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1.
Exp Anim ; 72(1): 132-139, 2023 Feb 21.
Article in English | MEDLINE | ID: mdl-36310084

ABSTRACT

Although hair loss is not a horrible disease, it sometimes reduces the patients' quality of life (QOL) and increases their mental stress. Currently, there is no effective treatment for hair loss. It is known that honeybee propolis has various biological activities, including stimulating the proliferation of hair matrix keratinocytes. However, little is known with the hair promoting activity of stingless bee propolis. Hence, this study investigates the hair growth-promoting activity of Philippines stingless bee propolis extract and the underlying a molecular mechanism of promoting hair growth. For the evaluation of hair growth stimulating activity, 99.5% ethanolic extract of Philippines stingless bee propolis is examined using the simple shaving model in C57BL/6N mice. Melaninization of dorsal skin and histological analysis of hair follicles (HFs) revealed that propolis promotes hair growth by stimulating HFs development. The expression of mRNA (Wnt3a, Ctnnb1/ß-catenin, Lef1, and Bmp2) and protein (WNT3A and ß-catenin) of selected Wnt/ß-catenin associated genes explains Philippines stingless bee propolis promoting HFs development by activating Wnt/ß-catenin signaling pathway. These results suggest that the treatment of propolis strongly promotes hair growth by stimulating the development of HFs via activation of Wnt/ß-catenin signaling pathway. This further indicates the potential of Philippines stingless bee propolis as a novel promising agricultural product for hair growth.


Subject(s)
Propolis , Wnt Signaling Pathway , Mice , Bees , Animals , beta Catenin/metabolism , Quality of Life , Philippines , Mice, Inbred C57BL , Hair , Alopecia
2.
Exp Anim ; 70(2): 185-193, 2021 May 13.
Article in English | MEDLINE | ID: mdl-33239488

ABSTRACT

Despite decades-long existence of the Philippine stingless bee industry, the biological activity of propolis from this native bee species (Tetragonula biroi Friese) remains poorly understood and sparingly investigated. Herein, we examined the potential anti-inflammatory efficacy of Philippine stingless bee propolis using the lambda (λ)-carrageenan-induced mice model of hind paw edema. Thirty (30), six-week-old, male ICR mice were randomly assigned into three treatment groups (n=10/group) as follows: distilled water group, diclofenac sodium group (10 mg/kg), and propolis group (100 mg/kg). All treatment were administered an hour prior to the injection of the phlogistic agent. As observed at 3 h post-injection, λ-carrageenan remarkably evoked the classical signs of hind paw edema exemplified grossly by swelling and hyperemia. The ameliorative effect of propolis became apparent at the onset of 6 h post-injection with a statistically significant finding evident at the 24-h period. This gross attenuation histologically correlated to a considerable and specific reduction of the dermal edema, which mirrored those of the diclofenac sodium group. Furthermore, both propolis and diclofenac sodium significantly attenuated the λ-carrageenan-induced increase in the protein expression levels of the pro-inflammatory cytokine tumor necrosis factor-α (TNF-α) depicting more than two-fold decrement relative to the distilled water group. Altogether, these suggest that Philippine stingless bee propolis also exhibited a promising in vivo anti-inflammatory property, which can be partly mediated through the inhibition of TNF-α.


Subject(s)
Apitherapy , Carrageenan , Edema , Foot Diseases , Propolis , Protective Agents , Animals , Male , Mice , Bees/chemistry , Carrageenan/adverse effects , Edema/chemically induced , Edema/drug therapy , Foot/physiopathology , Foot Diseases/chemically induced , Foot Diseases/diagnosis , Mice, Inbred ICR , Propolis/pharmacology , Protective Agents/pharmacology
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