CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Lactoferrin

  • Association between Bioactive Molecules in Breast Milk and Type 1 Diabetes Mellitus. 📎

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    Abstract Title:

    Association between Bioactive Molecules in Breast Milk and Type 1 Diabetes Mellitus.

    Abstract Source:

    Sultan Qaboos Univ Med J. 2020 Feb ;20(1):e5-e12. Epub 2020 Mar 9. PMID: 32190364

    Abstract Author(s):

    Tajudeen Yahaya, Ufuoma Shemishere

    Article Affiliation:

    Tajudeen Yahaya

    Abstract:

    The association between breastfeeding and type 1 diabetes mellitus (T1DM) is controversial. However, several recent studies have established a link between these two factors, necessitating a need to review this subject to raise public awareness. Current research indicates that breast milk contains a variety of bioactive substances including immunoglobulins, oligosaccharides, insulin, lactoferrin, lysozyme, cytokines, epidermal growth factors, leukocytes, nucleotides, beneficial bacteria and vitamins. Such substances strengthen the breastfeeding infant's immune system, both directly, by increasing gut microbiota diversity and attacking harmful bacteria and pro-inflammatory molecules, and indirectly, by increasing thymus performance. Accordingly, a lack of or inadequate breastfeeding may predispose infants to several autoimmune disorders, including T1DM. Nursing mothers and caregivers are therefore advised to follow optimal breastfeeding practices prior to introducing complementary foods.

  • Effect of antimicrobial factors in human milk on rhinoviruses and milk-borne cytomegalovirus in vitro📎

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    Abstract Title:

    Effect of antimicrobial factors in human milk on rhinoviruses and milk-borne cytomegalovirus in vitro.

    Abstract Source:

    J Med Microbiol. 2000 Aug;49(8):719-23. PMID: 10933257

    Abstract Author(s):

    N M Clarke, J T May

    Abstract:

    Various antimicrobial factors present in human milk were tested for in-vitro antiviral activity against three rhinoviruses (two clinical isolates and rhinovirus 2) and an isolate of cytomegalovirus (CMV) from human milk. These factors included the gangliosides GM1, 2 and 3, sialyl-lactose, chondroitin sulphates A, B and C, prostaglandins E2 and F2alpha, monolaurin, vitamin A and the protein lactoferrin. All were tested for their ability to inhibit growth of the viruses in cell culture. Human milk was also tested for antiviral activity against these viruses. Only vitamin A, monolaurin and lactoferrin inhibited the growth of CMV, whereas both prostaglandins enhanced the growth of this virus at least four-fold. CMV infects infants from milk but, nevertheless, the milk-borne CMV isolate showed no special resistance to any of the antiviral factors tested. None of the compounds inhibited or enhanced the growth of the rhinoviruses. However, human milk decreased the growth of some of the rhinoviruses and specific secretory immunoglobulin A (sIgA) neutralised the virus.

  • Inhibition of SARS pseudovirus cell entry by lactoferrin binding to heparan sulfate proteoglycans📎

    Abstract Title:

    Inhibition of SARS pseudovirus cell entry by lactoferrin binding to heparan sulfate proteoglycans.

    Abstract Source:

    PLoS One. 2011 ;6(8):e23710. Epub 2011 Aug 22. PMID: 21887302

    Abstract Author(s):

    Jianshe Lang, Ning Yang, Jiejie Deng, Kangtai Liu, Peng Yang, Guigen Zhang, Chengyu Jiang

    Article Affiliation:

    Jianshe Lang

    Abstract:

    It has been reported that lactoferrin (LF) participates in the host immune response against Severe Acute Respiratory Syndrome Coronavirus (SARS-CoV) invasion by enhancing NK cell activity and stimulating neutrophil aggregation and adhesion. We further investigated the role of LF in the entry of SARS pseudovirus into HEK293E/ACE2-Myc cells. Our results reveal that LF inhibits SARS pseudovirus infection in a dose-dependent manner. Further analysis suggested that LF was able to block the binding of spike protein to host cells at 4°C, indicating that LF exerted its inhibitory function at the viral attachment stage. However, LF did not disrupt the interaction of spike protein with angiotensin-converting enzyme 2 (ACE2), the functional receptor of SARS-CoV. Previous studies have shown that LF colocalizes with the widely distributed cell-surface heparan sulfate proteoglycans (HSPGs). Our experiments have also confirmed this conclusion. Treatment of the cells with heparinase or exogenous heparin prevented binding of spike protein to host cells and inhibited SARS pseudovirus infection, demonstrating that HSPGs provide the binding sites for SARS-CoV invasion at the early attachment phase. Taken together, our results suggest that, in addition to ACE2, HSPGs are essential cell-surface molecules involved in SARS-CoV cell entry. LF may play a protective role in host defense against SARS-CoV infection through binding to HSPGs and blocking the preliminary interaction between SARS-CoV and host cells. Our findings may provide further understanding of SARS-CoV pathogenesis and aid in treatment of this deadly disease.