academic Press 2014; Vol. 73: pp. 197-220.
[83]
Pai-An H, Xiao-Zhen L, Ko-Liang K, Fu-Yin H. Fabrication and Cytotoxicity of Fucoidan-Cisplatin Nanoparticles for Macrophage and Tumor Cells. Materials (Basel) 2017; 10(3): 291.
[87]
Dockal M, Till S, Zhang Z, Knappe S, Reutterer S, Quinn C. Structure-activity relationship of the pro- and anticoagulant effects of Fucus vesiculosus fucoidan. Thromb Haemost 2014; 111(3): 429-37.
[95]
Vo TS, Ngo D, Kim SK. Potential targets for anti-inflammatory and anti-allergic activities of marine algae: an overview. Inflamm Allergy Drug Targets 2012; 11(2): 90-101.
[97]
Karaki N, Sebaaly C, Chahine N, et al. The antioxidant and anticoagulant activities of polysaccharides isolated from the brown algae Dictyopteris polypodioides growing on the Lebanese coast. J Appl Pharm Sci 2013; 3: 43-51.
[101]
Jiao G, Yu G, Zhang J, Stephen Ewart H. Chemical structures and bioactivities of sulfated polysaccharides from marine algae. Mar Drugs 2011; 9(2): 196-223.
[105]
Shanmugam M, Ramavat BK, Mody KH, Oza RM, Tewari A. Distribution of heparinoid-active sulphated polysaccharides in some Indian marine green algae. Indian J Geo-Mar Sci 2001; 30: 222-7.
[108]
Ayah A, Iwona C, Grzegorz PB, Rashed F, Mette HT. Methods for upstream extraction and chemical characterization of secondary metabolites from algae biomass. Adv Tech Biol Med 2016; 4(1): 163.
[115]
Synytsya A, Woo-Jung K, Sung-Min K, et al. Structure and antitumour activity of fucoidan isolated from sporophyll of Korean brown seaweed Undaria pinnatifida. Carbohydr Polym 2010; 81(1): 41-8.
[116]
Hatrika A, Emir B. Trabectedin (ET-743) from Marine Tunicate for
Cancer Treatment.Handbook of Anticancer Drugs from Marine
Origin Manisa: Springer International Publishing Switzerland.
2014; pp. 397-8.
[118]
Khalid MZ, Mohammad Z, Muhammad A. Antiglycaemic and
Antipilidaemic Effects.Algae Based Polymers, Blends, and Composites:
Chemistry, Biotechnology and Composites Netherlands:
Matthew Deans. 2017; p. 242.
[119]
Byeong-Dae C, Yeung JC. Chapter 2 - Nutraceutical Functionalities
of Polysaccharides from Marine Invertebrates. In Kim S.-K.
ed., Advances in Food and Nutrition Research: Marine Medicinal
Food Pukyong: Academic Press 2012; 65:, pp. 11-30.
[122]
Jayachandran VSA-K. Preparations and Applications of Alginate
Nanoparticle.Seaweed Polysaccharides: Isolation, Biological and
Biomedical Applications Amsterdam: Mathhew Deans. 2017; pp.
251-61.