bioRxiv Science⌕ Search

Biology subjects

Chen, F.-C.

Publications and source records attributed to Chen, F.-C..

3 recordsLinked to original sources

Performance Assessment of an Ultraviolet Light Emitting Semi-Conductor Device in Treating Apple Juice: Microbial Inactivation and Biochemical Assessment Study

Inactivation of Listeria monocytogenes ATCC 19115 and Salmonella enterica serovar Muenchen ATCC BAA 1764 by a light emitting diodes (LED) operating at 279 nm was investigated. In addition, this investigation assessed the poly-phenolic and vitamin content of UV irradiated apple juice (AJ). Specific concentrations of bacteria were inoculated in AJ and irradiated at the designated UV doses of 0 to 10 mJ{middle dot}cm-2 for Salmonella Muenchen and 0 to 12 mJ{middle dot}cm-2 for Listeria monocytogenes.Results show that UV-C irradiation effectively inactivated pathogenic microbes in AJ. The log reduction kinetics of microorganisms followed log-linear and with higher R2 (>0.95). The D10 values of 3.50 and 3.56 mJ{middle dot}cm-2 were obtained from the inactivation of Salmonella Muenchen, and Listeria monocytogenes in apple juice. In addition, quantifiable UV-C doses ranging from 0 to 160 mJ{middle dot}cm-2 were also delivered to AJ and polyphenols and vitamins were profiled. LC-MS/MS analysis was conducted to assess the stability of polyphenols or vitamins in UV-C exposed AJ. The polyphenol and vitamin results demonstrated that UV-C irradiation in AJ can cause significant reductions (p<0.05) if not properly delivered. Chlorogenic acid was reduced to 56%, at 80 mJ/cm2 whereas 12% reduction was observed at 40 mJ/cm2. Choline was observed to be relatively stable as a function of UV-C dosage. In contrast thiamine was significantly reduced at higher doses. In addition, Epicatechin was significantly reduced at high exposure doses. In contrast minor changes were observed at 40 mJ/cm2. The results from this study imply that adequate log reduction of pathogens is achievable in AJ and suggest significant potential of using LED devices for UV-C treatment of highly turbid fluids.

microbiology↗

Effect of germicidal short wave-length ultraviolet light on the polyphenols, vitamins, and microbial inactivation in highly opaque apple juice

The aim of this investigation was to study the efficacy of UV-C light emitting diode system (LED) operating at 263 nm for the inactivation of Listeria monocytogenes and Escherichia coli O157:H7. Specified concentrations of bacteria were inoculated in apple juice and irradiated at the designated UV doses of 0 to 15 mJ{middle dot}cm-2. In addition, UV irradiation doses ranging from 0 to 160 mJ{middle dot}cm-2 were also delivered to apple juice and polyphenols and vitamins were profiled. LC-MS/MS analysis was conducted to assess the stability of polyphenols or vitamins in UV-C exposed apple juice. The polyphenol and vitamin results demonstrated that UV-C irradiation in apple juices at relevant commercial UV doses induced significant reductions in the concentrations of selected polyphenols and vitamins, p<0.05. Ascorbic acid was reduced to 32%, at 160 mJ/cm2 whereas 17% reduction was observed at 40 mJ/cm2. Riboflavin was observed to be relatively stable. Epicatechin and chlorogenic was significantly reduced at high exposure doses. In contrast minor changes were observed at 40 mJ/cm2. Results show that UV-C irradiation effectively inactivated pathogenic microbes in apple juice. The log reduction kinetics of microorganisms followed log-linear and with higher R2 (>0.95) and low RMSE values. The D10 values of 4.16 and 3.84 mJ{middle dot}cm-2 were obtained from the inactivation of Escherichia coli, and Listeria monocytogenes in apple juice. The results from this study imply that adequate log reduction of pathogens is achievable in apple juice and suggest significant potential for UV-C treatment of other liquid foods.

microbiology↗

Evaluating UV-C sensitivity of Coxiella burnetii in Skim Milk using a Bench-Scale Collimated Beam System and Comparative Study with High-Temperature Short-Time Pasteurization

Coxiella burnetii is a zoonotic Gram-negative obligate intracellular bacterial pathogen and the causative agent of Query (Q) fever in humans. Contamination of milk by C. burnetii as a consequence of livestock infection is a significant public health concern. Effective methods to inactivate C. burnetii in milk is a critical aspect of food safety. In this study, we measured optical light attenuation factors; absorption, scattering, and reflection of skim milk (SM) and considered for evaluation of delivered UV dose under stirred conditions. The accuracy of the method followed for the estimation of delivered UV dose in SM was verified by comparative studies of Escherichia coli ATCC 25922 inactivation in phosphate buffer (transparent fluid), and humic acid (opaque fluid). Absorption, scattering coefficient, and the reflectance of SM at 254 nm was measured as 19 {+/-} 0.3/cm. 26 {+/-} 0.5/cm and 10.6 %, respectively. SM inoculated with C. burnetii was irradiated using a collimated beam device equipped with a low-pressure UV-C254 nm lamp at doses from 0 - 12 mJ{middle dot}cm-2. Results showed a log-linear inactivation of C. burnetii in SM with UV-C sensitivity (D10) value of 4.1 {+/-} 0.04 mJ{middle dot}cm-2. Similar inactivation kinetics was observed with Salmonella enterica serovar Muenchen ATCC BAA 1674 in SM and thereby suggested as a suitable surrogate to C. burnetii for pilot scale UV-C processing studies of SM.

microbiology↗